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异常身体:一种允许生存的替代性代谢稳态?

Aberrant Bodies: An Alternative Metabolic Homeostasis Allowing Survivability?

作者信息

Kozusnik Thomas, Adams Simone E, Greub Gilbert

机构信息

Institute of Microbiology, University Hospital of Lausanne, 1005 Lausanne, Switzerland.

出版信息

Microorganisms. 2024 Feb 29;12(3):495. doi: 10.3390/microorganisms12030495.

Abstract

The phylum is comprised of obligate intracellular bacteria including human pathogens such as and lesser-known -related bacteria like or . Despite broad differences, these bacteria share a similar development including a persistent state induced using stressors such as immune responses, nutrient starvation, or penicillin introduction. In microbiology, this persistent state is identified by enlarged bacteria, called aberrant bodies, which are unable to divide but are able to survive and resume the developmental cycle upon clearance of the stressor. Clinically, chlamydial persistence is thought to be linked to chronic disease and long-term infections with pathogenic strains. This review aims to share and discuss the latest discoveries made on the little-known mechanisms that take place during stress response. The results indicate that an inter-linked homeostasis between iron and tryptophan is required for effective bacterial proliferation. During stress, attempt to compensate by inducing tight regulations of the tryptophan and iron acquisition operons. These compensations allow bacterial survival but result in the halting of cell division. As cell division is tightly linked to peptidoglycan synthesis and regulation, treatment with β-lactamase inhibitors can also exhibit an aberrant body phenotype.

摘要

该门由专性细胞内细菌组成,包括人类病原体如[具体病原体名称1]以及鲜为人知的与[相关细菌名称1]相关的细菌,如[具体病原体名称2]或[具体病原体名称3]。尽管存在广泛差异,但这些细菌具有相似的发育过程,包括由免疫反应、营养饥饿或引入青霉素等应激源诱导的持续状态。在微生物学中,这种持续状态通过称为异常体的增大细菌来识别,这些细菌无法分裂,但能够存活并在应激源清除后恢复发育周期。临床上,衣原体持续感染被认为与慢性病和致病性菌株的长期感染有关。本综述旨在分享和讨论在应激反应过程中发生的鲜为人知的机制方面的最新发现。结果表明,铁和色氨酸之间相互关联的稳态是细菌有效增殖所必需的。在应激期间,[具体细菌名称]试图通过诱导色氨酸和铁获取操纵子的严格调控来进行补偿。这些补偿使细菌得以存活,但导致细胞分裂停止。由于细胞分裂与肽聚糖合成和调控紧密相关,用β-内酰胺酶抑制剂治疗也可表现出异常体表型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6c7/10972484/155a254a4019/microorganisms-12-00495-g001.jpg

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