用体内和体外方法识别改变 RNA 剪接的 DNA 序列变体。

Current Protocols in Human Genetics Pub Date : 2018-04-01 Epub Date: 2018-04-26 DOI:10.1002/cphg.60
Parth N Patel, Joshua M Gorham, Kaoru Ito, Christine E Seidman
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引用次数: 0

摘要

事实证明,识别产生或消除剪接位点的序列变异是一项重大挑战,也是临床解释罕见遗传变异的众多障碍之一。目前已有识别剪接改变序列变异的方法,但这些方法受限于对剪接信号的不完全理解和繁琐的功能测试。我们最近开发了一种计算工具,可优先确定可能改变剪接的序列变异,并开发了一种中等吞吐量的微型基因检测方法,可确认改变剪接的变异。这种生物信息学策略大大提高了以往体外剪接检测的准确性和效率。在本单元中,我们将详细说明如何组织、运行和解释该方案的各种特征。我们希望通过该方案发现的剪接改变变体能可靠地用于进一步的临床和生物学分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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In vivo and In vitro methods to identify DNA sequence variants that alter RNA Splicing.

Identification of sequence variants that create or eliminate splice sites has proven to be a significant challenge and represents one of many roadblocks in the clinical interpretation of rare genetic variation. Current methods of identifying splice altering sequence variants exist, however, these are limited by an imperfect understanding of splice signals and cumbersome functional assays. We have recently developed a computational tool that prioritizes putative splice-altering sequence variants, and a moderate-throughput minigene assay that confirms the variants which alter splicing. This bioinformatic strategy represents a substantial increase in accuracy and efficiency of historical in vitro splicing assays. In this unit we give detailed instructions on how to organize, run, and interpret various features of this protocol. We expect that splice-altering variants revealed through this protocol can be reliably carried forward for further clinical and biological analyses.

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Current Protocols in Human Genetics
Current Protocols in Human Genetics Biochemistry, Genetics and Molecular Biology-Genetics
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期刊介绍: Current Protocols in Human Genetics is the resource for designing and running successful research projects in all branches of human genetics.
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