Substitution of a single non-coding nucleotide upstream of TMEM216 causes non-syndromic retinitis pigmentosa and is associated with reduced TMEM216 expression

色素性视网膜炎 遗传学 替代(逻辑) 编码区 生物 核苷酸 上游(联网) 表达式(计算机科学) 编码(社会科学) 计算生物学 计算机科学 基因 数学 电信 统计 程序设计语言
作者
Samantha Malka,Pooja Biswas,Andrew C. Berry,Riccardo Sangermano,Mukhtar Ullah,Siying Lin,Matteo D’Antonio,André Jestin,Xiaodong Jiao,Mathieu Quinodoz,Lori S. Sullivan,Jessica C. Gardner,Emily Place,Michel Michaelides,Karolina Kamińska,Omar A. Mahroo,Elena Schiff,Genevieve Wright,Francesca Cancellieri,Veronika Vaclavik,Cristina Santos,Atta Ur Rehman,Sudeep Mehrotra,Hafiz Muhammad Azhar Baig,Muhammad Iqbal,Muhammad Ansar,Luísa Coutinho Santos,Ana Berta Sousa,Hoai Viet Tran,Hiroko Matsui,Anjana Bhatia,Muhammad Asif Naeem,Shehla Javed Akram,Javed Akram,Sheikh Riazuddin,Carmen Ayuso,Eric A. Pierce,Alison J. Hardcastle,Sheikh Riazuddin,Kelly A. Frazer,J. Fielding Hejtmancik,Carlo Rivolta,Kinga M. Bujakowska,Gavin Arno,Andrew R. Webster,Radha Ayyagari
出处
期刊:American Journal of Human Genetics [Elsevier BV]
标识
DOI:10.1016/j.ajhg.2024.07.020
摘要

Genome analysis of individuals affected by retinitis pigmentosa (RP) identified two rare nucleotide substitutions at the same genomic location on chromosome 11 (g.61392563 [GRCh38]), 69 base pairs upstream of the start codon of the ciliopathy gene TMEM216 (c.-69G>A, c.-69G>T [GenBank: NM_001173991.3]), in individuals of South Asian and African ancestry, respectively. Genotypes included 71 homozygotes and 3 mixed heterozygotes in trans with a predicted loss-of-function allele. Haplotype analysis showed single-nucleotide variants (SNVs) common across families, suggesting ancestral alleles within the two distinct ethnic populations. Clinical phenotype analysis of 62 available individuals from 49 families indicated a similar clinical presentation with night blindness in the first decade and progressive peripheral field loss thereafter. No evident systemic ciliopathy features were noted. Functional characterization of these variants by luciferase reporter gene assay showed reduced promotor activity. Nanopore sequencing confirmed the lower transcription of the TMEM216 c.-69G>T allele in blood-derived RNA from a heterozygous carrier, and reduced expression was further recapitulated by qPCR, using both leukocytes-derived RNA of c.-69G>T homozygotes and total RNA from genome-edited hTERT-RPE1 cells carrying homozygous TMEM216 c.-69G>A. In conclusion, these variants explain a significant proportion of unsolved cases, specifically in individuals of African ancestry, suggesting that reduced TMEM216 expression might lead to abnormal ciliogenesis and photoreceptor degeneration.
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