Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 20 de 64
Filter
1.
Sci Rep ; 14(1): 2330, 2024 01 28.
Article in English | MEDLINE | ID: mdl-38282012

ABSTRACT

The field of dysmorphology has been changed by the use Artificial Intelligence (AI) and the development of Next Generation Phenotyping (NGP). The aim of this study was to propose a new NGP model for predicting KS (Kabuki Syndrome) on 2D facial photographs and distinguish KS1 (KS type 1, KMT2D-related) from KS2 (KS type 2, KDM6A-related). We included retrospectively and prospectively, from 1998 to 2023, all frontal and lateral pictures of patients with a molecular confirmation of KS. After automatic preprocessing, we extracted geometric and textural features. After incorporation of age, gender, and ethnicity, we used XGboost (eXtreme Gradient Boosting), a supervised machine learning classifier. The model was tested on an independent validation set. Finally, we compared the performances of our model with DeepGestalt (Face2Gene). The study included 1448 frontal and lateral facial photographs from 6 centers, corresponding to 634 patients (527 controls, 107 KS); 82 (78%) of KS patients had a variation in the KMT2D gene (KS1) and 23 (22%) in the KDM6A gene (KS2). We were able to distinguish KS from controls in the independent validation group with an accuracy of 95.8% (78.9-99.9%, p < 0.001) and distinguish KS1 from KS2 with an empirical Area Under the Curve (AUC) of 0.805 (0.729-0.880, p < 0.001). We report an automatic detection model for KS with high performances (AUC 0.993 and accuracy 95.8%). We were able to distinguish patients with KS1 from KS2, with an AUC of 0.805. These results outperform the current commercial AI-based solutions and expert clinicians.


Subject(s)
Abnormalities, Multiple , Artificial Intelligence , Face/abnormalities , Hematologic Diseases , Vestibular Diseases , Humans , Mutation , Retrospective Studies , Hematologic Diseases/diagnosis , Hematologic Diseases/genetics , Phenotype , Histone Demethylases/genetics , Genotype
2.
J Med Genet ; 61(5): 411-419, 2024 Apr 19.
Article in English | MEDLINE | ID: mdl-38290824

ABSTRACT

BACKGROUND: Cutaneous epidermal nevi are genotypically diverse mosaic disorders. Pathogenic hotspot variants in HRAS, KRAS, and less frequently, NRAS and BRAF may cause isolated keratinocytic epidermal nevi and sebaceous nevi or several different syndromes when associated with extracutaneous anomalies. Therefore, some authors suggest the concept of mosaic RASopathies to group these different disorders. METHODS: In this paper, we describe three new cases of syndromic epidermal nevi caused by mosaic HRAS variants: one associating an extensive keratinocytic epidermal nevus with hypomastia, another with extensive mucosal involvement and a third combining a small sebaceous nevus with seizures and intellectual deficiency. Moreover, we performed extensive literature of all cases of syndromic epidermal nevi and related disorders with confirmed pathogenic postzygotic variants in HRAS, KRAS, NRAS or BRAF. RESULTS: Most patients presented with bone, ophthalmological or neurological anomalies. Rhabdomyosarcoma, urothelial cell carcinoma and pubertas praecox are also repeatedly reported. KRAS pathogenic variants are involved in 50% of the cases, especially in sebaceous nevi, oculoectodermal syndrome and encephalocraniocutaneous lipomatosis. They are frequently associated with eye and brain anomalies. Pathogenic variants in HRAS are rather present in syndromic keratinocytic epidermal nevi and phacomatosis pigmentokeratotica. CONCLUSION: This review delineates genotype/phenotype correlations of syndromic epidermal nevi with somatic RAS and BRAF pathogenic variants and may help improve their follow-up.


Subject(s)
Nevus , Skin Diseases , Skin Neoplasms , Humans , Proto-Oncogene Proteins B-raf , Proto-Oncogene Proteins p21(ras)/genetics , Nevus/genetics , Nevus/pathology , Skin Neoplasms/genetics , Skin Neoplasms/pathology
3.
Fetal Diagn Ther ; 50(2): 92-97, 2023.
Article in English | MEDLINE | ID: mdl-37062278

ABSTRACT

INTRODUCTION: Gómez-López-Hernández syndrome (GLHS), also known as cerebello-trigeminal-dermal dysplasia, is an extremely rare neurocutaneous disease, classically described by the triad of rhombencephalosynapsis (RES), bilateral focal alopecia, and trigeminal anesthesia. The clinical and radiographic spectrum of GLHS is now known to be broader, including craniofacial and supratentorial anomalies, as well as neurodevelopmental issues. CASE PRESENTATION: Here, we present a case of antenatally diagnosed GLHS with RES, hydrocephaly, and craniofacial anomalies identified on ultrasound (low-set ears with posterior rotation, hypertelorism, midface hypoplasia, micrognathia, and anteverted nares) which were confirmed by autopsy after termination of pregnancy at 23 weeks of gestation. DISCUSSION: As no known genetic causes have been identified and the classical triad is not applicable to prenatal imaging, prenatal diagnosis of GLHS is based on neuroimaging and the identification of supporting features. In presence of an RES associated with craniofacial abnormalities in prenatal (brachycephaly, turricephaly, low-set ears, midface retrusion, micrognathia), GLHS should be considered as "possible" according to postnatal criteria.


