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细菌中 N-酰基高丝氨酸内酯介导的群体感应的分子机制及其应用。

Molecular Mechanisms and Applications of N-Acyl Homoserine Lactone-Mediated Quorum Sensing in Bacteria.

机构信息

School of Biotechnology, Faculty of Applied Sciences and Biotechnology, Shoolini University, Solan 173229, India.

Department of Chemical Engineering, Konkuk University, Seoul 05029, Korea.

出版信息

Molecules. 2022 Nov 4;27(21):7584. doi: 10.3390/molecules27217584.

Abstract

Microbial biodiversity includes biotic and abiotic components that support all life forms by adapting to environmental conditions. Climate change, pollution, human activity, and natural calamities affect microbial biodiversity. Microbes have diverse growth conditions, physiology, and metabolism. Bacteria use signaling systems such as quorum sensing (QS) to regulate cellular interactions via small chemical signaling molecules which also help with adaptation under undesirable survival conditions. use acyl-homoserine lactone (AHL) molecules as autoinducers to sense population density and modulate gene expression. The LuxI-type enzymes synthesize AHL molecules, while the LuxR-type proteins (AHL transcriptional regulators) bind to AHLs to regulate QS-dependent gene expression. Diverse AHLs have been identified, and the diversity extends to AHL synthases and AHL receptors. This review comprehensively explains the molecular diversity of AHL signaling components of , , , and . The regulatory mechanism of AHL signaling is also highlighted in this review, which adds to the current understanding of AHL signaling in Gram-negative bacteria. We summarize molecular diversity among well-studied QS systems and recent advances in the role of QS proteins in bacterial cellular signaling pathways. This review describes AHL-dependent QS details in bacteria that can be employed to understand their features, improve environmental adaptation, and develop broad biomolecule-based biotechnological applications.

摘要

微生物生物多样性包括生物和非生物成分,通过适应环境条件来支持所有生命形式。气候变化、污染、人类活动和自然灾害会影响微生物生物多样性。微生物具有多样化的生长条件、生理学和代谢方式。细菌使用信号系统(如群体感应(QS))来通过小分子化学信号分子调节细胞间的相互作用,这些信号分子还有助于在不良生存条件下进行适应。 使用酰基高丝氨酸内酯(AHL)分子作为自体诱导物来感知种群密度并调节基因表达。LuxI 型酶合成 AHL 分子,而 LuxR 型蛋白(AHL 转录调节剂)与 AHL 结合以调节 QS 依赖性基因表达。已经鉴定出多种 AHL,并且 AHL 合成酶和 AHL 受体的多样性也在扩展。本综述全面解释了 、 、 、 中 AHL 信号成分的分子多样性。本综述还强调了 AHL 信号的调节机制,这增加了对革兰氏阴性细菌中 AHL 信号的现有理解。我们总结了在研究得较好的 QS 系统之间的分子多样性,以及 QS 蛋白在细菌细胞信号通路中的作用的最新进展。本综述描述了细菌中依赖 AHL 的 QS 的详细信息,可以利用这些信息来了解它们的特征,改善环境适应能力,并开发广泛的基于生物分子的生物技术应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4a5/9654057/f2d858556258/molecules-27-07584-g001.jpg

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