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细菌中蛋白质活性传感在调节代谢和运动中的作用

Protein Activity Sensing in Bacteria in Regulating Metabolism and Motility.

作者信息

Alvarado Alejandra, Behrens Wiebke, Josenhans Christine

机构信息

Max von Pettenkofer-Institute, Ludwig Maximilian University of Munich, Munich, Germany.

German Center for Infection Research (DZIF) Partner Site Munich, Munich, Germany.

出版信息

Front Microbiol. 2020 Jan 17;10:3055. doi: 10.3389/fmicb.2019.03055. eCollection 2019.

Abstract

Bacteria have evolved complex sensing and signaling systems to react to their changing environments, most of which are present in all domains of life. Canonical bacterial sensing and signaling modules, such as membrane-bound ligand-binding receptors and kinases, are very well described. However, there are distinct sensing mechanisms in bacteria that are less studied. For instance, the sensing of internal or external cues can also be mediated by changes in protein conformation, which can either be implicated in enzymatic reactions, transport channel formation or other important cellular functions. These activities can then feed into pathways of characterized kinases, which translocate the information to the DNA or other response units. This type of bacterial sensory activity has previously been termed . In this review, we highlight the recent findings about this non-canonical sensory mechanism, as well as its involvement in metabolic functions and bacterial motility. Additionally, we explore some of the specific proteins and protein-protein interactions that mediate protein activity sensing and their downstream effects. The complex sensory activities covered in this review are important for bacterial navigation and gene regulation in their dynamic environment, be it host-associated, in microbial communities or free-living.

摘要

细菌已经进化出复杂的传感和信号系统来应对不断变化的环境,其中大多数存在于生命的所有领域。典型的细菌传感和信号模块,如膜结合配体结合受体和激酶,已得到很好的描述。然而,细菌中存在一些研究较少的独特传感机制。例如,内部或外部信号的传感也可以通过蛋白质构象的变化来介导,这可能与酶促反应、运输通道形成或其他重要的细胞功能有关。这些活动随后可以进入已表征激酶的途径,将信息传递到DNA或其他反应单元。这种类型的细菌传感活性以前被称为 。在这篇综述中,我们强调了关于这种非典型传感机制的最新发现,以及它在代谢功能和细菌运动中的作用。此外,我们探讨了一些介导蛋白质活性传感的特定蛋白质和蛋白质-蛋白质相互作用及其下游效应。本综述中涵盖的复杂传感活动对于细菌在其动态环境中的导航和基因调控很重要,无论是在宿主相关、微生物群落还是自由生活环境中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0262/6978683/6775af947b31/fmicb-10-03055-g001.jpg

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