Waters Jack K, Eijkelkamp Bart A
College of Science and Engineering, Flinders University, Adelaide, South Australia, Australia.
Microbiol Mol Biol Rev. 2024 Dec 18;88(4):e0012624. doi: 10.1128/mmbr.00126-24. Epub 2024 Oct 30.
SUMMARYThe lipid homeostasis pathways of bacterial pathogens have been studied comprehensively for their biochemical functionality. However, new and refined technologies have supported the interrogation of bacterial lipid and fatty acid homeostasis mechanisms in more complex environments, such as mammalian host niches. In particular, emerging findings on the breadth and depth of host fatty acid uptake have demonstrated their importance beyond merely fatty acid utilization for membrane synthesis, as they can contribute to virulence factor regulation, pathogenesis, and group-based behaviors. Lipid homeostasis is also intertwined with other metabolic and physiological processes in the bacterial cells, which appear to be largely unique per species, but overarching themes can be derived. This review combines the latest biochemical and structural findings and places these in the context of bacterial pathogenesis, thereby shedding light on the far-reaching implications of lipid homeostasis on bacterial success.
摘要
细菌病原体的脂质稳态途径因其生化功能已得到全面研究。然而,新的精细技术有助于在更复杂的环境中探究细菌脂质和脂肪酸稳态机制,比如哺乳动物宿主生态位。特别是,关于宿主脂肪酸摄取的广度和深度的新发现表明,其重要性不仅限于脂肪酸用于膜合成的利用,因为它们可有助于毒力因子调节、发病机制和群体行为。脂质稳态还与细菌细胞中的其他代谢和生理过程相互交织,这些过程似乎在很大程度上因物种而异,但可以得出总体主题。本综述结合了最新的生化和结构研究结果,并将其置于细菌发病机制的背景下,从而阐明脂质稳态对细菌成功的深远影响。