Subject(s)
Craniofacial Abnormalities , Micrognathism , Female , Pregnancy , Humans , Micrognathism/diagnostic imaging , Cerebellum , Craniofacial Abnormalities/diagnostic imaging , Craniofacial Abnormalities/genetics , Alopecia/diagnosis , Alopecia/genetics , Prenatal Diagnosis
4.
Neuropediatrics ; 54(6): 422-425, 2023 Dec.
Article in English | MEDLINE | ID: mdl-36577449

ABSTRACT

To describe a new phenotype and the diagnostic workup of a vitamin-B6-dependent epilepsy due to pyridoxal 5'-phosphate-binding protein (PLPBP) deficiency in an infant with early-onset epilepsy at the age of 5 years 6 months. Following immediate and impressive clinical response to treatment with pyridoxine, metabolic screening for vitamin-B6-dependent epilepsies and targeted next-generation sequencing (NGS)-based gene panel analysis were performed. Potentially pathogenic variants were confirmed by Sanger sequencing in the patient, and variants were analyzed in both parents to confirm biallelic inheritance. The clinical phenotype and course of disease were compared to the 44 cases reported in the literature, harboring variants in pyridoxal phosphate homeostasis protein (PLPHP) and with cases of vitamin-B6-dependent epilepsy due to other known causative genes. Levels of alpha-aminoadipic semialdehyde in urine and amino acids were normal. Two inherited pathogenic variations in PLPHP were found in compound heterozygosity, including one novel deletion. We here describe a previously unreported individual harboring biallelic pathogenic PLPHP variants presenting with paroxysmal eye-head movements followed by epileptic spasms and an almost normal interictal electroencephalogram, thus expanding the clinical spectrum of PLPBP deficiency. This warrants consideration of vitamin-B6-dependent epilepsies in patients with early-onset epilepsy, including epileptic spasms, and eye movement disorders also beyond the neonatal period even when metabolic screening for vitamin-B6-dependent epilepsies is negative. PLPHP should be included systematically in NGS epilepsy gene panels.


Subject(s)
Epilepsy , Spasms, Infantile , Infant, Newborn , Humans , Infant , Child, Preschool , Spasms, Infantile/diagnosis , Spasms, Infantile/genetics , Head Movements , Epilepsy/diagnosis , Epilepsy/drug therapy , Epilepsy/etiology , Vitamin B 6/therapeutic use , Pyridoxine/therapeutic use , Spasm/complications , Spasm/drug therapy , Vitamins/therapeutic use
5.
Am J Med Genet A ; 191(1): 52-63, 2023 Jan.
Article in English | MEDLINE | ID: mdl-36196855

ABSTRACT

A small but growing body of scientific literature is emerging about clinical findings in patients with 19p13.3 microdeletion or duplication. Recently, a proximal 19p13.3 microduplication syndrome was described, associated with growth delay, microcephaly, psychomotor delay and dysmorphic features. The aim of our study was to better characterize the syndrome associated with duplications in the proximal 19p13.3 region (prox 19p13.3 dup), and to propose a comprehensive analysis of the underlying genomic mechanism. We report the largest cohort of patients with prox 19p13.3 dup through a collaborative study. We collected 24 new patients with terminal or interstitial 19p13.3 duplication characterized by array-based Comparative Genomic Hybridization (aCGH). We performed mapping, phenotype-genotype correlations analysis, critical region delineation and explored three-dimensional chromatin interactions by analyzing Topologically Associating Domains (TADs). We define a new 377 kb critical region (CR 1) in chr19: 3,116,922-3,494,377, GRCh37, different from the previously described critical region (CR 2). The new 377 kb CR 1 includes a TAD boundary and two enhancers whose common target is PIAS4. We hypothesize that duplications of CR 1 are responsible for tridimensional structural abnormalities by TAD disruption and misregulation of genes essentials for the control of head circumference during development, by breaking down the interactions between enhancers and the corresponding targeted gene.


