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Chemical Highlights Supporting the Role of Lipid A in Efficient Biological Adaptation of Gram-Negative Bacteria to External Stresses

机译:化学亮点支持脂质A在高效生物适应外部应激的革兰阴性细菌中的作用

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摘要

The outer membrane (OM) of Gram-negative bacteria provides an efficient barrier against external noxious compounds such as antimicrobial agents. Associated with drug target modification, it contributes to the overall failure of chemotherapy. In the complex OM architecture, Lipid A plays an essential role by anchoring the lipopolysaccharide in the membrane and ensuring the spatial organization between lipids, proteins, and sugars. Currently, the targets of almost all antibiotics are intracellularly located and require translocation across membranes. We report herein an integrated view of Lipid A synthesis, membrane assembly, a structure comparison at the molecular structure level of numerous Gram-negative bacterial species, as well as its recent use as a target for original antibacterial molecules. This review paves the way for a new vision of a key membrane component that acts during bacterial adaptation to environmental stresses and for the development of new weapons against microbial resistance to usual antibiotics.
机译:革兰氏阴性菌的外膜(OM)提供了一种有效的屏障,可以抵御外部有害化合物,如抗菌剂。与药物靶点修饰相关,它会导致化疗的整体失败。在复杂的OM结构中,脂质A通过在膜中锚定脂多糖并确保脂质、蛋白质和糖之间的空间组织而发挥重要作用。目前,几乎所有抗生素的靶点都位于细胞内,需要跨膜转运。我们在此报告了脂质A合成、膜组装、多种革兰氏阴性细菌在分子结构水平上的结构比较,以及其最近作为原始抗菌分子靶标的应用。这篇综述为细菌适应环境压力期间发挥作用的关键膜成分的新愿景以及对抗微生物对常用抗生素耐药性的新武器的开发铺平了道路。

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