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碳源补充对生理机能的影响。

Impact of Carbon Source Supplementations on Physiology.

机构信息

Normandie Université, UNIROUEN, INSA, CNRS Polymers, Biopolymers, Surface Laboratory, 76821 Mont-Saint-Aignan cedex, France.

PISSARO Proteomic Facility, IRIB, 76820 Mont-Saint-Aignan, France.

出版信息

J Proteome Res. 2022 Jun 3;21(6):1392-1407. doi: 10.1021/acs.jproteome.1c00936. Epub 2022 Apr 28.

Abstract

is an opportunistic pathogen highly resistant to a wide range of antimicrobial agents, making its infections very difficult to treat. Since microorganisms need to perpetually adapt to their surrounding environment, understanding the effect of carbon sources on physiology is therefore essential to avoid increasing drug-resistance and better fight this pathogen. By a global proteomic approach and phenotypic assays, we investigated the impact of various carbon source supplementations (glucose, glutamate, succinate, and citrate) on the physiology of the PA14 strain. A total of 581 proteins were identified as differentially expressed in the 4 conditions. Most of them were more abundant in citrate supplementation and were involved in virulence, motility, biofilm development, and antibiotic resistance. Phenotypic assays were performed to check these hypotheses. By coupling all this data, we highlight the importance of the environment in which the bacterium evolves on its metabolism, and thus the necessity to better understand the metabolic pathways implied in its adaptative response according to the nutrient availability.

摘要

是一种机会性病原体,对广泛的抗菌药物具有高度耐药性,使其感染非常难以治疗。由于微生物需要不断适应周围环境,因此了解碳源对 生理学的影响对于避免增加药物耐药性和更好地对抗这种病原体至关重要。通过全局蛋白质组学方法和表型分析,我们研究了不同碳源补充(葡萄糖、谷氨酸、琥珀酸和柠檬酸盐)对 PA14 菌株生理的影响。在 4 种条件下共鉴定出 581 种差异表达的蛋白质。其中大多数在柠檬酸盐补充时更为丰富,它们参与了毒力、运动性、生物膜形成和抗生素耐药性。进行了表型分析来验证这些假设。通过综合所有这些数据,我们强调了细菌在其代谢过程中所处环境的重要性,因此有必要根据营养物质的可用性更好地了解其适应性反应所涉及的代谢途径。

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