Subject(s)
Abnormalities, Multiple , Microcephaly , Humans , Comparative Genomic Hybridization , Abnormalities, Multiple/genetics , Microcephaly/genetics , Syndrome , Genetic Association Studies
6.
Eur J Hum Genet ; 30(6): 682-686, 2022 06.
Article in English | MEDLINE | ID: mdl-34803161

ABSTRACT

Kabuki syndrome (KS) is a rare genetic disorder caused by mutations in two major genes, KMT2D and KDM6A, that are responsible for Kabuki syndrome 1 (KS1, OMIM147920) and Kabuki syndrome 2 (KS2, OMIM300867), respectively. We lack a description of clinical signs to distinguish KS1 and KS2. We used facial morphology analysis to detect any facial morphological differences between the two KS types. We used a facial-recognition algorithm to explore any facial morphologic differences between the two types of KS. We compared several image series of KS1 and KS2 individuals, then compared images of those of Caucasian origin only (12 individuals for each gene) because this was the main ethnicity in this series. We also collected 32 images from the literature to amass a large series. We externally validated results obtained by the algorithm with evaluations by trained clinical geneticists using the same set of pictures. Use of the algorithm revealed a statistically significant difference between each group for our series of images, demonstrating a different facial morphotype between KS1 and KS2 individuals (mean area under the receiver operating characteristic curve = 0.85 [p = 0.027] between KS1 and KS2). The algorithm was better at discriminating between the two types of KS with images from our series than those from the literature (p = 0.0007). Clinical geneticists trained to distinguished KS1 and KS2 significantly recognised a unique facial morphotype, which validated algorithm findings (p = 1.6e-11). Our deep-neural-network-driven facial-recognition algorithm can reveal specific composite gestalt images for KS1 and KS2 individuals.


Subject(s)
Abnormalities, Multiple , Facial Recognition , Hematologic Diseases , Vestibular Diseases , Abnormalities, Multiple/diagnosis , Abnormalities, Multiple/genetics , Face/abnormalities , Hematologic Diseases/diagnosis , Hematologic Diseases/genetics , Humans , Mutation , Vestibular Diseases/diagnosis , Vestibular Diseases/genetics
7.
Am J Med Genet A ; 185(12): 3831-3837, 2021 12.
Article in English | MEDLINE | ID: mdl-34296525

ABSTRACT

Polydactyly is a hallmark of GLI3 pathogenic variants, with Greig cephalopolysyndactyly syndrome and Pallister-Hall syndrome being the two main associated clinical presentations. Homozygous GLI3 variants are rare instances in the literature, and mendelian dominance is the accepted framework for GLI3-related diseases. Herein, we report three unrelated probands, presenting with polydactyly, and homozygous variants in the GLI3 gene. First, a 10-year-old girl, whose parents were first-degree cousins, presented with bilateral postaxial polydactyly of the hands, developmental delay and multiple malformations. Second, a male newborn, whose parents were first-degree cousins, presented with isolated bilateral postaxial polysyndactyly of the hands and the feet. Third, an adult male, whose parents were first-degree cousins, had bilateral mesoaxial polydactyly of the hands, with severe intellectual disability and multiple malformations. All three probands carried homozygous GLI3 variants. Strikingly, the parents also carried the child's variant, in the heterozygous state, without any clinical sign of GLI3 disease. Given the clinical presentation of our patients, the rarity and predicted high pathogenicity of the variants observed, and the absence of other pathogenic variants, we suggest that these GLI3 homozygous variants are causal. Moreover, the parents were heterozygous for the observed variants, but were clinically unremarkable, suggesting that these variants are hypomorphic alleles.


Subject(s)
Genetic Predisposition to Disease , Nerve Tissue Proteins/genetics , Polydactyly/genetics , Zinc Finger Protein Gli3/genetics , Adult , Child , Female , Heterozygote , Homozygote , Humans , Infant, Newborn , Male , Pedigree , Polydactyly/pathology
8.
Clin Genet ; 99(5): 650-661, 2021 05.
Article in English | MEDLINE | ID: mdl-33415748

ABSTRACT

Megalencephaly-CApillary malformation-Polymicrogyria (MCAP) syndrome results from somatic mosaic gain-of-function variants in PIK3CA. Main features are macrocephaly, somatic overgrowth, cutaneous vascular malformations, connective tissue dysplasia, neurodevelopmental delay, and brain anomalies. The objectives of this study were to describe the clinical and radiological features of MCAP, to suggest relevant clinical endpoints applicable in future trials of targeted drug therapy. Based on a French collaboration, we collected clinical features of 33 patients (21 females, 12 males, median age of 9.9 years) with MCAP carrying mosaic PIK3CA pathogenic variants. MRI images were reviewed for 21 patients. The main clinical features reported were macrocephaly at birth (20/31), postnatal macrocephaly (31/32), body/facial asymmetry (21/33), cutaneous capillary malformations (naevus flammeus 28/33, cutis marmorata 17/33). Intellectual disability was present in 15 patients. Among the MRI images reviewed, the neuroimaging findings were megalencephaly (20/21), thickening of corpus callosum (16/21), Chiari malformation (12/21), ventriculomegaly/hydrocephaly (10/21), cerebral asymmetry (6/21) and polymicrogyria (2/21). This study confirms the main known clinical features that defines MCAP syndrome. Taking into account the phenotypic heterogeneity in MCAP patients, in the context of emerging clinical trials, we suggest that patients should be evaluated based on the main neurocognitive expression on each patient.


