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FtsZ-independent septal recruitment and function of cell wall remodelling enzymes in chlamydial pathogens

机译:衣原体病原体中不依赖FtsZ的间隔募集和细胞壁重塑酶的功能

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The nature and assembly of the chlamydial division septum is poorly defined due to the paucity of a detectable peptidoglycan (PG)-based cell wall, the inhibition of constriction by penicillin and the presence of coding sequences for cell wall precursor and remodelling enzymes in the reduced chlamydial (pan-)genome. Here we show that the chlamydial amidase ( AmiA ) is active and remodels PG in Escherichia coli . Moreover, forward genetics using an E. coli amidase mutant as entry point reveals that the chlamydial LysM-domain protein NlpD is active in an E. coli reporter strain for PG endopeptidase activity (Δ nlpI ) . Immunolocalization unveils NlpD as the first septal (cell-wall-binding) protein in Chlamydiae and we show that its septal sequestration depends on prior cell wall synthesis. Since AmiA assembles into peripheral clusters, trimming of a PG-like polymer or precursors occurs throughout the chlamydial envelope, while NlpD targets PG-like peptide crosslinks at the chlamydial septum during constriction.
机译:由于缺乏可检测的基于肽聚糖(PG)的细胞壁,青霉素对收缩的抑制以及细胞壁前体和重构酶中编码酶序列的存在,衣原体分隔隔膜的性质和装配很难定义衣原体(泛)基因组。在这里,我们表明衣原体酰胺酶(AmiA)是活跃的,并重塑大肠杆菌中的PG。此外,使用大肠杆菌酰胺酶突变体作为切入点的正向遗传学揭示了衣原体LysM结构域蛋白NlpD在大肠杆菌报告菌株中具有PG内肽酶活性(ΔnlpI)。免疫定位揭示了NlpD作为衣原体中的第一个间隔(细胞壁结合)蛋白,我们证明了其间隔隔离取决于先前的细胞壁合成。由于AmiA组装成周围簇,因此在整个衣原体包膜中都会进行PG类聚合物或前体的修饰,而NlpD在收缩过程中会靶向衣原体间隔中的PG样肽交联。

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