An extreme mutational hotspot in nlpD depends on transcriptional induction of rpoS.

IF 3.7 2区 生物学 Q1 GENETICS & HEREDITY PLoS Genetics Pub Date : 2025-01-31 eCollection Date: 2025-01-01 DOI:10.1371/journal.pgen.1011572
Andrew D Farr, Christina Vasileiou, Peter A Lind, Paul B Rainey
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Abstract

Mutation rate varies within and between genomes. Within genomes, tracts of nucleotides, including short sequence repeats and palindromes, can cause localised elevation of mutation rate. Additional mechanisms remain poorly understood. Here we report an instance of extreme mutational bias in Pseudomonas fluorescens SBW25 associated with a single base-pair change in nlpD. These mutants frequently evolve in static microcosms, and have a cell-chaining (CC) phenotype. Analysis of 153 replicate populations revealed 137 independent instances of a C565T loss-of-function mutation at codon 189 (CAG to TAG (Q189*)). Fitness measures of alternative nlpD mutants did not explain the deterministic evolution of C565T mutants. Recognising that transcription can be mutagenic, and that codon 189 overlaps with a predicted promoter (rpoSp) for the adjacent stationary phase sigma factor, rpoS, transcription across this promoter region was measured. This confirmed rpoSp is induced in stationary phase and that C565T mutation caused significant elevation of transcription. The latter provided opportunity to determine the C565T mutation rate using a reporter-gene fused to rpoSp. Fluctuation assays estimate the C565T mutation rate to be ~5,000-fold higher than expected. In Pseudomonas, transcription of rpoS requires the positive activator PsrA, which we show also holds for SBW25. Fluctuation assays performed in a ∆psrA background showed a ~60-fold reduction in mutation rate confirming that the elevated rate of mutation at C565T mutation rate is dependent on induction of transcription. This hotspot suggests a generalisable phenomenon where the induction of transcription causes elevated mutation rates within defining regions of promoters.

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nlpD的一个极端突变热点依赖于rpoS的转录诱导。
基因组内部和基因组之间的突变率各不相同。在基因组内,核苷酸束,包括短序列重复和回文,可引起局部突变率升高。其他机制仍然知之甚少。在这里,我们报告了荧光假单胞菌SBW25与nlpD中单个碱基对变化相关的极端突变偏倚的实例。这些突变体经常在静态微观环境中进化,并具有细胞链(CC)表型。对153个重复群体的分析显示,在密码子189 (CAG到TAG (Q189*))上存在137个C565T功能缺失突变。替代nlpD突变体的适应度测量并不能解释C565T突变体的确定性进化。认识到转录可能具有诱变性,并且密码子189与相邻固定相sigma因子(rpoS)的预测启动子(rpoSp)重叠,测量了该启动子区域的转录。这证实了rpoSp是在固定期诱导的,C565T突变导致转录显著升高。后者提供了利用与rpoSp融合的报告基因确定C565T突变率的机会。波动分析估计C565T突变率比预期高出约5000倍。在假单胞菌中,rpoS的转录需要阳性激活剂PsrA,我们发现SBW25也是如此。在∆psrA背景下进行的波动实验显示突变率降低了约60倍,这证实了C565T突变率的升高取决于转录的诱导。这一热点提示了一种普遍现象,即转录诱导导致启动子定义区域内突变率升高。
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PLoS Genetics
PLoS Genetics GENETICS & HEREDITY-
自引率
2.20%
发文量
438
期刊介绍: PLOS Genetics is run by an international Editorial Board, headed by the Editors-in-Chief, Greg Barsh (HudsonAlpha Institute of Biotechnology, and Stanford University School of Medicine) and Greg Copenhaver (The University of North Carolina at Chapel Hill). Articles published in PLOS Genetics are archived in PubMed Central and cited in PubMed.
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