非翻译区变异在孟德尔病中的作用:综述。

IF 4.6 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Nechama Wieder, Elston N. D’Souza, Ruebena Dawes, Alexander Chan, Alexandra Martin-Geary, Nicola Whiffin
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引用次数: 0

摘要

非翻译区(untranslation region, utr)位于基因蛋白质编码序列的侧面。5'UTR和3' UTR序列通过线性和结构元件介导转录后调控,控制RNA稳定性、细胞定位和蛋白质翻译速率。5‘和3’ utr内的变异已被证明通过各种不同的机制引起疾病。然而,为了在临床基因检测中对这些变异进行常规注释和解释,我们需要更好地了解这些区域以及其中的致病变异谱。在这篇综述中,我们系统地评估了以前在utr中发现的孟德尔致病变异,并编目了它们的潜在机制。随着基因组测序越来越容易获得,并越来越多地纳入诊断环境,本综述将为考虑和解释UTR变异提供有价值的资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The role of untranslated region variants in Mendelian disease: a review

The role of untranslated region variants in Mendelian disease: a review
Untranslated regions (UTRs) flank the protein-coding sequence of a gene. 5′UTR and 3′ UTR sequences mediate post-transcriptional regulation via linear and structural elements, controlling RNA stability, cellular localisation and the rate of protein translation. Variants within both 5′ and 3′ UTRs have been shown to cause disease through a variety of diverse mechanisms. However, for these variants to be routinely annotated and interpreted in clinical genetic testing, we need a better understanding of these regions and the spectrum of disease-causing variants within them. In this review, we systematically assess previously identified Mendelian disease-causing variants within UTRs and catalogue their underlying mechanisms. With genome sequencing becoming readily available and increasingly incorporated in diagnostic settings, this review will provide a valuable resource for the consideration and interpretation of UTR variants.
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来源期刊
European Journal of Human Genetics
European Journal of Human Genetics 生物-生化与分子生物学
CiteScore
9.90
自引率
5.80%
发文量
216
审稿时长
2 months
期刊介绍: The European Journal of Human Genetics is the official journal of the European Society of Human Genetics, publishing high-quality, original research papers, short reports and reviews in the rapidly expanding field of human genetics and genomics. It covers molecular, clinical and cytogenetics, interfacing between advanced biomedical research and the clinician, and bridging the great diversity of facilities, resources and viewpoints in the genetics community. Key areas include: -Monogenic and multifactorial disorders -Development and malformation -Hereditary cancer -Medical Genomics -Gene mapping and functional studies -Genotype-phenotype correlations -Genetic variation and genome diversity -Statistical and computational genetics -Bioinformatics -Advances in diagnostics -Therapy and prevention -Animal models -Genetic services -Community genetics
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