Dinner date: Neisseria gonorrhoeae central carbon metabolism and pathogenesis.

IF 3.4 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Emerging Topics in Life Sciences Pub Date : 2024-02-22 DOI:10.1042/ETLS20220111
Aimee D Potter, Alison K Criss
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Abstract

Neisseria gonorrhoeae, the causative agent of the sexually transmitted infection gonorrhea, is a human-adapted pathogen that does not productively infect other organisms. The ongoing relationship between N. gonorrhoeae and the human host is facilitated by the exchange of nutrient resources that allow for N. gonorrhoeae growth in the human genital tract. What N. gonorrhoeae 'eats' and the pathways used to consume these nutrients have been a topic of investigation over the last 50 years. More recent investigations are uncovering the impact of N. gonorrhoeae metabolism on infection and inflammatory responses, the environmental influences driving N. gonorrhoeae metabolism, and the metabolic adaptations enabling antimicrobial resistance. This mini-review is an introduction to the field of N. gonorrhoeae central carbon metabolism in the context of pathogenesis. It summarizes the foundational work used to characterize N. gonorrhoeae central metabolic pathways and the effects of these pathways on disease outcomes, and highlights some of the most recent advances and themes under current investigation. This review ends with a brief description of the current outlook and technologies under development to increase understanding of how the pathogenic potential of N. gonorrhoeae is enabled by metabolic adaptation.

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晚餐日期:淋病奈瑟菌中心碳代谢及发病机制。
淋病奈瑟菌是性传播感染淋病的病原体,是一种人类适应的病原体,不会有效感染其他生物体。淋病奈瑟菌与人类宿主之间的持续关系是由营养资源的交换促进的,这些营养资源允许淋病奈瑟杆菌在人类生殖道中生长。在过去的50年里,淋病奈瑟菌“吃什么”以及消耗这些营养物质的途径一直是一个研究的主题。最近的研究揭示了淋球菌代谢对感染和炎症反应的影响,驱动淋球菌代谢的环境影响,以及导致抗微生物耐药性的代谢适应。这篇小综述是对淋球菌中枢碳代谢发病机制领域的介绍。它总结了用于表征淋球菌中心代谢途径的基础工作以及这些途径对疾病结果的影响,并强调了当前研究的一些最新进展和主题。这篇综述最后简要描述了当前的前景和正在开发的技术,以加深对代谢适应如何发挥淋病奈瑟菌致病潜力的理解。
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来源期刊
CiteScore
7.70
自引率
0.00%
发文量
94
期刊最新文献
Bacterial acetate metabolism and its influence on human epithelia. Dinner date: Neisseria gonorrhoeae central carbon metabolism and pathogenesis. The nitric oxide paradox: antimicrobial and inhibitor of antibiotic efficacy. Copper management strategies in obligate bacterial symbionts: balancing cost and benefit. Metalloproteome plasticity - a factor in bacterial pathogen adaptive responses?
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