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揭示棘阿米巴对细菌的识别机制:对微生物生态学和免疫反应的见解

Unravelling mechanisms of bacterial recognition by Acanthamoeba: insights into microbial ecology and immune responses.

作者信息

Nasher Fauzy, Wren Brendan W

机构信息

Department of Infection Biology, London School of Hygiene and Tropical Medicine, London, United Kingdom.

出版信息

Front Microbiol. 2024 Aug 23;15:1405133. doi: 10.3389/fmicb.2024.1405133. eCollection 2024.

Abstract

Acanthamoeba, are ubiquitous eukaryotic microorganisms, that play a pivotal role in recognizing and engulfing various microbes during predation, offering insights into microbial dynamics and immune responses. An intriguing observation lies in the apparent preference of Acanthamoeba for Gram-negative over Gram-positive bacteria, suggesting potential differences in the recognition and response mechanisms to bacterial prey. Here, we comprehensively review pattern recognition receptors (PRRs) and microbe associated molecular patterns (MAMPs) that influence Acanthamoeba interactions with bacteria. We analyze the molecular mechanisms underlying these interactions, and the key finding of this review is that Acanthamoeba exhibits an affinity for bacterial cell surface appendages that are decorated with carbohydrates. Notably, this parallels warm-blooded immune cells, underscoring a conserved evolutionary strategy in microbial recognition. This review aims to serve as a foundation for exploring PRRs and MAMPs. These insights enhance our understanding of ecological and evolutionary dynamics in microbial interactions and shed light on fundamental principles governing immune responses. Leveraging Acanthamoeba as a model organism, provides a bridge between ecological interactions and immunology, offering valuable perspectives for future research.

摘要

棘阿米巴是普遍存在的真核微生物,在捕食过程中对识别和吞噬各种微生物起着关键作用,为微生物动态和免疫反应提供了见解。一个有趣的观察结果是,棘阿米巴明显更喜欢革兰氏阴性菌而非革兰氏阳性菌,这表明其对细菌猎物的识别和反应机制可能存在差异。在这里,我们全面综述了影响棘阿米巴与细菌相互作用的模式识别受体(PRR)和微生物相关分子模式(MAMP)。我们分析了这些相互作用的分子机制,本综述的关键发现是棘阿米巴对装饰有碳水化合物的细菌细胞表面附属物具有亲和力。值得注意的是,这与温血免疫细胞相似,强调了微生物识别中保守的进化策略。本综述旨在为探索PRR和MAMP奠定基础。这些见解增强了我们对微生物相互作用中生态和进化动态的理解,并揭示了免疫反应的基本原理。利用棘阿米巴作为模式生物,在生态相互作用和免疫学之间架起了一座桥梁,为未来的研究提供了有价值的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9309/11377244/b55692095d16/fmicb-15-1405133-g001.jpg

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