Literature DB >> 34839010

Inherited retinal diseases: Linking genes, disease-causing variants, and relevant therapeutic modalities.

Nina Schneider1, Yogapriya Sundaresan1, Prakadeeswari Gopalakrishnan1, Avigail Beryozkin1, Mor Hanany1, Erez Y Levanon2, Eyal Banin1, Shay Ben-Aroya2, Dror Sharon3.   

Abstract

Inherited retinal diseases (IRDs) are a clinically complex and heterogenous group of visual impairment phenotypes caused by pathogenic variants in at least 277 nuclear and mitochondrial genes, affecting different retinal regions, and depleting the vision of affected individuals. Genes that cause IRDs when mutated are unique by possessing differing genotype-phenotype correlations, varying inheritance patterns, hypomorphic alleles, and modifier genes thus complicating genetic interpretation. Next-generation sequencing has greatly advanced the identification of novel IRD-related genes and pathogenic variants in the last decade. For this review, we performed an in-depth literature search which allowed for compilation of the Global Retinal Inherited Disease (GRID) dataset containing 4,798 discrete variants and 17,299 alleles published in 31 papers, showing a wide range of frequencies and complexities among the 194 genes reported in GRID, with 65% of pathogenic variants being unique to a single individual. A better understanding of IRD-related gene distribution, gene complexity, and variant types allow for improved genetic testing and therapies. Current genetic therapeutic methods are also quite diverse and rely on variant identification, and range from whole gene replacement to single nucleotide editing at the DNA or RNA levels. IRDs and their suitable therapies thus require a range of effective disease modelling in human cells, granting insight into disease mechanisms and testing of possible treatments. This review summarizes genetic and therapeutic modalities of IRDs, provides new analyses of IRD-related genes (GRID and complexity scores), and provides information to match genetic-based therapies such as gene-specific and variant-specific therapies to the appropriate individuals.
Copyright © 2021 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  CRISPR-Cas; DNA editing; Disease-causing variant; Gene; Gene therapy; Genotype-phenotype correlation; Inherited retinal diseases; RNA editing; Retinal degeneration; Retinitis pigmentosa; Translational read-through

Mesh:

Year:  2021        PMID: 34839010     DOI: 10.1016/j.preteyeres.2021.101029

Source DB:  PubMed          Journal:  Prog Retin Eye Res        ISSN: 1350-9462            Impact factor:   19.704


  2 in total

1.  Tissue-specific genotype-phenotype correlations among USH2A-related disorders in the RUSH2A study.

Authors:  Robert B Hufnagel; Wendi Liang; Jacque L Duncan; Carmen C Brewer; Isabelle Audo; Allison R Ayala; Kari Branham; Janet K Cheetham; Stephen P Daiger; Todd A Durham; Bin Guan; Elise Heon; Carel B Hoyng; Alessandro Iannaccone; Christine N Kay; Michel Michaelides; Mark E Pennesi; Mandeep S Singh; Ehsan Ullah
Journal:  Hum Mutat       Date:  2022-03-21       Impact factor: 4.700

2.  Exploring the mutational landscape of genes associated with inherited retinal disease using large genomic datasets: identifying loss of function intolerance and outlying propensities for missense changes.

Authors:  Alexander Tanner; Hwei Wuen Chan; Elena Schiff; Omar A Mahroo; Jose S Pulido
Journal:  BMJ Open Ophthalmol       Date:  2022-08-25
  2 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.