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肠道微生物组生物能量学与慢性代谢性疾病之间新出现的联系。

Emerging connections between gut microbiome bioenergetics and chronic metabolic diseases.

机构信息

Department of Microbiology & Immunology, The University of Western Ontario, London, ON N6A 5C1, Canada; Canadian Centre for Human Microbiome and Probiotics Research, London, ON N6A 4V2, Canada.

Kimberly Clark Corporation, Global Research and Engineering-Life Science, Neenah, WI, USA.

出版信息

Cell Rep. 2021 Dec 7;37(10):110087. doi: 10.1016/j.celrep.2021.110087.

Abstract

The conventional viewpoint of single-celled microbial metabolism fails to adequately depict energy flow at the systems level in host-adapted microbial communities. Emerging paradigms instead support that distinct microbiomes develop interconnected and interdependent electron transport chains that rely on cooperative production and sharing of bioenergetic machinery (i.e., directly involved in generating ATP) in the extracellular space. These communal resources represent an important subset of the microbial metabolome, designated here as the "pantryome" (i.e., pantry or external storage compartment), that critically supports microbiome function and can exert multifunctional effects on host physiology. We review these interactions as they relate to human health by detailing the genomic-based sharing potential of gut-derived bacterial and archaeal reference strains. Aromatic amino acids, metabolic cofactors (B vitamins), menaquinones (vitamin K2), hemes, and short-chain fatty acids (with specific emphasis on acetate as a central regulator of symbiosis) are discussed in depth regarding their role in microbiome-related metabolic diseases.

摘要

传统的单细胞微生物代谢观点未能充分描述宿主适应微生物群落的系统水平上的能量流动。新兴的范例则支持这样的观点,即不同的微生物群落发展出相互关联和相互依存的电子传递链,这些电子传递链依赖于在细胞外空间中合作生产和共享生物能机器(即直接参与生成 ATP)。这些公共资源代表了微生物代谢组的一个重要子集,这里被指定为“食品室组”(即食品室或外部储存室),它对微生物群落的功能至关重要,并对宿主生理学产生多功能影响。我们通过详细描述肠道衍生的细菌和古细菌参考菌株的基于基因组的共享潜力,来回顾这些与人类健康有关的相互作用。本文深入讨论了芳香族氨基酸、代谢辅助因子(B 族维生素)、甲萘醌(维生素 K2)、血红素和短链脂肪酸(特别强调作为共生中央调节剂的乙酸盐)在与微生物群落相关的代谢疾病中的作用。

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