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环状二鸟苷酸调节蛋白在. 中的功能分析。

Functional analysis of cyclic diguanylate-modulating proteins in .

机构信息

Department of Medical Microbiology and Immunology, University of Wisconsin-Madison, Madison, Wisconsin, USA.

Microbiology Doctoral Training Program, University of Wisconsin-Madison, Madison, Wisconsin, USA.

出版信息

mSystems. 2024 Nov 19;9(11):e0095624. doi: 10.1128/msystems.00956-24. Epub 2024 Oct 22.

Abstract

As bacterial symbionts transition from a motile free-living state to a sessile biofilm state, they must coordinate behavior changes suitable to each lifestyle. Cyclic diguanylate (c-di-GMP) is an intracellular signaling molecule that can regulate this transition, and it is synthesized by diguanylate cyclase (DGC) enzymes and degraded by phosphodiesterase (PDE) enzymes. Generally, c-di-GMP inhibits motility and promotes biofilm formation. While c-di-GMP and the enzymes that contribute to its metabolism have been well studied in pathogens, considerably less focus has been placed on c-di-GMP regulation in beneficial symbionts. is the sole beneficial symbiont of the Hawaiian bobtail squid () light organ, and the bacterium requires both motility and biofilm formation to efficiently colonize. c-di-GMP regulates swimming motility and cellulose exopolysaccharide production in . The genome encodes 50 DGCs and PDEs, and while a few of these proteins have been characterized, the majority have not undergone comprehensive characterization. In this study, we use protein overexpression to systematically characterize the functional potential of all 50 . proteins. All 28 predicted DGCs and 10 of the 14 predicted PDEs displayed at least one phenotype consistent with their predicted function, and a majority of each displayed multiple phenotypes. Finally, active site mutant analysis of proteins with the potential for both DGC and PDE activities revealed potential activities for these proteins. This work presents a systems-level functional analysis of a family of signaling proteins in a tractable animal symbiont and will inform future efforts to characterize the roles of individual proteins during lifestyle transitions.IMPORTANCECyclic diguanylate (c-di-GMP) is a critical second messenger that mediates bacterial behaviors, and colonization of its Hawaiian bobtail squid host presents a tractable model in which to interrogate the role of c-di-GMP during animal colonization. This work provides systems-level characterization of the 50 proteins predicted to modulate c-di-GMP levels. By combining multiple assays, we generated a rich understanding of which proteins have the capacity to influence c-di-GMP levels and behaviors. Our functional approach yielded insights into how proteins with domains to both synthesize and degrade c-di-GMP may impact bacterial behaviors. Finally, we integrated published data to provide a broader picture of each of the 50 proteins analyzed. This study will inform future work to define specific pathways by which c-di-GMP regulates symbiotic behaviors and transitions.

摘要

当细菌共生体从能动的自由生活状态转变为静止的生物膜状态时,它们必须协调适合每种生活方式的行为变化。环二鸟苷酸(c-di-GMP)是一种细胞内信号分子,可以调节这种转变,它由二鸟苷酸环化酶(DGC)酶合成,并被磷酸二酯酶(PDE)酶降解。一般来说,c-di-GMP 抑制运动并促进生物膜形成。虽然 c-di-GMP 及其代谢相关的酶在病原体中得到了很好的研究,但在有益共生体中对 c-di-GMP 的调控研究则相对较少。 是夏威夷短尾乌贼( )光器的唯一有益共生体,细菌需要运动和生物膜形成才能有效地定植。c-di-GMP 调节 的游泳运动和纤维素外多糖的产生。基因组编码 50 个 DGC 和 PDE,虽然其中一些蛋白质已经被表征,但大多数尚未进行全面表征。在这项研究中,我们使用蛋白质过表达系统地表征了所有 50 个 的功能潜力。28 个预测的 DGC 中的 28 个和 14 个预测的 PDE 中的 10 个至少表现出一种与其预测功能一致的表型,大多数每个表现出多种表型。最后,对具有 DGC 和 PDE 活性潜力的蛋白质进行活性位点突变分析,揭示了这些蛋白质的潜在活性。这项工作对一种可处理的动物共生体中信号蛋白家族进行了系统水平的功能分析,并将为未来描述个体蛋白在生活方式转变过程中的作用提供信息。

重要性:环二鸟苷酸(c-di-GMP)是一种关键的第二信使,介导细菌行为,而其夏威夷短尾乌贼宿主的定殖提供了一个可处理的模型,可用于研究 c-di-GMP 在动物定殖过程中的作用。这项工作对预测调节 c-di-GMP 水平的 50 种蛋白质进行了系统水平的表征。通过结合多种测定方法,我们对具有影响 c-di-GMP 水平和行为能力的蛋白质有了更深入的了解。我们的功能方法提供了关于具有合成和降解 c-di-GMP 能力的蛋白质如何影响细菌行为的见解。最后,我们整合了已发表的数据,提供了对分析的 50 种蛋白质中的每一种的更广泛的了解。这项研究将为定义 c-di-GMP 调节共生行为和转变的具体途径提供信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d81c/11575326/41deb2f1afa1/msystems.00956-24.f001.jpg

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