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1.
BMC Med Genet ; 21(1): 214, 2020 10 31.
Article in English | MEDLINE | ID: mdl-33129265

ABSTRACT

BACKGROUND: Kyphoscoliotic Ehlers-Danlos syndrome (kEDS) is a rare autosomal recessive connective tissue disorder characterized by progressive kyphoscoliosis, congenital muscular hypotonia, marked joint hypermobility, and severe skin hyperextensibility and fragility. Deficiency of lysyl hydroxylase 1 (LH1) due to mutations of PLOD1 (procollagen-lysine, 2-oxoglutarate 5-dioxygenase 1) gene has been identified as the pathogenic cause of kEDS (kEDS-PLOD1). Up to now, kEDS-PLOD1 has not been reported among Chinese population. CASE PRESENTATION: A 17-year-old Chinese male patient presenting with hypotonia, joint hypermobility and scoliosis was referred to our hospital. After birth, he was found to have severe hypotonia leading to delayed motor development. Subsequently, joint hypermobility, kyphoscoliosis and amblyopia were found. Inguinal hernia was found at age 5 years and closed by surgery. At the same time, he presented with hyperextensible and bruisable velvety skin with widened atrophic scarring after minor trauma. Dislocation of elbow joint was noted at age of 6 years. Orthopedic surgery for correction of kyphoscoliosis was performed at age 10 years. His family history was unremarkable. Physical examination revealed elevated blood pressure. Slight facial dysmorphologies including high palate, epicanthal folds, and down-slanting palpebral fissures were found. He also had blue sclerae with normal hearing. X-rays revealed severe degree of scoliosis and osteopenia. The Echocardiography findings were normal. Laboratory examination revealed a slightly elevated bone turnover. Based on the clinical manifestations presented by our patient, kEDS was suspected. Genetic analysis revealed a novel homozygous missense mutation of PLOD1 (c.1697 G > A, p.C566Y), confirming the diagnosis of kEDS-PLOD1. The patient was treated with alfacalcidol and nifedipine. Improved physical strength and normal blood pressure were reported after 12-month follow-up. CONCLUSIONS: This is the first case of kEDS-PLOD1 of Chinese origin. We identified one novel mutation of PLOD1, extending the mutation spectrum of PLOD1. Diagnosis of kEDS-PLOD1 should be considered in patients with congenital hypotonia, progressive kyphoscoliosis, joint hypermobility, and skin hyperextensibility and confirmed by mutation analysis of PLOD1.


Subject(s)
Ehlers-Danlos Syndrome/genetics , Kyphosis/genetics , Mutation, Missense , Procollagen-Lysine, 2-Oxoglutarate 5-Dioxygenase/genetics , Scoliosis/genetics , Adolescent , Asian People , Base Sequence , Bone Density Conservation Agents/therapeutic use , Calcium Channel Blockers/therapeutic use , Ehlers-Danlos Syndrome/drug therapy , Ehlers-Danlos Syndrome/ethnology , Ehlers-Danlos Syndrome/pathology , Gene Expression , Genes, Recessive , Humans , Hydroxycholecalciferols/therapeutic use , Kyphosis/drug therapy , Kyphosis/ethnology , Kyphosis/pathology , Male , Nifedipine/therapeutic use , Phenotype , Procollagen-Lysine, 2-Oxoglutarate 5-Dioxygenase/deficiency , Scoliosis/drug therapy , Scoliosis/ethnology , Scoliosis/pathology
2.
Nat Commun ; 9(1): 1864, 2018 05 14.
Article in English | MEDLINE | ID: mdl-29760442

ABSTRACT

Central corneal thickness (CCT) is a highly heritable trait associated with complex eye diseases such as keratoconus and glaucoma. We perform a genome-wide association meta-analysis of CCT and identify 19 novel regions. In addition to adding support for known connective tissue-related pathways, pathway analyses uncover previously unreported gene sets. Remarkably, >20% of the CCT-loci are near or within Mendelian disorder genes. These included FBN1, ADAMTS2 and TGFB2 which associate with connective tissue disorders (Marfan, Ehlers-Danlos and Loeys-Dietz syndromes), and the LUM-DCN-KERA gene complex involved in myopia, corneal dystrophies and cornea plana. Using index CCT-increasing variants, we find a significant inverse correlation in effect sizes between CCT and keratoconus (r = -0.62, P = 5.30 × 10-5) but not between CCT and primary open-angle glaucoma (r = -0.17, P = 0.2). Our findings provide evidence for shared genetic influences between CCT and keratoconus, and implicate candidate genes acting in collagen and extracellular matrix regulation.


Subject(s)
Cornea/metabolism , Genome, Human , Glaucoma, Open-Angle/genetics , Keratoconus/genetics , Polymorphism, Single Nucleotide , Quantitative Trait, Heritable , ADAMTS Proteins/genetics , ADAMTS Proteins/metabolism , Asian People , Cornea/abnormalities , Cornea/pathology , Corneal Diseases/ethnology , Corneal Diseases/genetics , Corneal Diseases/metabolism , Corneal Diseases/pathology , Corneal Dystrophies, Hereditary/ethnology , Corneal Dystrophies, Hereditary/genetics , Corneal Dystrophies, Hereditary/metabolism , Corneal Dystrophies, Hereditary/pathology , Decorin/genetics , Decorin/metabolism , Ehlers-Danlos Syndrome/ethnology , Ehlers-Danlos Syndrome/genetics , Ehlers-Danlos Syndrome/metabolism , Ehlers-Danlos Syndrome/pathology , Eye Diseases, Hereditary/ethnology , Eye Diseases, Hereditary/genetics , Eye Diseases, Hereditary/metabolism , Eye Diseases, Hereditary/pathology , Fibrillin-1/genetics , Fibrillin-1/metabolism , Gene Expression , Genome-Wide Association Study , Glaucoma, Open-Angle/ethnology , Glaucoma, Open-Angle/metabolism , Glaucoma, Open-Angle/pathology , Humans , Keratoconus/ethnology , Keratoconus/metabolism , Keratoconus/pathology , Loeys-Dietz Syndrome/ethnology , Loeys-Dietz Syndrome/genetics , Loeys-Dietz Syndrome/metabolism , Loeys-Dietz Syndrome/pathology , Lumican/genetics , Lumican/metabolism , Marfan Syndrome/ethnology , Marfan Syndrome/genetics , Marfan Syndrome/metabolism , Marfan Syndrome/pathology , Mendelian Randomization Analysis , Myopia/ethnology , Myopia/genetics , Myopia/metabolism , Myopia/pathology , Proteoglycans/genetics
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