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枯草芽孢杆菌化学感受受体对苯酚的拮抗反应特征。

Characterization of Opposing Responses to Phenol by Bacillus subtilis Chemoreceptors.

机构信息

Department of Chemical and Biomolecular Engineering, University of Illinois at Urbana-Champaigngrid.35403.31, Urbana, Illinois, USA.

Department of Biochemistry, University of Illinois at Urbana-Champaigngrid.35403.31, Urbana, Illinois, USA.

出版信息

J Bacteriol. 2022 Apr 19;204(4):e0044121. doi: 10.1128/JB.00441-21. Epub 2022 Jan 10.

Abstract

Bacillus subtilis employs 10 chemoreceptors to move in response to chemicals in its environment. While the sensing mechanisms have been determined for many attractants, little is known about the sensing mechanisms for repellents. In this work, we investigated phenol chemotaxis in B. subtilis. Phenol is an attractant at low, micromolar concentrations and a repellent at high, millimolar concentrations. McpA was found to be the principal chemoreceptor governing the repellent response to phenol and other related aromatic compounds. In addition, the chemoreceptors McpC and HemAT were found to govern the attractant response to phenol and related compounds. Using chemoreceptor chimeras, McpA was found to sense phenol using its signaling domain rather than its sensing domain. These observations were substantiated , where direct binding of phenol to the signaling domain of McpA was observed using saturation transfer difference nuclear magnetic resonance. These results further advance our understanding of B. subtilis chemotaxis and further demonstrate that the signaling domain of B. subtilis chemoreceptors can directly sense chemoeffectors. Bacterial chemotaxis is commonly thought to employ a sensing mechanism involving the extracellular sensing domain of chemoreceptors. Some ligands, however, appear to be sensed by the signaling domain. Phenolic compounds, commonly found in soil and root exudates, provide environmental cues for soil microbes like Bacillus subtilis. We show that phenol is sensed as both an attractant and a repellent. While the mechanism for sensing phenol as an attractant is still unknown, we found that phenol is sensed as a repellent by the signaling domain of the chemoreceptor McpA. This study furthers our understanding of the unconventional sensing mechanisms employed by the B. subtilis chemotaxis pathway.

摘要

枯草芽孢杆菌利用 10 种化学感受器来响应其环境中的化学物质。虽然许多诱饵的感应机制已经确定,但对驱避剂的感应机制知之甚少。在这项工作中,我们研究了枯草芽孢杆菌中苯酚的趋化性。苯酚在低浓度(微摩尔)时是一种诱饵,在高浓度(毫摩尔)时是一种驱避剂。发现 McpA 是主要的化学感受器,负责调节对苯酚和其他相关芳香化合物的驱避反应。此外,发现化学感受器 McpC 和 HemAT 负责调节对苯酚和相关化合物的吸引反应。通过化学感受器嵌合体,发现 McpA 利用其信号域而不是其感应域来感应苯酚。这些观察结果得到了证实,使用饱和转移差核磁共振观察到苯酚直接结合到 McpA 的信号域。这些结果进一步推进了我们对枯草芽孢杆菌趋化性的理解,并进一步表明枯草芽孢杆菌化学感受器的信号域可以直接感应化学效应物。细菌趋化性通常被认为采用涉及化学感受器的细胞外感应域的感应机制。然而,一些配体似乎被信号域感应。酚类化合物通常存在于土壤和根分泌物中,为枯草芽孢杆菌等土壤微生物提供环境线索。我们表明,苯酚既被感知为诱饵,也被感知为驱避剂。虽然作为诱饵感知苯酚的机制仍不清楚,但我们发现苯酚被化学感受器 McpA 的信号域感知为驱避剂。这项研究进一步加深了我们对枯草芽孢杆菌趋化途径所采用的非常规感应机制的理解。

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