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Structural basis of denuded glycan recognition by SPOR domains in bacterial cell division

机译:细菌细胞分裂中孢子域剥夺聚糖识别的结构基础

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摘要

SPOR domains are widely present in bacterial proteins that recognize cell-wall peptidoglycan strands stripped of the peptide stems. This type of peptidoglycan is enriched in the septal ring as a product of catalysis by cell-wall amidases that participate in the separation of daughter cells during cell division. Here, we document binding of synthetic denuded glycan ligands to the SPOR domain of the lytic transglycosylase RlpA from Pseudomonas aeruginosa (SPOR-RlpA) by mass spectrometry and structural analyses, and demonstrate that indeed the presence of peptide stems in the peptidoglycan abrogates binding. The crystal structures of the SPOR domain, in the apo state and in complex with different synthetic glycan ligands, provide insights into the molecular basis for recognition and delineate a conserved pattern in other SPOR domains. The biological and structural observations presented here are followed up by molecular-dynamics simulations and by exploration of the effect on binding of distinct peptidoglycan modifications.
机译:SPOR结构域广泛存在于识别剥离肽茎的细胞壁肽聚糖链的细菌蛋白中。这种类型的肽聚糖在隔膜环中富集,作为通过Cell-壁的催化酶催化酶,其参与细胞分裂期间子细胞分离的酶。这里,通过质谱法和结构分析将合成剥落的聚糖配体与裂解的碳糖基酶RLPA(SPOR-RLPA)的孢子结构域的旋转结构域的结合和结构分析记录。实际上,肽苷的存在性肽在肽增生中的结合。孢子结构域的晶体结构在APO状态和与不同的合成聚糖配体中的复合物中,为识别和描绘其他孢子域中的保守模式提供了洞察力。这里提出的生物学和结构观察结果随着分子动力学模拟,并通过探讨了不同肽改性的结合的影响。

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