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Proteomic Applications in Antimicrobial Resistance and Clinical Microbiology Studies

机译:抗微生物抗性和临床微生物研究中的蛋白质组学应用

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Sequences of the genomes of all-important bacterial pathogens of man, plants, and animals have been completed. Still, it is not enough to achieve complete information of all the mechanisms controlling the biological processes of an organism. Along with all advances in different proteomics technologies, proteomics has completed our knowledge of biological processes all around the world. Proteomics is a valuable technique to explain the complement of proteins in any organism. One of the fields that has been notably benefited from other systems approaches is bacterial pathogenesis. An emerging field is to use proteomics to examine the infectious agents in terms of, among many, the response the host and pathogen to the infection process, which leads to a deeper knowledge of the mechanisms of bacterial virulence. This trend also enables us to identify quantitative measurements for proteins extracted from microorganisms. The present review study is an attempt to summarize a variety of different proteomic techniques and advances. The significant applications in bacterial pathogenesis studies are also covered. Moreover, the areas where proteomics may lead the future studies are introduced.
机译:人,植物和动物的全部重要细菌病原体的基因组的序列已经完成。尽管如此,达到控制生物体生物过程的所有机制的完整信息是不够的。随着不同蛋白质组学技术的所有进步,蛋白质组学已经完成了我们对全世界的生物过程知识。蛋白质组学是一种有价值的技术,用于解释任何生物体中蛋白质的补充。一个显着从其他系统方法受益的领域是细菌发病机制。新兴领域是使用蛋白质组学来检查宿主和病原体的宿主和病原体对感染过程的影响,这导致对细菌毒力的机制更深入了解。这种趋势还使我们能够识别从微生物中提取的蛋白质的定量测量。本综述研究是一项试图总结各种不同的蛋白质组学技术和进步。还覆盖了细菌性发病机制研究中的重要应用。此外,介绍了蛋白质组学可能导致未来研究的领域。

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