Current strategies for mutation detection in phenotype-driven screens utilising next generation sequencing.

Michelle M Simon, Eva Marie Y Moresco, Katherine R Bull, Saumya Kumar, Ann-Marie Mallon, Bruce Beutler, Paul K Potter
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Abstract

Mutagenesis-based screens in mice are a powerful discovery platform to identify novel genes or gene functions associated with disease phenotypes. An N-ethyl-N-nitrosourea (ENU) mutagenesis screen induces single nucleotide variants randomly in the mouse genome. Subsequent phenotyping of mutant and wildtype mice enables the identification of mutated pathways resulting in phenotypes associated with a particular ENU lesion. This unbiased approach to gene discovery conducts the phenotyping with no prior knowledge of the functional mutations. Before the advent of affordable next generation sequencing (NGS), ENU variant identification was a limiting step in gene characterization, akin to 'finding a needle in a haystack'. The emergence of a reliable reference genome alongside advances in NGS has propelled ENU mutation discovery from an arduous, time-consuming exercise to an effective and rapid form of mutation discovery. This has permitted large mouse facilities worldwide to use ENU for novel mutation discovery in a high-throughput manner, helping to accelerate basic science at the mechanistic level. Here, we describe three different strategies used to identify ENU variants from NGS data and some of the subsequent steps for mutation characterisation.

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利用下一代测序在表型驱动筛选中进行突变检测的当前策略。
基于诱变的小鼠筛选是鉴定与疾病表型相关的新基因或基因功能的强大发现平台。n -乙基-n -亚硝基脲(ENU)诱变筛选在小鼠基因组中随机诱导单核苷酸变异。随后对突变型和野生型小鼠进行表型分析,能够识别导致与特定ENU病变相关的表型的突变途径。这种无偏倚的基因发现方法在没有功能突变的先验知识的情况下进行表型分析。在可负担得起的下一代测序(NGS)出现之前,ENU变异鉴定是基因表征的一个限制性步骤,类似于“大海捞针”。可靠的参考基因组的出现以及NGS技术的进步推动了ENU突变的发现,从一项艰巨而耗时的工作转变为一种有效而快速的突变发现形式。这使得世界范围内的大型小鼠设施能够以高通量的方式使用ENU进行新突变的发现,有助于在机制水平上加速基础科学的发展。在这里,我们描述了用于从NGS数据中识别ENU变体的三种不同策略以及突变表征的一些后续步骤。
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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