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Clinical and genetic findings in Chinese families with congenital ectopia lentis

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AbstractBackgroundCongenital ectopia lentis (EL) refers to the congenital dysplasia or weakness of the lens suspensory ligament, resulting in an abnormal position of the crystalline lens, which can appear as isolated EL or as an ocular manifestation of a syndrome, such as the Marfan syndrome. The fibrillin‐1 protein encoded by the FBN1 gene is an essential component of the lens zonules. Mutations in FBN1 are the leading causes of congenital EL and Marfan syndrome. Owing to the complexity and individual heterogeneity of FBN1 gene mutations, the correlation between FBN1 mutation characteristics and various clinical phenotypes remains unclear.MethodsThis study describes the clinical characteristics and identifies possible causative genes in eight families with Marfan syndrome or isolated EL using Sanger and whole‐exome sequencing.ResultsEight FBN1 mutations were identified in these families, of which three (c.5065G > C, c.1600 T > A, and c.2210G > C) are reported for the first time. Based on in silico analyses, we hypothesized that these mutations may be pathogenic by affecting the fibrillin‐1 protein structure and function.ConclusionThese findings expand the number of known mutations involved in EL and provide a reference for the research on their genotype and phenotype associations.
Title: Clinical and genetic findings in Chinese families with congenital ectopia lentis
Description:
AbstractBackgroundCongenital ectopia lentis (EL) refers to the congenital dysplasia or weakness of the lens suspensory ligament, resulting in an abnormal position of the crystalline lens, which can appear as isolated EL or as an ocular manifestation of a syndrome, such as the Marfan syndrome.
The fibrillin‐1 protein encoded by the FBN1 gene is an essential component of the lens zonules.
Mutations in FBN1 are the leading causes of congenital EL and Marfan syndrome.
Owing to the complexity and individual heterogeneity of FBN1 gene mutations, the correlation between FBN1 mutation characteristics and various clinical phenotypes remains unclear.
MethodsThis study describes the clinical characteristics and identifies possible causative genes in eight families with Marfan syndrome or isolated EL using Sanger and whole‐exome sequencing.
ResultsEight FBN1 mutations were identified in these families, of which three (c.
5065G > C, c.
1600 T > A, and c.
2210G > C) are reported for the first time.
Based on in silico analyses, we hypothesized that these mutations may be pathogenic by affecting the fibrillin‐1 protein structure and function.
ConclusionThese findings expand the number of known mutations involved in EL and provide a reference for the research on their genotype and phenotype associations.

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