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首页> 外文期刊>MicrobiologyOpen >Molecular basis for the recognition of cyclic‐di‐AMP by PstA, a PII‐like signal transduction protein
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Molecular basis for the recognition of cyclic‐di‐AMP by PstA, a PII‐like signal transduction protein

机译:类似于PII的信号转导蛋白PstA识别环二磷酸腺苷的分子基础

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摘要

AbstractCyclic-di-AMP (c-di-AMP) is a broadly conserved bacterial second messenger that is of importance in bacterial physiology. The molecular receptors mediating the cellular responses to the c-di-AMP signal are just beginning to be discovered. PstA is a previously uncharacterized PII-like protein which has been identified as a c-di-AMP receptor. PstA is widely distributed and conserved among Gram-positive bacteria in the phylum Firmicutes. Here, we report the biochemical, structural, and functional characterization of PstA from Listeria monocytogenes. We have determined the crystal structures of PstA in the c-di-AMP-bound and apo forms at 1.6 and 2.9 Å resolution, respectively, which provide the molecular basis for its specific recognition of c-di-AMP. PstA forms a homotrimer structure that has overall similarity to the PII protein family which binds ATP. However, PstA is markedly different from PII proteins in the loop regions, and these structural differences mediate the specific recognition of their respective nucleotide ligand. The residues composing the c-di-AMP binding pocket are conserved, suggesting that c-di-AMP recognition by PstA is of functional importance. Disruption of pstA in L. monocytogenes affected c-di-AMP-mediated alterations in bacterial growth and lysis. Overall, we have defined the PstA family as a conserved and specific c-di-AMP receptor in bacteria.
机译:摘要Cyclic-di-AMP(c-di-AMP)是一种广泛保存的细菌第二信使,在细菌生理学中具有重要意义。刚开始发现介导细胞对c-di-AMP信号的分子受体。 PstA是一种以前未鉴定的P II 样蛋白,已被鉴定为c-di-AMP受体。 PstA广泛地分布和保守在门扇菌的革兰氏阳性细菌中。在这里,我们报告从单核细胞增生性李斯特菌的PstA的生化,结构和功能表征。我们已经分别以1.6和2.9Å的分辨率确定了c-di-AMP结合和载脂蛋白形式的PstA的晶体结构,这为其特异性识别c-di-AMP提供了分子基础。 PstA形成同三聚体结构,该结构与结合ATP的P II 蛋白家族具有总体相似性。然而,PstA在环区域与P II 蛋白明显不同,并且这些结构差异介导了其各自核苷酸配体的特异性识别。构成c-di-AMP结合口袋的残基是保守的,这表明PstA识别c-di-AMP具有功能重要性。单核细胞增生李斯特氏菌中pstA的破坏影响c-di-AMP介导的细菌生长和裂解的变化。总的来说,我们已将PstA家族定义为细菌中一种保守且特异的c-di-AMP受体。

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