UCIBIO-REQUIMTE, Departamento de Ciências da Vida, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, Caparica, Portugal.
The Rockefeller University, New York, NY 10065.
Microbiol Spectr. 2019 Jul;7(4). doi: 10.1128/microbiolspec.GPP3-0068-2019.
Dating back to the 1960s, initial studies on the staphylococcal cell wall were driven by the need to clarify the mode of action of the first antibiotics and the resistance mechanisms developed by the bacteria. During the following decades, the elucidation of the biosynthetic path and primary composition of staphylococcal cell walls was propelled by advances in microbial cell biology, specifically, the introduction of high-resolution analytical techniques and molecular genetic approaches. The field of staphylococcal cell wall gradually gained its own significance as the complexity of its chemical structure and involvement in numerous cellular processes became evident, namely its versatile role in host interactions, coordination of cell division and environmental stress signaling.This chapter includes an updated description of the anatomy of staphylococcal cell walls, paying particular attention to information from the last decade, under four headings: high-resolution analysis of the peptidoglycan; variations in peptidoglycan composition; genetic determinants and enzymes in cell wall synthesis; and complex functions of cell walls. The latest contributions to a more precise picture of the staphylococcal cell envelope were possible due to recently developed state-of-the-art microscopy and spectroscopy techniques and to a wide combination of -omics approaches, that are allowing to obtain a more integrative view of this highly dynamic structure.
可以追溯到 20 世纪 60 年代,对葡萄球菌细胞壁的初步研究是由阐明第一批抗生素的作用模式和细菌产生的耐药机制的需要驱动的。在接下来的几十年里,随着微生物细胞生物学的进步,特别是高分辨率分析技术和分子遗传方法的引入,葡萄球菌细胞壁的生物合成途径和主要成分的阐明得到了推动。随着其化学结构的复杂性及其在众多细胞过程中的作用变得明显,葡萄球菌细胞壁领域逐渐获得了自身的意义,即其在宿主相互作用、细胞分裂协调和环境应激信号传导中的多功能作用。这一章包括对葡萄球菌细胞壁结构的更新描述,特别注意过去十年的信息,分为四个标题:肽聚糖的高分辨率分析;肽聚糖组成的变化;细胞壁合成的遗传决定因素和酶;细胞壁的复杂功能。由于最近开发的最先进的显微镜和光谱技术以及广泛的组学方法的结合,使得对这种高度动态结构有了更综合的认识,因此可以更准确地描绘葡萄球菌细胞包膜。