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1.
Appl Immunohistochem Mol Morphol ; 31(10): 690-696, 2023.
Article in English | MEDLINE | ID: mdl-37796154

ABSTRACT

Sudden cardiac death is a sudden, unexpected death developed by one of the many different causes of cardiac arrest that occur within 1 hour of the onset of new symptoms. Sudden unexplained death (SUD) comprises a normal heart at postmortem examination and negative toxicological analysis. SUD often arises from cardiac genetic disease, particularly channelopathies. Channelopathies, or inherited arrhythmia syndromes, are a group of disorders characterized by an increased risk of sudden cardiac death, abnormal cardiac electrical function, and, typically, a structurally normal heart. They share an underlying genetic etiology where disease-causing genetic variants may lead to the absence or dysfunction of proteins involved in the generation and propagation of the cardiac action potential. Our study aimed to evaluate the importance of next-generation sequencing in the postmortem investigations of SUD cases. In this study, 5 forensic SUD cases were investigated for inherited cardiac disorders. We screened a total of 68 cardiac genes for the sibling of case 1, as well as case 2, and 51 genes for cases 3, 4, and 5. Of the 12 variants identified, 2 likely pathogenic variants (16.7%) were the TMEM43 _ c.1000+2T>C splice site mutation and the SCN5A _ p.W703X nonsense mutation. The remaining 10 variants of uncertain significance were detected in the TRPM4 , RANGRF , A KAP9 , KCND3 , KCNE1 , DSG2 , CASQ1 , and SNTA1 genes. Irrespective of genetic testing, all SUD families require detailed clinical testing to identify relatives who may be at risk. Molecular autopsy and detailed premorbid clinical and family histories can survive family members of SUD cases.


Subject(s)
Channelopathies , Humans , Autopsy , Channelopathies/diagnosis , Channelopathies/genetics , Channelopathies/complications , Death, Sudden, Cardiac/etiology , Death, Sudden, Cardiac/pathology , Arrhythmias, Cardiac/diagnosis , Arrhythmias, Cardiac/genetics , Arrhythmias, Cardiac/complications , Mutation
2.
Eur J Cancer Prev ; 31(6): 568-576, 2022 11 01.
Article in English | MEDLINE | ID: mdl-35671254

ABSTRACT

Many investigations exist regarding the effect of the DNA repair enzyme MGMT (O 6 -methylguanine- DNA-methyltransferase)-encoding gene methylation on the antineoplasticity of temozolomide in glioblastoma patients. However, there exist surprisingly lesser studies regarding the associations between MGMT enzyme biochemistry with glial carcinogenesis. MGMT involves in risk of malignancies associated with ionizing radiation, smoking, exposure to polycyclic aromatic hydrocarbons, chlorinated solvents, vinylchloride and hairdyes. All these factors are also proposed to link with gliomagenesis, yet MGMT interactions with these carcinogens in gliomagenesis are not studied yet. In future, MGMT sequencing may be employed in vulnerable populations working in industries associated with exposure to these carcinogens to develop preventive strategies. Given that MGMT is involved in DNA repair, a polymorphism may simultaneously modify the risk of gliomas while enhancing temozolomide cytotoxicity in both marrow and tumor cells.


Subject(s)
Brain Neoplasms , Polycyclic Aromatic Hydrocarbons , Brain Neoplasms/genetics , Brain Neoplasms/pathology , Brain Neoplasms/prevention & control , Carcinogenesis/genetics , Carcinogens , DNA , DNA Methylation , DNA Modification Methylases/genetics , DNA Repair Enzymes/genetics , Dacarbazine , Humans , O(6)-Methylguanine-DNA Methyltransferase/genetics , O(6)-Methylguanine-DNA Methyltransferase/metabolism , Solvents , Temozolomide , Tumor Suppressor Proteins/genetics
3.
Am J Hum Genet ; 107(2): 342-351, 2020 08 06.
Article in English | MEDLINE | ID: mdl-32673564

