AI Article Synopsis

  • Glaucoma is a leading cause of irreversible blindness, with a genetic background, and this study investigates new genes linked to familial forms of both primary open-angle glaucoma (POAG) and primary angle closure glaucoma (PACG).
  • Whole-exome sequencing was performed on 31 samples from glaucoma-affected families and followed by validation on a larger cohort, identifying rare mutations in critical genes associated with familial glaucoma.
  • The research highlighted altered gene expression in specific retinal cells and suggested a connection to extracellular matrix organization, proposing new genetic insights into the development of POAG and PACG.

Article Abstract

Glaucoma is the largest cause of irreversible blindness with a multifactorial genetic etiology. This study explores novel genes and gene networks in familial forms of primary open angle glaucoma (POAG) and primary angle closure glaucoma (PACG) to identify rare mutations with high penetrance. Thirty-one samples from nine -negative families (five POAG and four PACG) underwent whole-exome sequencing and analysis. A set of prioritized genes and variations were screened in an independent validation cohort of 1536 samples and the whole-exome data from 20 sporadic patients. The expression profiles of the candidate genes were analyzed in 17 publicly available expression datasets from ocular tissues and single cells. Rare, deleterious SNVs in and from POAG families and in and from PACG families were found exclusively in glaucoma cases. and also revealed significant altered expression in glaucoma in expression datasets. Single-cell expression analysis revealed enrichment of identified candidate genes in retinal ganglion cells and corneal epithelial cells in POAG; whereas for PACG families, retinal ganglion cells and Schwalbe's Line showed enriched expression. Through an unbiased exome-wide search followed by validation, we identified novel candidate genes for familial cases of POAG and PACG. The gene found in a POAG family is located within the GLC1M locus on Chr5q. Pathway analysis of candidate genes revealed enrichment of extracellular matrix organization in both POAG and PACG.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9957298PMC
http://dx.doi.org/10.3390/genes14020495DOI Listing

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