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Colloquium Paper: Membrane sphingolipids as essential molecular signals for Bacteroides survival in the intestine

机译:专题讨论会:膜鞘脂是肠道中拟杆菌的生存必不可少的分子信号

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摘要

As predominant intestinal symbiotic bacteria, Bacteroides are essential in maintaining the health of the normal mammalian host; in return, the host provides a niche with plentiful nutrients for the symbionts. However, the intestinal environment is replete with chemical, physical, and biological challenges that require mechanisms for prompt and adept sensing of and responses to stress if the bacteria are to survive. Herein we propose that to persist in the intestine Bacteroides take advantage of their unusual bacterial sphingolipids to mediate signaling pathways previously known to be available only to higher organisms. Sphingolipids convey diverse signal transduction and stress response pathways and have profound physiological impacts demonstrated in a variety of eukaryotic cell types. We propose a mechanism by which the formation of specific sphingolipid membrane microdomains initiates signaling cascades that facilitate survival strategies within the bacteria. Our preliminary data suggest that sphingolipid signaling plays an important role in Bacteroides physiology, enabling these bacteria to persist in the intestine and to perform other functions related to symbiosis.
机译:作为主要的肠道共生细菌,杀菌剂对于维持正常哺乳动物宿主的健康至关重要。作为回报,宿主为共生体提供了丰富的营养素。但是,肠道环境充满了化学,物理和生物学方面的挑战,如果细菌要生存,就需要迅速,熟练地感知压力并对压力做出反应的机制。本文中,我们提出,拟杆菌要在肠道中持续存在,要利用它们不寻常的细菌鞘脂来介导以前仅可用于高等生物的信号传导途径。鞘脂可传递多种信号转导和应激反应途径,并在多种真核细胞类型中具有深远的生理影响。我们提出一种机制,通过该机制特定的鞘脂膜微结构域的形成引发信号级联反应,从而促进细菌内的生存策略。我们的初步数据表明鞘脂信号在拟杆菌的生理中起着重要的作用,使这些细菌能够在肠道中持续存在并执行与共生有关的其他功能。

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