ABSTRACT

Male infertility affects ∼7% of men, but its causes remain poorly understood. The most severe form is non-obstructive azoospermia (NOA), which is, in part, caused by an arrest at meiosis. So far, only a few validated disease-associated genes have been reported. To address this gap, we performed whole-exome sequencing in 58 men with unexplained meiotic arrest and identified the same homozygous frameshift variant c.676dup (p.Trp226LeufsTer4) in M1AP, encoding meiosis 1 associated protein, in three unrelated men. This variant most likely results in a truncated protein as shown in vitro by heterologous expression of mutant M1AP. Next, we screened four large cohorts of infertile men and identified three additional individuals carrying homozygous c.676dup and three carrying combinations of this and other likely causal variants in M1AP. Moreover, a homozygous missense variant, c.1166C>T (p.Pro389Leu), segregated with infertility in five men from a consanguineous Turkish family. The common phenotype between all affected men was NOA, but occasionally spermatids and rarely a few spermatozoa in the semen were observed. A similar phenotype has been described for mice with disruption of M1ap. Collectively, these findings demonstrate that mutations in M1AP are a relatively frequent cause of autosomal recessive severe spermatogenic failure and male infertility with strong clinical validity.


Subject(s)
Cell Cycle Checkpoints/genetics , Infertility, Male/genetics , Meiosis/genetics , Mutation/genetics , Proteins/genetics , Spermatogenesis/genetics , Adult , Alleles , Animals , Azoospermia/genetics , Homozygote , Humans , Male , Mice , Phenotype , Spermatozoa/abnormalities , Testis/abnormalities , Turkey , Exome Sequencing/methods
4.
Connect Tissue Res ; 60(2): 146-154, 2019 03.
Article in English | MEDLINE | ID: mdl-29732924

ABSTRACT

Marfan syndrome (MFS) is a multi-systemic autosomal dominant condition caused by mutations in the gene (FBN1) coding for fibrillin-1. Mutations have been associated with a wide range of overlapping phenotypes. Here, we report on an extended family presenting with skeletal, ocular and cardiovascular clinical features. The 37-year-old male propositus, who had chest pain, dyspnea and shortness of breath, was first diagnosed based on the revised Ghent criteria and then subjected to molecular genetic analyses. FBN1 sequencing of the proband as well as available affected family members revealed the presence of a novel variant, c.7828G>C (p.Glu2610Gln), which was not present in any of the unaffected family members. In silico analyses demonstrated that the Glu2610 residue is part of the conserved DINE motif found at the beginning of each cbEGF domain of FBN1. The substitution of Glu2610 with Gln decreased fibrillin-1 production accordingly. Despite the fact that this variation appears to be primarily responsible for the etiology of MFS in the present family, our findings suggest that variable clinical expressions of the disease phenotype should be considered critically by the physicians.


Subject(s)
Fibrillin-1/genetics , Marfan Syndrome/genetics , Marfan Syndrome/pathology , Mutation/genetics , Adolescent , Adult , Amino Acid Sequence , Base Sequence , Child , Computer Simulation , Family , Female , Fibrillin-1/chemistry , Heterozygote , Humans , Male , Pedigree , Phenotype
5.
Hum Mutat ; 39(10): 1344-1348, 2018 10.
Article in English | MEDLINE | ID: mdl-30058754

ABSTRACT

We present three siblings afflicted with a disease characterized by cerebellar ataxia, cerebellar atrophy, pyramidal tract damage with increased lower limb tendon reflexes, and onset of 31 to 57 years, which is not typical for a known disease. In a region of shared homozygosity in patients, exome sequencing revealed novel homozygous c.*240T > C variant in the 3'UTR of STUB1, the gene responsible for autosomal recessive spinocerebellar ataxia 16 (SCAR16). In other genes, such an alteration of the evolutionarily highly conserved polyadenylation signal from AATAAA to AACAAA is known to highly impair polyadenylation. In contrast, RNA sequencing and quantification revealed that neither polyadenylation nor stability of STUB1 mRNA is affected. In silico analysis predicted that the secondary structure of the mRNA is altered. We propose that this change underlies the extremely low amounts of the encoded protein in patient leukocytes.


Subject(s)
Genetic Variation , Poly A , Polyadenylation , Ubiquitin-Protein Ligases/genetics , 3' Untranslated Regions , Brain/abnormalities , Brain/diagnostic imaging , Cerebellar Ataxia/diagnosis , Cerebellar Ataxia/genetics , DNA Mutational Analysis , Humans , Magnetic Resonance Imaging , Pedigree
6.
BMC Med Genet ; 18(1): 114, 2017 10 16.
Article in English | MEDLINE | ID: mdl-29037160