Subject(s)
Abnormalities, Multiple/diagnostic imaging , Abnormalities, Multiple/physiopathology , Clinical Trials as Topic , Megalencephaly/diagnostic imaging , Megalencephaly/physiopathology , Neuroimaging , Skin Diseases, Vascular/diagnostic imaging , Skin Diseases, Vascular/physiopathology , Telangiectasis/congenital , Abnormalities, Multiple/drug therapy , Adolescent , Adult , Child , Child, Preschool , Class I Phosphatidylinositol 3-Kinases/genetics , Cohort Studies , Female , Forecasting , Humans , Magnetic Resonance Imaging , Male , Megalencephaly/drug therapy , Skin Diseases, Vascular/drug therapy , Telangiectasis/diagnostic imaging , Telangiectasis/drug therapy , Telangiectasis/physiopathology , Young Adult
9.
Front Pharmacol ; 12: 746664, 2021.
Article in English | MEDLINE | ID: mdl-35069188

ABSTRACT

Genodermatoses are rare inherited skin diseases that frequently affect other organs. They often have marked effects on wellbeing and may cause early death. Progress in molecular genetics and translational research has unravelled many underlying pathological mechanisms, and in several disorders with high unmet need, has opened the way for the introduction of innovative treatments. One approach is to intervene where cell-signaling pathways are dysregulated, in the case of overactive pathways by the use of selective inhibitors, or when the activity of an essential factor is decreased by augmenting a molecular component to correct disequilibrium in the pathway. Where inflammatory reactions have been induced by a genetically altered protein, another possible approach is to suppress the inflammation directly. Depending on the nature of the genodermatosis, the implicated protein or even on the particular mutation, to correct the consequences or the genetic defect, may require a highly personalised stratagem. Repurposed drugs, can be used to bring about a "read through" strategy especially where the genetic defect induces premature termination codons. Sometimes the defective protein can be replaced by a normal functioning one. Cell therapies with allogeneic normal keratinocytes or fibroblasts may restore the integrity of diseased skin and allogeneic bone marrow or mesenchymal cells may additionally rescue other affected organs. Genetic engineering is expanding rapidly. The insertion of a normal functioning gene into cells of the recipient is since long explored. More recently, genome editing, allows reframing, insertion or deletion of exons or disruption of aberrantly functioning genes. There are now several examples where these stratagems are being explored in the (pre)clinical phase of therapeutic trial programmes. Another stratagem, designed to reduce the severity of a given disease involves the use of RNAi to attenuate expression of a harmful protein by decreasing abundance of the cognate transcript. Most of these strategies are short-lasting and will thus require intermittent life-long administration. In contrast, insertion of healthy copies of the relevant gene or editing the disease locus in the genome to correct harmful mutations in stem cells is more likely to induce a permanent cure. Here we discuss the potential advantages and drawbacks of applying these technologies in patients with these genetic conditions. Given the severity of many genodermatoses, prevention of transmission to future generations remains an important goal including offering reproductive choices, such as preimplantation genetic testing, which can allow selection of an unaffected embryo for transfer to the uterus.

10.
Pigment Cell Melanoma Res ; 34(1): 132-135, 2021 01.
Article in English | MEDLINE | ID: mdl-32687635

ABSTRACT

Hermansky-Pudlak syndrome (HPS) associates oculocutaneous albinism and systemic affections including platelet dense granules anomalies leading to bleeding diathesis and, depending on the form, pulmonary fibrosis, immunodeficiency, and/or granulomatous colitis. So far, 11 forms of autosomal recessive HPS caused by pathogenic variants in 11 different genes have been reported. We describe three HPS-8 consanguineous families with different homozygous pathogenic variants in BLOC1S3 (NM_212550.3), one of which is novel. These comprise two deletions leading to a reading frameshift (c.385_403del, c.338_341del) and one in frame deletion (c.444_467del). All patients have moderate oculocutaneous albinism and bleeding diathesis, but other HPS symptoms are not described. One patient diagnosed with HPS-8 suffered from lymphocyte-predominant Hodgkin lymphoma. The mild severity of HPS-8 is consistent with other HPS forms caused by variants in BLOC-1 complex coding genes (HPS-7, DTNBP1; HPS-9, BLOC1S6, HPS-11, BLOC1S5).


