首页> 外文期刊>Molecular Microbiology >DdlR, an essential transcriptional regulator of peptidoglycan biosynthesis in Clostridioides difficile Clostridioides difficile
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DdlR, an essential transcriptional regulator of peptidoglycan biosynthesis in Clostridioides difficile Clostridioides difficile

机译:DDLR,蛋白质梭胺梭肽梭氧化梭菌肽肽肽酸纤维素梭肽的基本转录调节剂

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摘要

Summary D‐Ala‐D‐Ala ligase, encoded by ddl genes, is responsible for the synthesis of a dipeptide, D‐Ala‐D‐Ala, an essential precursor of bacterial peptidoglycan. In Clostridioides difficile, the single ddl gene is located upstream of the ddlR gene, which encodes a putative transcriptional regulator . Using mutational and transcriptional analysis and DNA‐binding assays, DdlR was found to be a direct activator of the ddl ddlR operon. DdlR is a member of the MocR/GabR‐type proteins that have aminotransferase‐like, pyridoxal 5′‐phosphate‐binding domains. A DdlR mutation that prevented covalent binding of pyridoxal 5′‐phosphate abolished the ability of DdlR to activate transcription. Addition of D‐Ala‐D‐Ala to the medium inactivated DdlR, reducing dipeptide biosynthesis. In contrast, D‐Ala‐D‐Ala limitation caused a dramatic increase in expression from the ddl promoter. Though uncommon for transcription regulators, C. difficile DdlR is essential, as the ddlR null mutant cells could not grow even in complex laboratory media in the absence of D‐Ala‐D‐Ala. A dyad symmetry sequence, which is located immediately upstream of the ?35 region of the ddl promoter, serves as an important element of the DdlR‐binding site. This sequence is conserved upstream of putative DdlR targets in other bacteria of classes?Clostridia and Bacilli, indicating a similar mode of regulation of these genes.
机译:发明内容由DDL基因编码的D-Ala-D-Ala连接酶负责合成二肽,D-Ala-Ala,细菌肽聚糖的必要前体。在梭菌氧化钛酸纤维素中,单个DDL基因位于DDLR基因的上游,其编码推定的转录调节剂。使用突变和转录分析和DNA结合测定,发现DDLR是DDL DDLR操纵子的直接活化剂。 DDLR是具有氨基转移酶样吡哆醛吡哆醛5'-磷酸结合结构域的mogR / gabr型蛋白质的成员。防止吡哆醛5'-磷酸酯的共价结合的DDLR突变废除了DDLR活化转录的能力。向中灭活的DDLR添加D-Ala-D-Ala,还原二肽生物合成。相反,D-ALA-D-ALA限制导致来自DDL启动子的表达剧烈增加。虽然转录调节剂罕见,但是艰难梭菌DDLR是必不可少的,因为在没有D-Ala-DAla的情况下,DDLR NULL突变体细胞即使在复杂的实验室介质中也不能生长。一种Dyad对称序列,其位于DDL启动子的α35区域的上游,用作DDLR结合位点的重要元素。该序列在其他细菌的课程中的推定DDLR靶向上游保存?梭菌和芽孢杆菌,表明这些基因的类似调节模式。

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  • 来源
    《Molecular Microbiology》 |2019年第5期|共18页
  • 作者单位

    Department of Molecular Biology and MicrobiologyTufts University School of MedicineBoston MA 02111;

    Department of Molecular Biology and MicrobiologyTufts University School of MedicineBoston MA 02111;

    Department of Molecular Biology and MicrobiologyTufts University School of MedicineBoston MA 02111;

    Department of Molecular Biology and MicrobiologyTufts University School of MedicineBoston MA 02111;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
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