ABSTRACT

BACKGROUND: Jervell and Lange-Nielsen syndrome (JLNS) isa recessive model of long QT syndrome which might also be related to possible hearing loss. Although the syndrome has been demonstrated to be originated from homozygous or compound heterozygous mutations in either the KCNQ1 or KCNE1 genes, additional mutations in other genetic loci should be considered, particularly in malignant course patients. CASE PRESENTATIONS: Three patients were admitted into hospital due to recurrent seizures/syncope, intrauterine and postnatal bradycardia respectively; moreover all three patients had congenital sensorineural hearing-loss. Their electrocardiograms showed markedly prolonged QT interval. Implantable defibrillator was implanted and left cardiac sympathetic denervation was performed due to the progressive disease in case 1. She had countless ventricular fibrillation and appropriate shock while using an implantable defibrillator. The DNA sequencing analysis of the KCNQ1 gene disclosed a homozygous c.728G > A (p.Arg243His) missense mutation in case1. Further targeted next generation sequencing of cardiac panel comprising 68 gene revealed a heterozygous c.1346 T > G (p.Ile449Arg) variant in RYR2 gene and a heterozygous c.809G > A (p.Cys270Tyr) variant in NKX2-5 gene in the same patient. Additional gene alterations in RYR2 and NKX2-5 genes were thought to be responsible for progressive and malignant course of the disease. As a result of DNA sequencing analysis of KCNQ1 and KCNE1 genes, a compound heterozygosity for two mutations had been detected in KCNQ1 gene in case 2: a maternally derived c.477 + 1G > A splice site mutation and a paternally derived c.520C > T (p.Arg174Cys) missense mutation. Sanger sequencing of KCNQ1 and KCNE1 genes displayed a homozygous c.1097G > A (p.Arg366Gln) mutation in KCNQ1 gene in case 3. ß-blocker therapy was initiated to all the index subjects. CONCLUSIONS: Three families of JLNS who presented with long QT and deafness and who carry homozygous, or compound heterozygous mutation in KCNQ1 gene were presented in this report. It was emphasized that broad targeted cardiac panels may be useful to predict the outcome especially in patients with unexplained phenotype-genotype correlation. Clinical presentations and molecular findings will be discussed further to clarify the phenotype genotype associations.


Subject(s)
Hearing Loss, Sensorineural/congenital , Jervell-Lange Nielsen Syndrome/genetics , KCNQ1 Potassium Channel/genetics , Polymorphism, Single Nucleotide , Adrenergic beta-Antagonists/therapeutic use , Child, Preschool , Electrocardiography , Female , Hearing Loss, Sensorineural/etiology , Heterozygote , High-Throughput Nucleotide Sequencing/methods , Homeobox Protein Nkx-2.5/genetics , Homozygote , Humans , Infant , Jervell-Lange Nielsen Syndrome/diagnosis , Jervell-Lange Nielsen Syndrome/drug therapy , Male , Pedigree , Potassium Channels, Voltage-Gated/genetics , Ryanodine Receptor Calcium Release Channel/genetics , Sequence Analysis, DNA/methods , Turkey
7.
Article in English | MEDLINE | ID: mdl-28458651

ABSTRACT

INTRODUCTION: Congenital isolated adrenocorticotropic hormone deficiency (CIAD) is a rare disease characterized by low adrenocorticotropic hormone (ACTH) and cortisol levels. To date, recurrent pulmonary infections in infancy have not been reported as an accompanying symptom of CIAD. CASE PRESENTATION: A 7-year-old boy was hospitalized nine times for recurrent lower respiratory tract infections. The results of all tests for the possible causes of wheezing were within the normal limits. His ACTH and cortisol levels were persistently low. All other pituitary hormone levels, and adrenal ultrasound and pituitary magnetic resonance imaging results, were normal. Molecular analyses confirmed the diagnosis of CIAD by identifying compound heterozygosity for two mutations in the TBX19 gene. The first was a novel frameshift c.665delG variant in exon 4 of the TBX19 gene, leading to premature termination that was predicted to result in a non-functional truncated protein. The second was a nonsense C-to-T transition in exon 6 of the TBX19 gene, resulting in an arg286-to-ter mutation (dbSNP: rs74315376). Both parents were heterozygous for one of the mutations. CONCLUSION: Here, we presented a new mutation in the TBX19 gene in a patient with CIAD who presented with recurrent respiratory tract infections. This expands the mutation spectrum in this disorder. To conclude, adrenal insufficiency should be considered in patients with unexplained recurrent infections to prevent a delay in diagnosis.

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