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Mutations in identified in families with congenital cataracts.在先天性白内障的家族中发现了 突变。
Mol Vis. 2020 Apr 28;26:334-344. eCollection 2020.
2
Bi-allelic Loss-of-Function Variants in DNMBP Cause Infantile Cataracts.DNMBP 中的双等位基因功能丧失变异导致婴儿白内障。
Am J Hum Genet. 2018 Oct 4;103(4):568-578. doi: 10.1016/j.ajhg.2018.09.004.
3
Clinical and genetic characteristics of Chinese patients with familial or sporadic pediatric cataract.中国家族性或散发性小儿白内障患者的临床和遗传特征。
Orphanet J Rare Dis. 2018 Jun 18;13(1):94. doi: 10.1186/s13023-018-0828-0.
4
Delineation of Novel Autosomal Recessive Mutation in GJA3 and Autosomal Dominant Mutations in GJA8 in Pakistani Congenital Cataract Families.巴基斯坦先天性白内障家族中GJA3基因新的常染色体隐性突变及GJA8基因常染色体显性突变的描述
Genes (Basel). 2018 Feb 20;9(2):112. doi: 10.3390/genes9020112.
5
Molecular Genetic Analysis of Pakistani Families With Autosomal Recessive Congenital Cataracts by Homozygosity Screening.通过纯合性筛查对患有常染色体隐性先天性白内障的巴基斯坦家庭进行分子遗传学分析。
Invest Ophthalmol Vis Sci. 2017 Apr 1;58(4):2207-2217. doi: 10.1167/iovs.17-21469.
6
Novel phenotypes and loci identified through clinical genomics approaches to pediatric cataract.通过临床基因组学方法鉴定的小儿白内障新表型和基因座。
Hum Genet. 2017 Feb;136(2):205-225. doi: 10.1007/s00439-016-1747-6. Epub 2016 Nov 22.
7
[Haplotype Analysis of Oculopharyngeal Muscular Dystrophy (OPMD) Locus in Yakutia].[雅库特地区眼咽型肌营养不良(OPMD)基因座的单倍型分析]
Genetika. 2016 Mar;52(3):376-84.
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FOXE3 contributes to Peters anomaly through transcriptional regulation of an autophagy-associated protein termed DNAJB1.FOXE3 通过转录调控一种称为 DNAJB1 的自噬相关蛋白导致 Peters 异常。
Nat Commun. 2016 Apr 6;7:10953. doi: 10.1038/ncomms10953.
9
Phenotypes of Recessive Pediatric Cataract in a Cohort of Children with Identified Homozygous Gene Mutations (An American Ophthalmological Society Thesis).一组已鉴定出纯合基因突变儿童的隐性小儿白内障表型(美国眼科学会论文)
Trans Am Ophthalmol Soc. 2015;113:T7.
10
Missense Mutations in CRYAB Are Liable for Recessive Congenital Cataracts.CRYAB基因的错义突变导致隐性先天性白内障。
PLoS One. 2015 Sep 24;10(9):e0137973. doi: 10.1371/journal.pone.0137973. eCollection 2015.

西伯利亚雅库特人群体性常染色体隐性白内障(CTRCT18):FYCO1 基因中的新型创始变体。

Autosomal recessive cataract (CTRCT18) in the Yakut population isolate of Eastern Siberia: a novel founder variant in the FYCO1 gene.

机构信息

Laboratory of Molecular Genetics, Yakut Science Centre of Complex Medical Problems, Yakutsk, Russian Federation.

Laboratory of Molecular Biology, M.K. Ammosov North-Eastern Federal University, Yakutsk, Russian Federation.

出版信息

Eur J Hum Genet. 2021 Jun;29(6):965-976. doi: 10.1038/s41431-021-00833-w. Epub 2021 Mar 25.

DOI:10.1038/s41431-021-00833-w
PMID:33767456
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8187664/
Abstract

Congenital autosomal recessive cataract with unknown genetic etiology is one of the most common Mendelian diseases among the Turkic-speaking Yakut population (Eastern Siberia, Russia). To identify the genetic cause of congenital cataract spread in this population, we performed whole-exome sequencing (Illumina NextSeq 500) in one Yakut family with three affected siblings whose parents had preserved vision. We have revealed the novel homozygous c.1621C>T transition leading to premature stop codon p.(Gln541*) in exon 8 of the FYCO1 gene (NM_024513.4). Subsequent screening of c.1621C>T p.(Gln541*) revealed this variant in a homozygous state in 25 out of 29 Yakut families with congenital cataract (86%). Among 424 healthy individuals from seven populations of Eastern Siberia (Russians, Yakuts, Evenks, Evens, Dolgans, Chukchi, and Yukaghirs), the highest carrier frequency of c.1621C>T p.(Gln541*) was found in the Yakut population (7.9%). DNA samples of 25 homozygous for c.1621C>T p.(Gln541*) patients with congenital cataract and 114 unaffected unrelated individuals without this variant were used for a haplotype analysis based on the genotyping of six STR markers (D3S3512, D3S3685, D3S3582, D3S3561, D3S1289, and D3S3698). The structure of the identified haplotypes indicates a common origin for all of the studied mutant chromosomes bearing c.1621C>T p.(Gln541*). The age of the с.1621C>T p.(Gln541*) founder haplotype was estimated to be approximately 260 ± 65 years (10 generations). These findings characterize Eastern Siberia as the region of the world with the most extensive accumulation of the unique variant c.1621C>T p.(Gln541*) in the FYCO1 gene as a result of the founder effect.

摘要

先天性常染色体隐性白内障伴未知遗传病因是俄罗斯东西伯利亚图瓦语人群中最常见的孟德尔疾病之一。为了确定该人群中先天性白内障传播的遗传原因,我们对一个有三个受影响兄弟姐妹的雅库特家族进行了全外显子组测序(Illumina NextSeq 500),其父母视力正常。我们发现了一种新的纯合 c.1621C>T 转换,导致 FYCO1 基因exon 8 中的提前终止密码子 p.(Gln541*)(NM_024513.4)。随后对 c.1621C>T p.(Gln541*)的筛查显示,在 29 个患有先天性白内障的雅库特家族中有 25 个家族为纯合状态(86%)。在来自东西伯利亚的七个种群(俄罗斯人、雅库特人、埃文克人、埃文斯人、多尔干人、楚科奇人和尤卡吉尔人)的 424 名健康个体中,c.1621C>T p.(Gln541*)的最高携带频率出现在雅库特人群中(7.9%)。25 名携带 c.1621C>T p.(Gln541*)的先天性白内障纯合子患者和 114 名无此变异的无关个体的 DNA 样本用于基于六个 STR 标记(D3S3512、D3S3685、D3S3582、D3S3561、D3S1289 和 D3S3698)的基因型分析的单体型分析。所鉴定的单体型结构表明,所有研究的携带 c.1621C>T p.(Gln541*)的突变染色体都具有共同的起源。c.1621C>T p.(Gln541*)创始人单体型的年龄估计约为 260±65 岁(10 代)。这些发现表明,由于创始人效应,东西伯利亚是 FYCO1 基因中独特变异 c.1621C>T p.(Gln541*)积累最多的世界区域。