Subject(s)
Carrier Proteins/genetics , Hermanski-Pudlak Syndrome/pathology , Mutation , Phenotype , Adolescent , Child , Female , Hermanski-Pudlak Syndrome/genetics , Humans , Male , Pedigree
11.
Nat Commun ; 11(1): 6087, 2020 11 30.
Article in English | MEDLINE | ID: mdl-33257696

ABSTRACT

Inositol polyphosphates are vital metabolic and secondary messengers, involved in diverse cellular functions. Therefore, tight regulation of inositol polyphosphate metabolism is essential for proper cell physiology. Here, we describe an early-onset neurodegenerative syndrome caused by loss-of-function mutations in the multiple inositol-polyphosphate phosphatase 1 gene (MINPP1). Patients are found to have a distinct type of Pontocerebellar Hypoplasia with typical basal ganglia involvement on neuroimaging. We find that patient-derived and genome edited MINPP1-/- induced stem cells exhibit an inefficient neuronal differentiation combined with an increased cell death. MINPP1 deficiency results in an intracellular imbalance of the inositol polyphosphate metabolism. This metabolic defect is characterized by an accumulation of highly phosphorylated inositols, mostly inositol hexakisphosphate (IP6), detected in HEK293 cells, fibroblasts, iPSCs and differentiating neurons lacking MINPP1. In mutant cells, higher IP6 level is expected to be associated with an increased chelation of intracellular cations, such as iron or calcium, resulting in decreased levels of available ions. These data suggest the involvement of IP6-mediated chelation on Pontocerebellar Hypoplasia disease pathology and thereby highlight the critical role of MINPP1 in the regulation of human brain development and homeostasis.


Subject(s)
Cerebellar Diseases/metabolism , Chelating Agents/metabolism , Cytoplasm/metabolism , Phosphoric Monoester Hydrolases/metabolism , Phytic Acid/metabolism , Animals , Cell Death , Cell Differentiation , Cerebellar Diseases/diagnostic imaging , Cerebellar Diseases/pathology , Child , Child, Preschool , Female , Gene Knockout Techniques , HEK293 Cells , Homeostasis , Humans , Infant , Male , Mice, Inbred C57BL , Mice, Knockout , Mutation , Neurodevelopmental Disorders/metabolism , Phosphoric Monoester Hydrolases/genetics , Phosphoric Monoester Hydrolases/pharmacology , Phosphorylation , Stem Cells/drug effects , Transcriptome
12.
Hum Mutat ; 41(12): 2167-2178, 2020 12.
Article in English | MEDLINE | ID: mdl-33131162

ABSTRACT

Herein, we report the screening of a large panel of genes in a series of 80 fetuses with congenital heart defects (CHDs) and/or heterotaxy and no cytogenetic anomalies. There were 49 males (61%/39%), with a family history in 28 cases (35%) and no parental consanguinity in 77 cases (96%). All fetuses had complex CHD except one who had heterotaxy and midline anomalies while 52 cases (65%) had heterotaxy in addition to CHD. Altogether, 29 cases (36%) had extracardiac and extra-heterotaxy anomalies. A pathogenic variant was found in 10/80 (12.5%) cases with a higher percentage in the heterotaxy group (8/52 cases, 15%) compared with the non-heterotaxy group (2/28 cases, 7%), and in 3 cases with extracardiac and extra-heterotaxy anomalies (3/29, 10%). The inheritance was recessive in six genes (DNAI1, GDF1, MMP21, MYH6, NEK8, and ZIC3) and dominant in two genes (SHH and TAB2). A homozygous pathogenic variant was found in three cases including only one case with known consanguinity. In conclusion, after removing fetuses with cytogenetic anomalies, next-generation sequencing discovered a causal variant in 12.5% of fetal cases with CHD and/or heterotaxy. Genetic counseling for future pregnancies was greatly improved. Surprisingly, unexpected consanguinity accounts for 20% of cases with identified pathogenic variants.


Subject(s)
Fetus/abnormalities , Heart Defects, Congenital/genetics , Heterotaxy Syndrome/genetics , High-Throughput Nucleotide Sequencing , Cytogenetic Analysis , Family , Female , Heterozygote , Homozygote , Humans , Male , Mutation/genetics , Pedigree
13.
Eur J Hum Genet ; 28(8): 1044-1055, 2020 08.
Article in English | MEDLINE | ID: mdl-32071410

ABSTRACT

Primrose syndrome is characterized by variable intellectual deficiency, behavior disorders, facial features with macrocephaly, and a progressive phenotype with hearing loss and ectopic calcifications, distal muscle wasting, and contractures. In 2014, ZBTB20 variants were identified as responsible for this syndrome. Indeed, ZBTB20 plays an important role in cognition, memory, learning processes, and has a transcription repressive effect on numerous genes. A more severe phenotype was discussed in patients with missense single nucleotide variants than in those with large deletions. Here, we report on the clinical and molecular results of 14 patients: 6 carrying ZBTB20 missense SNVs, 1 carrying an early truncating indel, and 7 carrying 3q13.31 deletions, recruited through the AnDDI-Rares network. We compared their phenotypes and reviewed the data of the literature, in order to establish more powerful phenotype-genotype correlations. All 57 patients presented mild-to-severe ID and/or a psychomotor delay. Facial features were similar with macrocephaly, prominent forehead, downslanting palpebral fissures, ptosis, and large ears. Hearing loss was far more frequent in patients with missense SNVs (p = 0.002), ectopic calcification, progressive muscular wasting, and contractures were observed only in patients with missense SNVs (p nonsignificant). Corpus callosum dysgenesis (p = 0.00004), hypothyroidism (p = 0.047), and diabetes were also more frequent in this group. However, the median age was 9.4 years in patients with deletions and truncating variant compared with 15.1 years in those with missense SNVs. Longer follow-up will be necessary to determine whether the phenotype of patients with deletions is also progressive.


