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微生物维生素转运及酶 - 辅因子相互作用的活细胞发现

Live Cell Discovery of Microbial Vitamin Transport and Enzyme-Cofactor Interactions.

作者信息

Anderson Lindsey N, Koech Phillip K, Plymale Andrew E, Landorf Elizabeth V, Konopka Allan, Collart Frank R, Lipton Mary S, Romine Margaret F, Wright Aaron T

机构信息

Biological Sciences Division, Pacific Northwest National Laboratory , Richland, Washington 99352 United States.

Biosciences Division, Argonne National Laboratory , Argonne, Illinois 60439 United States.

出版信息

ACS Chem Biol. 2016 Feb 19;11(2):345-54. doi: 10.1021/acschembio.5b00918. Epub 2015 Dec 22.

Abstract

The rapid completion of microbial genomes is inducing a conundrum in functional gene discovery. Novel methods are needed to shorten the gap between characterizing a microbial genome and experimentally validating bioinformatically predicted functions. Of particular importance are transport mechanisms, which shuttle nutrients such as B vitamins and metabolites across cell membranes and are required for the survival of microbes ranging from members of environmental microbial communities to pathogens. Methods to accurately assign function and specificity for a wide range of experimentally unidentified and/or predicted membrane-embedded transport proteins, along with characterization of intracellular enzyme-cofactor associations, are needed to enable a significantly improved understanding of microbial biochemistry and physiology, microbial interactions, and microbial responses to perturbations. Chemical probes derived from B vitamins B1, B2, and B7 have allowed us to experimentally address the aforementioned needs by identifying B vitamin transporters and intracellular enzyme-cofactor associations through live cell labeling of the filamentous anoxygenic photoheterotroph, Chloroflexus aurantiacus J-10-fl, known to employ mechanisms for both B vitamin biosynthesis and environmental salvage. Our probes provide a unique opportunity to directly link cellular activity and protein function back to ecosystem and/or host dynamics by identifying B vitamin transport and cofactor-dependent interactions required for survival.

摘要

微生物基因组的快速完成正在引发功能基因发现方面的一个难题。需要新的方法来缩短表征微生物基因组与通过实验验证生物信息学预测功能之间的差距。特别重要的是转运机制,它能使诸如B族维生素和代谢物等营养物质跨细胞膜穿梭,并且从环境微生物群落成员到病原体等各类微生物的生存都需要它。需要有方法来准确确定大量实验上未鉴定和/或预测的膜嵌入转运蛋白的功能和特异性,以及表征细胞内酶 - 辅因子关联,以便能显著增进对微生物生物化学和生理学、微生物相互作用以及微生物对扰动反应的理解。源自B族维生素B1、B2和B7的化学探针使我们能够通过对丝状无氧光合异养菌嗜热栖热菌J - 10 - fl进行活细胞标记来鉴定B族维生素转运蛋白和细胞内酶 - 辅因子关联,从而通过实验满足上述需求,已知该菌具有B族维生素生物合成和环境补救机制。我们的探针通过识别生存所需的B族维生素转运和辅因子依赖性相互作用,提供了一个独特的机会,可将细胞活性和蛋白质功能直接与生态系统和/或宿主动态联系起来。

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