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Characterization of SCO4439 a D-alanyl-D-alanine carboxypeptidase involved in spore cell wall maturation resistance and germination in Streptomyces coelicolor

机译:SCO4439的表征一种D-丙氨酰-D-丙氨酸羧肽酶参与天蓝色链霉菌的孢子细胞壁成熟抗性和萌发

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摘要

This work contributes to the understanding of cell wall modifications during sporulation and germination in Streptomyces by assessing the biological function and biochemical properties of SCO4439, a D-alanyl-D-alanine carboxypeptidase (DD-CPase) constitutively expressed during development. SCO4439 harbors a DD-CPase domain and a putative transcriptional regulator domain, separated by a putative transmembrane region. The recombinant protein shows that DD-CPase activity is inhibited by penicillin G. The spores of the SCO4439::Tn5062 mutant are affected in their resistance to heat and acid and showed a dramatic increase in swelling during germination. The mycelium of the SCO4439::Tn5062 mutant is more sensitive to glycopeptide antibiotics (vancomycin and teicoplanin). The DD-CPase domain and the hydrophobic transmembrane region are highly conserved in Streptomyces, and both are essential for complementing the wild type phenotypes in the mutant. A model for the biological mechanism behind the observed phenotypes is proposed, in which SCO4439 DD-CPase releases D-Ala from peptidoglycan (PG) precursors, thereby reducing the substrate pool for PG crosslinking (transpeptidation). PG crosslinking regulates spore physical resistance and germination, and modulates mycelium resistance to glycopeptides. This study is the first demonstration of the role of a DD-CPase in the maturation of the spore cell wall.
机译:这项工作通过评估SCO4439的生物学功能和生化特性(在发育过程中组成性表达的D-丙氨酰-D-丙氨酸羧肽酶(DD-CPase))来帮助理解链霉菌在孢子形成和萌发过程中的细胞壁修饰。 SCO4439包含一个DD-CPase域和一个假定的转录调节域,由一个假定的跨膜区域隔开。重组蛋白显示青霉素G抑制DD-CPase活性。SCO4439:: Tn5062突变体的孢子在耐热和耐酸性方面受到影响,并且发芽过程中肿胀显着增加。 SCO4439 :: Tn5062突变体的菌丝体对糖肽抗生素(万古霉素和替考拉宁)更敏感。 DD-CPase结构域和疏水跨膜区在链霉菌中高度保守,并且两者都是互补突变体中野生型表型所必需的。提出了一种用于观察表型背后的生物学机制的模型,其中SCO4439 DD-CPase从肽聚糖(PG)前体释放D-Ala,从而减少了PG交联(转肽)的底物库。 PG交联调节孢子的物理抗性和发芽,并调节菌丝体对糖肽的抗性。这项研究是DD-CPase在孢子细胞壁成熟中的作用的首次证明。

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