了解NGS时代影响前mrna剪接的人类DNA变异。

4区 生物学 Q2 Biochemistry, Genetics and Molecular Biology
Advances in Genetics Pub Date : 2019-01-01 Epub Date: 2019-01-17 DOI:10.1016/bs.adgen.2018.09.002
Luiz Gustavo Dufner-Almeida, Ramon Torreglosa do Carmo, Cibele Masotti, Luciana Amaral Haddad
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引用次数: 25

摘要

Pre-mRNA剪接是真核生物基因表达的一个重要步骤,它依赖于对初级转录内含子末端短序列的识别,并在RNA聚合酶II的转录过程中进行。外显子和内含子辅助元件可以改变外显子定义和内含子识别的强度。剪接DNA变异(SV)与典型内含子位点的人类遗传疾病有关,也与外显子替换相关,通常被归类为无义、错义或同义变异。它们对mRNA的影响可能由与SV等位基因相关的隐剪接位点调节,包括外显子跳跃或缩短,以及部分或完全内含子保留。由于剪接mRNA的输出是由内在和外在因素的组合作用产生的,因此建议采用计算分析支持的体外功能分析来辅助SV对人类孟德尔遗传疾病的致病性评估。越来越多地使用针对全基因组基因序列的下一代测序(NGS),提高了人们对遗传疾病和假外显子包含在mRNA中的深层内含子SV相关性的认识。最后,我们利用测序和计算技术的最新进展来分析癌症中的选择性剪接。我们探索了癌症中的体细胞突变目录(COSMIC)来描述顺式和反式调控元件剪接位点突变的比例。除了正常和体细胞遗传变异库之外,来自不同癌症类型的大型队列的基因组数据也越来越多。这些可能为通过绘制肿瘤剪接数量性状位点来理解选择性剪接的遗传控制带来新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Understanding human DNA variants affecting pre-mRNA splicing in the NGS era.

Pre-mRNA splicing, an essential step in eukaryotic gene expression, relies on recognition of short sequences on the primary transcript intron ends and takes place along transcription by RNA polymerase II. Exonic and intronic auxiliary elements may modify the strength of exon definition and intron recognition. Splicing DNA variants (SV) have been associated with human genetic diseases at canonical intron sites, as well as exonic substitutions putatively classified as nonsense, missense or synonymous variants. Their effects on mRNA may be modulated by cryptic splice sites associated to the SV allele, comprehending exon skipping or shortening, and partial or complete intron retention. As splicing mRNA outputs result from combinatorial effects of both intrinsic and extrinsic factors, in vitro functional assays supported by computational analyses are recommended to assist SV pathogenicity assessment for human Mendelian inheritance diseases. The increasing use of next-generating sequencing (NGS) targeting full genomic gene sequence has raised awareness of the relevance of deep intronic SV in genetic diseases and inclusion of pseudo-exons into mRNA. Finally, we take advantage of recent advances in sequencing and computational technologies to analyze alternative splicing in cancer. We explore the Catalog of Somatic Mutations in Cancer (COSMIC) to describe the proportion of splice-site mutations in cis and trans regulatory elements. Genomic data from large cohorts of different cancer types are increasingly available, in addition to repositories of normal and somatic genetic variations. These are likely to bring new insights to understanding the genetic control of alternative splicing by mapping splicing quantitative trait loci in tumors.

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来源期刊
Advances in Genetics
Advances in Genetics 生物-遗传学
CiteScore
5.70
自引率
0.00%
发文量
1
审稿时长
1 months
期刊介绍: Advances in Genetics presents an eclectic mix of articles of use to all human and molecular geneticists. They are written and edited by recognized leaders in the field and make this an essential series of books for anyone in the genetics field.
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