Subject(s)
Abnormalities, Multiple/genetics , Calcinosis/genetics , Ear Diseases/genetics , Intellectual Disability/genetics , Muscular Atrophy/genetics , Nerve Tissue Proteins/genetics , Phenotype , Transcription Factors/genetics , Abnormalities, Multiple/pathology , Adolescent , Calcinosis/pathology , Child , Child, Preschool , Chromosome Deletion , Chromosomes, Human, Pair 3/genetics , Corpus Callosum/diagnostic imaging , Ear Diseases/pathology , Humans , Intellectual Disability/pathology , Muscular Atrophy/pathology , Mutation, Missense
14.
Childs Nerv Syst ; 36(5): 961-965, 2020 05.
Article in English | MEDLINE | ID: mdl-32103336

ABSTRACT

PURPOSE: Subependymal giant-cell astrocytomas (SEGAs) are low grade intraventricular tumors typically found in patients with tuberous sclerosis complex (TSC). The occurrence of SEGA in non TSC patients is very rare and from a genetic point of view these so-called solitary SEGA are thought to result either from somatic mutations in one of the TSC genes (TSC1 or TSC2) limited to the tumor, or be part of a "forme fruste" of TSC with somatic mosaicism. We report on three new cases of solitary SEGA with germline and somatic mutation analysis. METHODS: We retrospectively analyzed TSC genes in three patients with a solitary SEGA using next-generation sequencing technique. RESULTS: In the three patients, a somatic mutation of TSC1 or TSC2 was found only in the tumor cells: one patient had a TSC1 heterozygote mutation, involving the natural acceptor splicing site of intron 15 (c.1998-1G > A (p.?). Two patients had a TSC2 mutation located in the canonical splicing donor site of intron 5 (c.599 + 1G > A) in 70% of the alleles in one patient and in exon 9: c.949_955dup7 (p.V319DfxX21) in 25 of the alleles in the second patient. No other TSC mutations were found in patient's blood or tumor and those identified mutations were absent in blood DNA from parents and siblings. CONCLUSION: We therefore conclude that solitary SEGA can occur with a TSC1 or TSC2 mutation limited to the tumor in patients without TSC.


Subject(s)
Astrocytoma , Astrocytoma/diagnostic imaging , Astrocytoma/genetics , High-Throughput Nucleotide Sequencing , Humans , Mutation , Retrospective Studies , Technology , Tuberous Sclerosis Complex 1 Protein/genetics , Tuberous Sclerosis Complex 2 Protein/genetics
15.
Eur J Med Genet ; 63(3): 103768, 2020 Mar.
Article in English | MEDLINE | ID: mdl-31536828

ABSTRACT

Mutations in MED12 gene have been described in association with syndromic and non-syndromic X-linked intellectual disability (XLID). Up to date at least three distinct XLID syndromes have been described: FG syndrome, Lujan-Fryns syndrome (LS) and Ohdo syndrome (OSMKB). In the last years, thanks to the massive use of next generation sequencing techniques (NGS) it has been possible to discover at least 16 others MED12 mutations and to expand the phenotype of MED12-related disorders. Here we report three subjects from a large non-consanguineous family presenting with a mild to severe ID, important speech delay, behavior problems, dysmorphic facial features and hearing loss. NGS allows us to detect the MED12 missense variant c.3883C > T (p.(Arg1295Cys)) carried by the three patients. This variant has been reported in 2016 by Hu et al. in one family from a big cohort of XLID families. This clinical report contributes to expanding the phenotype associated with MED12-mutations.


Subject(s)
Abnormalities, Multiple/genetics , Agenesis of Corpus Callosum/genetics , Anus, Imperforate/genetics , Blepharophimosis/genetics , Blepharoptosis/genetics , Constipation/genetics , Craniofacial Abnormalities/genetics , Heart Defects, Congenital/genetics , Intellectual Disability/genetics , Marfan Syndrome/genetics , Mediator Complex/genetics , Mental Retardation, X-Linked/genetics , Muscle Hypotonia/congenital , Abnormalities, Multiple/physiopathology , Adolescent , Agenesis of Corpus Callosum/physiopathology , Anus, Imperforate/physiopathology , Blepharophimosis/physiopathology , Blepharoptosis/physiopathology , Child , Constipation/physiopathology , Craniofacial Abnormalities/physiopathology , Genes, X-Linked , Hearing Loss/genetics , Hearing Loss/physiopathology , Heart Defects, Congenital/physiopathology , High-Throughput Nucleotide Sequencing , Humans , Intellectual Disability/physiopathology , Male , Marfan Syndrome/physiopathology , Mental Retardation, X-Linked/physiopathology , Middle Aged , Muscle Hypotonia/genetics , Muscle Hypotonia/physiopathology , Mutation, Missense , Pedigree
16.
Hum Mutat ; 41(1): 222-239, 2020 01.
Article in English | MEDLINE | ID: mdl-31502745

