Department of Immunology and Infectious Disease, Harvard TH Chan School of Public Health, Boston, United States.
Department of Microbiology and Immunobiology, Harvard Medical School, Boston, United States.
Elife. 2018 Oct 16;7:e37516. doi: 10.7554/eLife.37516.
In most well-studied rod-shaped bacteria, peptidoglycan is primarily crosslinked by penicillin-binding proteins (PBPs). However, in mycobacteria, crosslinks formed by L,D-transpeptidases (LDTs) are highly abundant. To elucidate the role of these unusual crosslinks, we characterized cells lacking all LDTs. We find that crosslinks generate by LDTs are required for rod shape maintenance specifically at sites of aging cell wall, a byproduct of polar elongation. Asymmetric polar growth leads to a non-uniform distribution of these two types of crosslinks in a single cell. Consequently, in the absence of LDT-mediated crosslinks, PBP-catalyzed crosslinks become more important. Because of this, (Mtb) is more rapidly killed using a combination of drugs capable of PBP- and LDT- inhibition. Thus, knowledge about the spatial and genetic relationship between drug targets can be exploited to more effectively treat this pathogen.
在大多数研究充分的杆状细菌中,肽聚糖主要通过青霉素结合蛋白(PBPs)交联。然而,在分枝杆菌中,L,D-转肽酶(LDTs)形成的交联非常丰富。为了阐明这些不寻常交联的作用,我们对缺乏所有 LDT 的细胞进行了表征。我们发现,LDT 形成的交联对于杆状维持是必需的,特别是在衰老细胞壁的部位,这是极向伸长的副产物。不对称的极向生长导致这两种交联在单个细胞中的分布不均匀。因此,在缺乏 LDT 介导的交联的情况下,PBP 催化的交联变得更加重要。因此,使用能够抑制 PBP 和 LDT 的药物组合,分枝杆菌的杀灭速度更快。因此,关于药物靶点的空间和遗传关系的知识可以被利用来更有效地治疗这种病原体。