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需要 17 个 Sxy 依赖性环 AMP 受体蛋白结合位点调控基因参与流感嗜血杆菌的自然转化。

Seventeen Sxy-dependent cyclic AMP receptor protein site-regulated genes are needed for natural transformation in Haemophilus influenzae.

机构信息

Department of Zoology, University of British Columbia, Vancouver, British Columbia, Canada.

出版信息

J Bacteriol. 2012 Oct;194(19):5245-54. doi: 10.1128/JB.00671-12. Epub 2012 Jul 20.

Abstract

Natural competence is the ability of bacteria to actively take up extracellular DNA. This DNA can recombine with the host chromosome, transforming the host cell and altering its genotype. In Haemophilus influenzae, natural competence is induced by energy starvation and the depletion of nucleotide pools. This induces a 26-gene competence regulon (Sxy-dependent cyclic AMP receptor protein [CRP-S] regulon) whose expression is controlled by two regulators, CRP and Sxy. The role of most of the CRP-S genes in DNA uptake and transformation is not known. We have therefore created in-frame deletions of each CRP-S gene and studied their competence phenotypes. All but one gene (ssb) could be deleted. Although none of the remaining CRP-S genes were required for growth in rich medium or survival under starvation conditions, DNA uptake and transformation were abolished or reduced in most of the mutants. Seventeen genes were absolutely required for transformation, with 14 of these genes being specifically required for the assembly and function of the type IV pilus DNA uptake machinery. Only five genes were dispensable for both competence and transformation. This is the first competence regulon for which all genes have been mutationally characterized.

摘要

天然感受性是指细菌主动摄取细胞外 DNA 的能力。这种 DNA 可以与宿主染色体重组,从而改变宿主细胞并改变其基因型。在流感嗜血杆菌中,天然感受性是由能量饥饿和核苷酸池的耗尽诱导的。这会诱导 26 个基因的感受性调节子(Sxy 依赖性环 AMP 受体蛋白 [CRP-S] 调节子),其表达受两个调节剂 CRP 和 Sxy 控制。CRP-S 基因中大多数在 DNA 摄取和转化中的作用尚不清楚。因此,我们对每个 CRP-S 基因进行了框内缺失,并研究了它们的感受性表型。除了一个基因(ssb)之外,所有基因都可以缺失。尽管剩余的 CRP-S 基因中没有一个是在丰富培养基中生长或在饥饿条件下生存所必需的,但大多数突变体中的 DNA 摄取和转化都被废除或减少。有 17 个基因绝对需要转化,其中 14 个基因专门用于组装和功能的 IV 型菌毛 DNA 摄取机制。只有五个基因对感受性和转化都是可有可无的。这是第一个所有基因都经过突变特征分析的感受性调节子。

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