ABSTRACT

Congenital limb malformations (CLM) comprise many conditions affecting limbs and more than 150 associated genes have been reported. Due to this large heterogeneity, a high proportion of patients remains without a molecular diagnosis. In the last two decades, advances in high throughput sequencing have allowed new methodological strategies in clinical practice. Herein, we report the screening of 52 genes/regulatory sequences by multiplex high-throughput targeted sequencing, in a series of 352 patients affected with various CLM, over a 3-year period of time. Patients underwent a clinical triage by expert geneticists in CLM. A definitive diagnosis was achieved in 35.2% of patients, the yield varying considerably, depending on the phenotype. We identified 112 single nucleotide variants and 26 copy-number variations, of which 52 are novel pathogenic or likely pathogenic variants. In 6% of patients, variants of uncertain significance have been found in good candidate genes. We showed that multiplex targeted high-throughput sequencing works as an efficient and cost-effective tool in clinical practice for molecular diagnosis of congenital limb malformations. Careful clinical evaluation of patients may maximize the yield of CLM panel testing.


Subject(s)
Genetic Association Studies , Genetic Predisposition to Disease , Genetic Testing , High-Throughput Nucleotide Sequencing , Limb Deformities, Congenital/diagnosis , Limb Deformities, Congenital/genetics , Alleles , DNA Copy Number Variations , DNA Mutational Analysis , Female , Genetic Association Studies/methods , Humans , Male , Mutation , Phenotype , Radiography , Real-Time Polymerase Chain Reaction
17.
Am J Med Genet A ; 182(3): 446-453, 2020 03.
Article in English | MEDLINE | ID: mdl-31876365

ABSTRACT

Kabuki syndrome (KS, KS1: OMIM 147920 and KS2: OMIM 300867) is caused by pathogenic variations in KMT2D or KDM6A. KS is characterized by multiple congenital anomalies and neurodevelopmental disorders. Growth restriction is frequently reported. Here we aimed to create specific growth charts for individuals with KS1, identify parameters used for size prognosis and investigate the impact of growth hormone therapy on adult height. Growth parameters and parental size were obtained for 95 KS1 individuals (41 females). Growth charts for height, weight, body mass index (BMI) and occipitofrontal circumference were generated in standard deviation values for the first time in KS1. Statural growth of KS1 individuals was compared to parental target size. According to the charts, height, weight, BMI, and occipitofrontal circumference were lower for KS1 individuals than the normative French population. For males and females, the mean growth of KS1 individuals was -2 and -1.8 SD of their parental target size, respectively. Growth hormone therapy did not increase size beyond the predicted size. This study, from the largest cohort available, proposes growth charts for widespread use in the management of KS1, especially for size prognosis and screening of other diseases responsible for growth impairment beyond a calculated specific target size.


Subject(s)
Abnormalities, Multiple/genetics , DNA-Binding Proteins/genetics , Face/abnormalities , Hematologic Diseases/genetics , Hematologic Diseases/physiopathology , Neoplasm Proteins/genetics , Vestibular Diseases/genetics , Vestibular Diseases/physiopathology , Abnormalities, Multiple/diagnosis , Abnormalities, Multiple/physiopathology , Adolescent , Body Height , Body Mass Index , Body Weight , Child , Child, Preschool , Face/physiopathology , Female , Growth Charts , Hematologic Diseases/diagnosis , Histone Demethylases/genetics , Humans , Male , Mutation/genetics , Vestibular Diseases/diagnosis
18.
Orthop Traumatol Surg Res ; 106(1S): S115-S123, 2020 02.
Article in English | MEDLINE | ID: mdl-31648997

ABSTRACT

Congenital pathologies of the forefoot encompass two broad entities with vastly different treatments and prognosis: malformations, which occur during the embryonic period and cause anatomical defects, and deformations, which occur during the fetal period on a foot that is configured normally. These deformities are more easily cured when they occur later during the fetal period. When the anomaly is bilateral, a genetic origin must be considered. There are two main entities under the term "deformity": metatarsus adductus and skewfoot (aka "Z"-foot or serpentine foot). Within malformations are brachydactyly (transverse defects), longitudinal defects, syndactyly, polydactyly, clinodactyly and macrodactyly. Among other forefoot abnormalities are hallux valgus, which rarely presents in congenital form, and for which conservative treatment is sometimes sufficient. Also in this group are sequelae of amniotic band constriction, forefoot anomalies secondary to the treatment of congenital pathologies (talipes equinovarus and congenital vertical talus) and nail-related pathologies (ingrown toe nail and incorrect nail position).


