Autoinducer-2 enhances the defense of Vibrio furnissii against oxidative stress and DNA damage by modulation of c-di-GMP signaling via a two-component system.

IF 5.1 1区 生物学 Q1 MICROBIOLOGY mBio Pub Date : 2025-02-05 Epub Date: 2025-01-16 DOI:10.1128/mbio.02922-24
Heng Zhang, Wenjin Zhao, Wenguang Yang, Huimin Zhang, Xinyu Qian, Kai Sun, Qiao Yang, Xihui Shen, Lei Zhang
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Abstract

As a universal language across the bacterial kingdom, the quorum sensing signal autoinducer-2 (AI-2) can coordinate many bacterial group behaviors. However, unknown AI-2 receptors in bacteria may be more than what has been discovered so far, and there are still many unknown functions for this signal waiting to be explored. Here, we have identified a membrane-bound histidine kinase of the pathogenic bacterium Vibrio furnissii, AsrK, as a receptor that specifically detects AI-2 under low boron conditions. In contrast with another well-known AI-2 receptor LuxP that recognizes the borated form of AI-2, AsrK is found to show higher affinity with AI-2 under borate-depleted conditions, and thus boron has a negative effect on AI-2 sensing by AsrK in regulation of the biofilm and motility phenotypes. AI-2 binds to the extracytoplasmic dCache_1 domain of AsrK to inhibit its autokinase activity, thus decreasing the phosphorylation level of its cognate response regulator AsrR and activating the phosphodiesterase activity of AsrR to degrade the cellular second messenger cyclic di-GMP (c-di-GMP). AI-2 perception by the AsrK-AsrR system remarkably reduces intracellular c-di-GMP levels and enhances tolerance of V. furnissii to oxidative stress and DNA damage by upregulating the transcription of universal stress proteins including UspA1, UspA2, and UspE. Our study reveals a previously unrecognized mechanism for AI-2 detection in bacteria and also provides new insights into the important role of AI-2 in bacterial defense against oxidative stress and DNA damage.IMPORTANCEThe QS signal AI-2 is widely synthesized in bacteria and has been implicated in the regulation of numerous bacterial group behaviors. However, in contrast to the wide distribution of this signal, its receptors have only been found in a small number of bacterial species, and the underlying mechanisms for the detection of and response to AI-2 remain elusive in most bacteria. It is worth noting that the periplasmic protein LuxP is the uniquely identified receptor for AI-2 in Vibrio spp. Here, we identify a second type of AI-2 receptor, a membrane-bound histidine kinase with a periplasmic dCache_1 sensory domain, in a member of the genus Vibrio, and thus show that AI-2 enhances the defense of V. furnissii against oxidative stress and DNA damage by modulation of c-di-GMP signaling via the AsrK-AsrR two-component system. Our results reveal a previously unrecognized AI-2 sensing mechanism and expand our understanding of the physiological roles of AI-2 in bacteria.

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Autoinducer-2通过双组分系统调节c-di-GMP信号通路,增强了富氏弧菌对氧化应激和DNA损伤的防御能力。
作为细菌界的通用语言,群体感应信号autoinducer-2 (AI-2)可以协调许多细菌群体行为。然而,细菌中未知的AI-2受体可能比目前发现的更多,该信号仍有许多未知的功能有待探索。在这里,我们已经鉴定了病原细菌弗氏弧菌(Vibrio furnisii, AsrK)的一种膜结合组氨酸激酶,作为一种在低硼条件下特异性检测AI-2的受体。与另一个已知的识别AI-2的硼化形式的AI-2受体LuxP相反,AsrK被发现在缺硼条件下与AI-2表现出更高的亲和力,因此硼在调节生物膜和运动表型方面对AsrK感知AI-2有负面影响。AI-2与AsrK胞外质dCache_1结构域结合,抑制其自激酶活性,从而降低其同源反应调节因子AsrR的磷酸化水平,激活AsrR的磷酸二酯酶活性,降解细胞第二信使环二gmp (c-di-GMP)。AsrK-AsrR系统的AI-2感知显著降低细胞内c-di-GMP水平,并通过上调通用应激蛋白(包括UspA1、UspA2和UspE)的转录增强弗氏梭菌对氧化应激和DNA损伤的耐受性。我们的研究揭示了以前未被认识的细菌中AI-2检测机制,并为AI-2在细菌防御氧化应激和DNA损伤中的重要作用提供了新的见解。QS信号AI-2在细菌中广泛合成,并参与了许多细菌群体行为的调节。然而,与该信号的广泛分布相反,其受体仅在少数细菌物种中被发现,并且在大多数细菌中检测和响应AI-2的潜在机制仍然难以捉摸。值得注意的是,外质蛋白LuxP是弧菌中唯一鉴定出的AI-2受体。本研究中,我们在弧菌中鉴定出第二种AI-2受体,一种具有外质dCache_1感觉结构域的膜结合组氨酸激酶,从而表明AI-2通过AsrK-AsrR双组分系统调节c-di-GMP信号通路,增强了弧菌对氧化应激和DNA损伤的防御。我们的研究结果揭示了以前未被认识到的AI-2感知机制,并扩展了我们对AI-2在细菌中的生理作用的理解。
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来源期刊
mBio
mBio MICROBIOLOGY-
CiteScore
10.50
自引率
3.10%
发文量
762
审稿时长
1 months
期刊介绍: mBio® is ASM''s first broad-scope, online-only, open access journal. mBio offers streamlined review and publication of the best research in microbiology and allied fields.
期刊最新文献
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