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Sometimes the Result Is Not the Answer: The Truths and the Lies That Come From Using the Complementation Test

机译:有时结果不是答案:使用补充测验的真相与谎言

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摘要

It is standard genetic practice to determine whether or not two independently obtained mutants define the same or different genes by performing the complementation test. While the complementation test is highly effective and accurate in most cases, there are a number of instances in which the complementation test provides misleading answers, either as a result of the failure of two mutations that are located in different genes to complement each other or by exhibiting complementation between two mutations that lie within the same gene. We are primarily concerned here with those cases in which two mutations lie in different genes, but nonetheless fail to complement each other. This phenomenon is often referred to as second-site noncomplementation (SSNC). The discovery of SSNC led to a large number of screens designed to search for genes that encode interacting proteins. However, screens for dominant enhancer mutations of semidominant alleles of a given gene have proved far more effective at identifying interacting genes whose products interact physically or functionally with the initial gene of interest than have SSNC-based screens.
机译:标准的遗传实践是通过进行互补试验来确定两个独立获得的突变体是否定义相同或不同的基因。尽管互补检测在大多数情况下是高效且准确的,但在许多情况下,互补检测提供了误导性的答案,这可能是由于位于不同基因中的两个突变彼此互补或失败所致。在同一基因内的两个突变之间表现出互补性。在这里,我们主要关注的是其中两个突变位于不同基因中,但彼此无法互补的情况。这种现象通常称为第二位不互补(SSNC)。 SSNC的发现导致了大量旨在搜索编码相互作用蛋白的基因的筛选。但是,对给定基因的半显性等位基因的显性增强子突变的筛选已被证明比基于SSNC的筛选更有效地鉴定其产物与感兴趣的初始基因发生物理或功能相互作用的相互作用基因。

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