학술논문

Biallelic Mutation of ARHGEF18, Involved in the Determination of Epithelial Apicobasal Polarity, Causes Adult-Onset Retinal Degeneration
Document Type
article
Author
Arno, GavinCarss, Keren JHull, SarahZihni, CenizRobson, Anthony GFiorentino, AlessiaHardcastle, Alison JHolder, Graham ECheetham, Michael EPlagnol, VincentMoore, AnthonyRaymond, F LucyMatter, KarlBalda, Maria SWebster, Andrew RBlack, GraemeHall, GeorginaIngram, StuartGillespie, RachelManson, ForbesSergouniotis, PanagiotisInglehearn, ChrisToomes, CarmelAli, ManirMcKibbin, MartinPoulter, JamesKhan, KamronLord, EmmaNemeth, AndreaDownes, SusanHalford, StephanieYu, JingLise, StefanoPonitkos, NikosMichaelides, MichelWebster, Andrewvan Heyningen, VeronicaAitman, TimothyAlachkar, HanaAli, SoniaAllen, LouiseAllsup, DavidAmbegaonkar, GautumAnderson, JulieAntrobus, RichardArmstrong, RuthArumugakani, GururajAshford, SofieAstle, WilliamAttwood, AntonyAustin, SteveBacchelli, ChiaraBakchoul, TamamBariana, Tadbir KBaxendale, HelenBennett, DavidBethune, ClaireBibi, ShahnazBitner-Glindzicz, MariaBleda, MartaBoggard, HarmBolton-Maggs, PaulaBooth, ClaireBradley, John RBrady, AngieBrown, MatthewBrowning, MichaelBryson, ChristineBurns, SiobhanCalleja, PaulCanham, NatalieCarmichael, JennyCarss, KerenCaulfield, MarkChalmers, ElizabethChandra, AnitaChinnery, PatrickChitre, ManaliChurch, ColinClement, EmmaClements-Brod, NaomiClowes, VirginiaCoghlan, GerryCollins, PeterCooper, NicholaCreaser-Myers, AmandaDaCosta, RosaDaugherty, LouiseDavies, SophieDavis, JohnDe Vries, MinkaDeegan, PatrickDeevi, Sri VVDeshpande, Charu
Source
American Journal of Human Genetics. 100(2)
Subject
Biological Sciences
Bioinformatics and Computational Biology
Biomedical and Clinical Sciences
Genetics
Ophthalmology and Optometry
Human Genome
Rare Diseases
Neurosciences
Eye Disease and Disorders of Vision
Aetiology
2.1 Biological and endogenous factors
Eye
Adult
Alleles
Amino Acid Sequence
Cell Polarity
Epithelial Cells
Exome
Eye Proteins
Female
Genetic Variation
Genome-Wide Association Study
Genotype
Humans
Male
Membrane Proteins
Middle Aged
Mutation
Missense
Nerve Tissue Proteins
Pedigree
Phenotype
Retina
Retinal Degeneration
Retinal Dystrophies
Rho Guanine Nucleotide Exchange Factors
rhoA GTP-Binding Protein
UK Inherited Retinal Disease Consortium
NIHR Bioresource - Rare Diseases Consortium
ARHGEF18
apicobasal polarity
inherited retinal dystrophy
p114RhoGEF
retinal degeneration
retinitis pigmentosa
Medical and Health Sciences
Genetics & Heredity
Biological sciences
Biomedical and clinical sciences
Health sciences
Language
Abstract
Mutations in more than 250 genes are implicated in inherited retinal dystrophy; the encoded proteins are involved in a broad spectrum of pathways. The presence of unsolved families after highly parallel sequencing strategies suggests that further genes remain to be identified. Whole-exome and -genome sequencing studies employed here in large cohorts of affected individuals revealed biallelic mutations in ARHGEF18 in three such individuals. ARHGEF18 encodes ARHGEF18, a guanine nucleotide exchange factor that activates RHOA, a small GTPase protein that is a key component of tight junctions and adherens junctions. This biological pathway is known to be important for retinal development and function, as mutation of CRB1, encoding another component, causes retinal dystrophy. The retinal structure in individuals with ARHGEF18 mutations resembled that seen in subjects with CRB1 mutations. Five mutations were found on six alleles in the three individuals: c.808A>G (p.Thr270Ala), c.1617+5G>A (p.Asp540Glyfs∗63), c.1996C>T (p.Arg666∗), c.2632G>T (p.Glu878∗), and c.2738_2761del (p.Arg913_Glu920del). Functional tests suggest that each disease genotype might retain some ARHGEF18 activity, such that the phenotype described here is not the consequence of nullizygosity. In particular, the p.Thr270Ala missense variant affects a highly conserved residue in the DBL homology domain, which is required for the interaction and activation of RHOA. Previously, knock-out of Arhgef18 in the medaka fish has been shown to cause larval lethality which is preceded by retinal defects that resemble those seen in zebrafish Crumbs complex knock-outs. The findings described here emphasize the peculiar sensitivity of the retina to perturbations of this pathway, which is highlighted as a target for potential therapeutic strategies.