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金黄色葡萄球菌对不断变化的环境条件的代谢反应——代谢组学视角

Staphylococcus aureus metabolic response to changing environmental conditions - a metabolomics perspective.

作者信息

Liebeke Manuel, Lalk Michael

机构信息

Biomolecular Medicine, Department of Surgery and Cancer, Faculty of Medicine, Imperial College London, London SW7 2AZ, UK.

Institute of Biochemistry, Ernst-Moritz-Arndt-University of Greifswald, 17487 Greifswald, Germany.

出版信息

Int J Med Microbiol. 2014 May;304(3-4):222-9. doi: 10.1016/j.ijmm.2013.11.017. Epub 2013 Dec 1.

Abstract

Microorganisms preserve their metabolic function against a wide range of external perturbations including biotic or abiotic factors by utilizing cellular adaptations to maintain cell homeostasis. Functional genomics aims to detect such adaptive alterations on the level of transcriptome, proteome and metabolome to understand system wide changes and to identify interactions between the different levels of biochemical organization. Microbial metabolomics measures metabolites, the direct biochemical response to the environment, and is pivotal to the understanding of the variability and dynamics of bacterial cell metabolism. Metabolomics can measure many different types of compounds including primary metabolites, secondary metabolites, second messengers, quorum sensing compounds and others, which all contribute to the complex bacterial response to an environmental change. Recent data confirmed that many metabolic processes in pathogenic bacteria are linked to virulence and invasive capabilities. Deciphering bacterial metabolism in response to specific environmental conditions and in specific genetic backgrounds will help map the complex network between the metabolome and the other "-omes". Here, we will review a selection of case studies for the pathogenic Gram-positive bacterium Staphylococcus aureus and summarize the current state of metabolomics literature covering staphylococci metabolism under different physiological states.

摘要

微生物通过利用细胞适应性来维持细胞内稳态,从而在包括生物或非生物因素在内的广泛外部干扰下保持其代谢功能。功能基因组学旨在在转录组、蛋白质组和代谢组水平上检测此类适应性改变,以了解全系统变化并识别不同生化组织水平之间的相互作用。微生物代谢组学测量代谢物,即对环境的直接生化反应,对于理解细菌细胞代谢的变异性和动态性至关重要。代谢组学可以测量许多不同类型的化合物,包括初级代谢物、次级代谢物、第二信使、群体感应化合物等,所有这些都有助于细菌对环境变化做出复杂反应。最近的数据证实,病原菌中的许多代谢过程与毒力和侵袭能力有关。解读细菌在特定环境条件和特定遗传背景下的代谢情况,将有助于绘制代谢组与其他“组学”之间的复杂网络。在此,我们将回顾针对致病性革兰氏阳性菌金黄色葡萄球菌的一系列案例研究,并总结代谢组学文献中关于葡萄球菌在不同生理状态下代谢情况的现状。

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