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鉴定三种新的 GGDEF 和 EAL 结构域蛋白,它们参与副溶血性弧菌 Scr 表面定植调控网络。

Identification of Three New GGDEF and EAL Domain-Containing Proteins Participating in the Scr Surface Colonization Regulatory Network in Vibrio parahaemolyticus.

机构信息

Department of Microbiology and Immunology, University of Iowa, Iowa City, Iowa, USA.

Department of Microbiology and Immunology, University of Iowa, Iowa City, Iowa, USA

出版信息

J Bacteriol. 2021 Jan 25;203(4). doi: 10.1128/JB.00409-20.

Abstract

rapidly colonizes surfaces using swarming motility. Surface contact induces the surface-sensing regulon, including lateral flagellar genes, spurring dramatic shifts in physiology and behavior. The bacterium can also adopt a sessile, surface-associated lifestyle and form robust biofilms. These alternate colonization strategies are influenced reciprocally by the second messenger c-di-GMP. Although possesses 43 predicted proteins with the c-di-GMP-forming GGDEF domain, none have been previously been identified as contributors to surface colonization. We sought to explore this knowledge gap by using a suppressor transposon screen to restore the swarming motility of a nonswarming, high-c-di-GMP strain. Two diguanylate cyclases, ScrJ and ScrL, each containing tetratricopeptide repeat-coupled GGDEF domains, were demonstrated to contribute additively to swarming gene repression. Both proteins required an intact catalytic motif to regulate. Another suppressor mapped in , the last gene in a lateral flagellar operon. Containing a degenerate phosphodiesterase (EAL) domain, LafV repressed transcription of multiple genes in the surface sensing regulon; its repressive activity required LafK, the primary swarming regulator. Mutation of the signature EAL motif had little effect on LafV's repressive activity, suggesting that LafV belongs to the subclass of EAL-type proteins that are regulatory but not enzymatic. Consistent with these activities and their predicted effects on c-di-GMP, and but not , mutants affected the transcription of the c-di-GMP-responsive biofilm reporter :: Our results expand the knowledge of the GGDEF/EAL repertoire and its roles in this surface colonization regulatory network. A key survival decision, in the environment or the host, is whether to emigrate or aggregate. In bacteria, c-di-GMP signaling almost universally influences solutions to this dilemma. In , c-di-GMP reciprocally regulates swarming and sticking (i.e., biofilm formation) programs of surface colonization. Key c-di-GMP-degrading phosphodiesterases responsive to quorum and nutritional signals have been previously identified. c-di-GMP binding transcription factors programming biofilm development have been studied. Here, we further develop the blueprint of the c-di-GMP network by identifying new participants involved in dictating the complex decision of whether to swarm or stay. These include diguanylate cyclases with tetratricopeptide domains and a degenerate EAL protein that, analogously to the negative flagellar regulator RflP/YdiV of enteric bacteria, serves to regulate swarming.

摘要

迅速利用群体运动在表面殖民。表面接触会诱导表面感应调节子,包括侧鞭毛基因,从而导致生理和行为的剧烈转变。细菌还可以采用固定的、与表面相关的生活方式并形成坚固的生物膜。这些替代的殖民化策略相互影响第二信使 c-di-GMP。尽管 具有 43 个预测蛋白具有 c-di-GMP 形成 GGDEF 结构域,但以前没有一种被鉴定为有助于表面殖民的贡献者。我们试图通过使用抑制转座子筛选来探索这一知识空白,以恢复不群集、高 c-di-GMP 菌株的群集运动。两种二鸟苷酸环化酶 ScrJ 和 ScrL,每个都包含四肽重复连接的 GGDEF 结构域,被证明可以协同抑制群集基因的表达。这两种蛋白质都需要完整的催化基序来调节。另一个抑制子在 中被映射到侧翼鞭毛操纵子的最后一个基因。含有退化的磷酸二酯酶 (EAL) 结构域的 LafV 抑制了表面感应调节子中多个基因的转录;其抑制活性需要主要的群集调节因子 LafK。特征性 EAL 基序的突变对 LafV 的抑制活性几乎没有影响,表明 LafV 属于调节但不是酶的 EAL 型蛋白亚类。这些活性及其对 c-di-GMP 的预测影响与 和 但不是 一致突变影响 c-di-GMP 反应生物膜报告基因的转录:我们的结果扩展了 的 GGDEF/EAL 库的知识及其在这个表面殖民调节网络中的作用。在环境或宿主中,一个关键的生存决策是是离开还是聚集。在细菌中,c-di-GMP 信号几乎普遍影响解决这一困境的方法。在 中,c-di-GMP 相互调节群集和粘着(即生物膜形成)程序的表面殖民。以前已经确定了响应群体和营养信号的关键 c-di-GMP 降解磷酸二酯酶。已经研究了编程生物膜发展的 c-di-GMP 结合转录因子。在这里,我们通过识别新的参与者进一步开发 c-di-GMP 网络的蓝图,这些参与者参与决定是群集还是停留。这些包括具有四肽结构域的二鸟苷酸环化酶和一个退化的 EAL 蛋白,类似于肠细菌的负鞭毛调节剂 RflP/YdiV,用于调节群集。

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