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磷酸转移酶系统的功能剖析有助于深入了解普拉梭菌在宿主肠道环境中的普遍存在情况。

Functional dissection of the phosphotransferase system provides insight into the prevalence of Faecalibacterium prausnitzii in the host intestinal environment.

作者信息

Kang Deborah, Ham Hyeong-In, Lee Seung-Hwan, Cho Yong-Joon, Kim Yeon-Ran, Yoon Chang-Kyu, Seok Yeong-Jae

机构信息

School of Biological Sciences and Institute of Microbiology, Seoul National University, Seoul, 08826, Republic of Korea.

出版信息

Environ Microbiol. 2021 Aug;23(8):4726-4740. doi: 10.1111/1462-2920.15681. Epub 2021 Jul 31.

Abstract

Faecalibacterium prausnitzii is a dominant member of healthy human colon microbiota, regarded as a beneficial gut bacterium due to its ability to produce anti-inflammatory substances. However, little is known about how F. prausnitzii utilizes the nutrients present in the human gut, influencing its prevalence in the host intestinal environment. The phosphoenolpyruvate (PEP):carbohydrate phosphotransferase system (PTS) is a widely distributed and highly efficient carbohydrate transport system found in most bacterial species that catalyses the simultaneous phosphorylation and import of cognate carbohydrates; its components play physiological roles through interaction with other regulatory proteins. Here, we performed a systematic analysis of the 16 genes encoding putative PTS components (2 enzyme I, 2 HPr, and 12 enzyme II components) in F. prausnitzii A2-165. We identified the general PTS components responsible for the PEP-dependent phosphotransfer reaction and the sugar-specific PTS components involved in the transport of two carbohydrates, N-acetylglucosamine and fructose, among five enzyme II complexes. We suggest that the dissection of the functional PTS in F. prausnitzii may help to understand how this species outcompetes other bacterial species in the human intestine.

摘要

普拉梭菌是健康人结肠微生物群的主要成员,因其具有产生抗炎物质的能力而被视为有益的肠道细菌。然而,关于普拉梭菌如何利用人体肠道中存在的营养物质,进而影响其在宿主肠道环境中的丰度,我们了解得还很少。磷酸烯醇丙酮酸(PEP):碳水化合物磷酸转移酶系统(PTS)是一种广泛分布且高效的碳水化合物转运系统,存在于大多数细菌物种中,可催化同源碳水化合物的同时磷酸化和导入;其组分通过与其他调节蛋白相互作用发挥生理作用。在此,我们对普拉梭菌A2 - 165中编码假定PTS组分的16个基因(2个酶I、2个HPr和12个酶II组分)进行了系统分析。我们在5个酶II复合物中鉴定出了负责PEP依赖性磷酸转移反应的一般PTS组分,以及参与两种碳水化合物(N - 乙酰葡糖胺和果糖)转运的糖特异性PTS组分。我们认为,剖析普拉梭菌中的功能性PTS可能有助于理解该物种如何在人类肠道中胜过其他细菌物种。

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