Subject(s)
Foot Deformities, Congenital/diagnosis , Metatarsal Bones/abnormalities , Child , Foot Deformities, Congenital/epidemiology , Global Health , Humans , Incidence , Metatarsal Bones/diagnostic imaging , Radiography
19.
Orphanet J Rare Dis ; 14(1): 288, 2019 12 11.
Article in English | MEDLINE | ID: mdl-31829210

ABSTRACT

BACKGROUND: Segmental progeroid syndromes are a heterogeneous group of rare and often severe genetic disorders that have been studied since the twentieth century. These progeroid syndromes are defined as segmental because only some of the features observed during natural aging are accelerated. METHODS: Since 2015, the Molecular Genetics Laboratory in Marseille La Timone Hospital proposes molecular diagnosis of premature aging syndromes including laminopathies and related disorders upon NGS sequencing of a panel of 82 genes involved in these syndromes. We analyzed the results obtained in 4 years on 66 patients issued from France and abroad. RESULTS: Globally, pathogenic or likely pathogenic variants (ACMG class 5 or 4) were identified in about 1/4 of the cases; among these, 9 pathogenic variants were novel. On the other hand, the diagnostic yield of our panel was over 60% when the patients were addressed upon a nosologically specific clinical suspicion, excepted for connective tissue disorders, for which clinical diagnosis may be more challenging. Prenatal testing was proposed to 3 families. We additionally detected 16 variants of uncertain significance and reclassified 3 of them as benign upon segregation analysis in first degree relatives. CONCLUSIONS: High throughput sequencing using the Laminopathies/ Premature Aging disorders panel allowed molecular diagnosis of rare disorders associated with premature aging features and genetic counseling for families, representing an interesting first-level analysis before whole genome sequencing may be proposed, as a future second step, by the National high throughput sequencing platforms ("Medicine France Genomics 2025" Plan), in families without molecular diagnosis.


Subject(s)
Aging, Premature/genetics , Adolescent , Adult , Aged , Child , Child, Preschool , Female , Genetic Counseling , Genetic Testing , Genetic Variation/genetics , Genomics/methods , High-Throughput Nucleotide Sequencing , Humans , Infant , Male , Middle Aged , Mutation/genetics , Sequence Analysis, DNA/methods , Whole Genome Sequencing/methods , Young Adult
20.
Orphanet J Rare Dis ; 14(1): 121, 2019 05 31.
Article in English | MEDLINE | ID: mdl-31151468

ABSTRACT

Williams Beuren syndrome (WBS) is a multiple malformations/intellectual disability (ID) syndrome caused by 7q11.23 microdeletion and clinically characterized by a typical neurocognitive profile including excessive talkativeness and social disinhibition, often defined as "overfriendliness" and "hyersociability". WBS is generally considered as the polar opposite phenotype to Autism Spectrum Disorder (ASD). Surprisingly, the prevalence of ASD has been reported to be significantly higher in WBS (12%) than in general population (1%). Our study aims to investigate the molecular basis of the peculiar association of ASD and WBS. We performed chromosomal microarray analysis and whole exome sequencing in six patients presenting with WBS and ASD, in order to evaluate the possible presence of chromosomal or gene variants considered as pathogenic.Our study shows that the presence of ASD in the recruited WBS patients is due to i) neither atypically large deletions; ii) nor the presence of pathogenic variants in genes localized in the non-deleted 7q11.23 allele which would unmask recessive conditions; iii) moreover, we did not identify a second, indisputable independent genetic diagnosis, related to pathogenic Copy Number Variations or rare pathogenic exonic variants in known ID/ASD causing genes, although several variants of unknown significance were found. Finally, imprinting effect does not appear to be the only cause of autism in WBS patients, since the deletions occurred in alleles of both maternal and paternal origin.The social disinhibition observed in WBS does not follow common social norms and symptoms overlapping with ASD, such as restricted interests and repetitive behavior, can be observed in "typical" WBS patients: therefore, the terms "overfriendliness" and "hypersociability" appear to be a misleading oversimplification.The etiology of ASD in WBS is likely to be heterogeneous. Further studies on large series of patients are needed to clarify the observed variability in WBS social communication, ranging from excessive talkativeness and social disinhibition to absence of verbal language and social deficit.


Subject(s)
Autism Spectrum Disorder/genetics , DNA Copy Number Variations/genetics , Exome Sequencing/methods , Williams Syndrome/genetics , Adolescent , Adult , Child , Chromosome Deletion , Female , Humans , Male , Phenotype , Young Adult
SELECTION OF CITATIONS
SEARCH DETAIL
...