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Coupling of polymerase and carrier lipid phosphatase prevents product inhibition in peptidoglycan synthesis

机译:聚合酶和载体脂质磷酸酶的结合可防止肽聚糖合成中的产物抑制

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摘要

Peptidoglycan (PG) is an essential component of the bacterial cell wall that maintains the shape and integrity of the cell. The PG precursor lipid II is assembled at the inner leaflet of the cytoplasmic membrane, translocated to the periplasmic side, and polymerized to glycan chains by membrane anchored PG synthases, such as the class A Penicillin-binding proteins (PBPs). Polymerization of PG releases the diphosphate form of the carrier lipid, undecaprenyl pyrophosphate (C55-PP), which is converted to the monophosphate form by membrane-embedded pyrophosphatases, generating C55-P for a new round of PG precursor synthesis. Here we report that deletion of the C55-PP pyrophosphatase gene pgpB in E. coli increases the susceptibility to cefsulodin, a β-lactam specific for PBP1A, indicating that the cellular function of PBP1B is impaired in the absence of PgpB. Purified PBP1B interacted with PgpB and another C55-PP pyrophosphatase, BacA and both, PgpB and BacA stimulated the glycosyltransferase activity of PBP1B. C55-PP was found to be a potent inhibitor of PBP1B. Our data suggest that the stimulation of PBP1B by PgpB is due to the faster removal and processing of C55-PP, and that PBP1B interacts with C55-PP phosphatases during PG synthesis to couple PG polymerization with the recycling of the carrier lipid and prevent product inhibition by C55-PP.
机译:肽聚糖(PG)是细菌细胞壁的重要组成部分,可维持细胞的形状和完整性。 PG前体脂质II在细胞质膜的内部小叶处组装,易位至周质侧,并通过膜锚定的PG合成酶(例如A类青霉素结合蛋白(PBP))聚合成聚糖链。 PG的聚合释放出载体脂质的二磷酸形式,即十一碳烯基焦磷酸(C55-PP),其通过膜包埋的焦磷酸酶转化为单磷酸形式,从而生成C55-P用于新一轮的PG前体合成。在这里,我们报道了在大肠杆菌中删除C55-PP焦磷酸酶基因pgpB会增加对头孢磺啶的敏感性,这是一种对PBP1A特有的β-内酰胺,表明在没有PgpB的情况下PBP1B的细胞功能受到了损害。纯化的PBP1B与PgpB和另一种C55-PP焦磷酸酶BacA相互作用,PgpB和BacA两者均刺激PBP1B的糖基转移酶活性。发现C55-PP是PBP1B的有效抑制剂。我们的数据表明,PgpB对PBP1B的刺激是由于C55-PP的去除和加工更快,并且PPG1B在PG合成过程中与C55-PP磷酸酶相互作用,使PG聚合与载体脂质的循环结合,并防止产物抑制由C55-PP。

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