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A Burkholderia cenocepacia MurJ (MviN) homolog is essential for cell wall peptidoglycan synthesis and bacterial viability

机译:Burkholderia cenocepacia MurJ(MviN)同源物对于细胞壁肽聚糖合成和细菌生存力至关重要

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摘要

The cell wall peptidoglycan (PG) of Burkholderia cenocepacia, an opportunistic pathogen, has not yet been characterized. However, the B. cenocepacia genome contains homologs of genes encoding PG biosynthetic functions in other bacteria. PG biosynthesis involves the formation of the undecaprenyl-pyrophosphate-linked N-acetyl glucosamine-N-acetyl muramic acid-pentapeptide, known as lipid II, which is built on the cytosolic face of the cell membrane. Lipid II is then translocated across the membrane and its glycopeptide moiety becomes incorporated into the growing cell wall mesh; this translocation step is critical to PG synthesis. We have investigated candidate flippase homologs of the MurJ family in B. cenocepacia. Our results show that BCAL2764, herein referred to as murJBc, is indispensable for viability. Viable B. cenocepacia could only be obtained through a conditional mutagenesis strategy by placing murJBc under the control of a rhamnose-inducible promoter. Under rhamnose depletion, the conditional strain stopped growing and individual cells displayed morphological abnormalities consistent with a defect in PG synthesis. Bacterial cells unable to express MurJBc underwent cell lysis, while partial MurJBc depletion sensitized the mutant to the action of β-lactam antibiotics. Depletion of MurJBc caused accumulation of PG precursors consistent with the notion that this protein plays a role in lipid II flipping to the periplasmic compartment. Reciprocal complementation experiments of conditional murJ mutants in B. cenocepacia and Escherichia coli with plasmids expressing MurJ from each strain indicated that MurJBc and MurJEc are functional homologs. Together, our results are consistent with the notion that MurJBc is a PG lipid II flippase in B. cenocepacia.
机译:伯克霍尔德氏菌(机会性病原体)的细胞壁肽聚糖(PG)尚未被鉴定。但是,新酒双歧杆菌基因组包含其他细菌中编码PG生物合成功能的基因的同源物。 PG的生物合成涉及形成在细胞膜胞质表面上的,与十一碳烯基-焦磷酸盐连接的N-乙酰基氨基葡萄糖-N-乙酰基尿酸-五肽的形成,称为脂质II。然后,脂质II跨膜转运,其糖肽部分被掺入到正在生长的细胞壁网中。该易位步骤对PG合成至关重要。我们已经调查了新隐双歧杆菌中MurJ家族的候选flippase同源物。我们的结果表明,BCAL2764(在本文中称为murJBc)对于生存力是必不可少的。只有通过将murJBc置于鼠李糖诱导型启动子的控制下,才可以通过条件诱变策略来获得活的酿酒酵母。在鼠李糖耗尽的情况下,条件菌株停止生长并且单个细胞显示出与PG合成缺陷一致的形态异常。无法表达MurJBc的细菌细胞进行了细胞裂解,而部分MurJBc耗竭则使该突变体对β-内酰胺类抗生素的作用敏感。 MurJBc的耗尽导致PG前体的积累,这与该蛋白在脂质II转移到周质区室中起作用的观点一致。在新细菌和大肠杆菌中的条件性murJ突变体与每个菌株表达MurJ的质粒进行的互补实验表明,MurJBc和MurJEc是功能同源物。在一起,我们的结果与观念是MurJBc是cenocepacia中的PG脂质II翻转酶。

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