首页> 外文OA文献 >Bacillus subtilis CwlP of the SP-β Prophage Has Two Novel Peptidoglycan Hydrolase Domains, Muramidase and Cross-linkage Digesting dd-Endopeptidase*
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Bacillus subtilis CwlP of the SP-β Prophage Has Two Novel Peptidoglycan Hydrolase Domains, Muramidase and Cross-linkage Digesting dd-Endopeptidase*

机译:SP-β噬菌体的枯草芽孢杆菌CwlP具有两个新的肽聚糖水解酶结构域,即Muramidase和交联消化dd-内肽酶*

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摘要

For bacteria and bacteriophages, cell wall digestion by hydrolases is a very important event. We investigated one of the proteins involved in cell wall digestion, the yomI gene product (renamed CwlP). The gene is located in the SP-β prophage region of the Bacillus subtilis chromosome. Inspection of the Pfam database indicates that CwlP contains soluble lytic transglycosylase (SLT) and peptidase M23 domains, which are similar to Escherichia coli lytic transglycosylase Slt70, and the Staphylococcus aureus Gly-Gly endopeptidase LytM, respectively. The SLT domain of CwlP exhibits hydrolytic activity toward the B. subtilis cell wall; however, reverse phase (RP)-HPLC and mass spectrometry revealed that the CwlP-SLT domain has only muramidase activity. In addition, the peptidase M23 domain of CwlP exhibited hydrolytic activity and could cleave d-Ala-diaminopimelic acid cross-linkage, a property associated with dd-endopeptidases. Remarkably, the M23 domain of CwlP possessed a unique Zn2+-independent endopeptidase activity; this contrasts with all other characterized M23 peptidases (and enzymes similar to CwlP), which are Zn2+ dependent. Both domains of CwlP could hydrolyze the peptidoglycan and cell wall of B. subtilis. However, the M23 domain digested neither the peptidoglycans nor the cell walls of S. aureus or Streptococcus thermophilus. The effect of defined point mutations in conserved amino acid residues of CwlP is also determined.
机译:对于细菌和噬菌体,水解酶消化细胞壁是非常重要的事件。我们研究了参与细胞壁消化的一种蛋白质yomI基因产物(重命名为CwlP)。该基因位于枯草芽孢杆菌染色体的SP-β噬菌体区域。检查Pfam数据库表明,CwlP包含可溶性裂解转糖基酶(SLT)和肽酶M23结构域,分别类似于大肠杆菌裂解转糖基酶Slt70和金黄色葡萄球菌Gly-Gly内肽酶LytM。 CwlP的SLT结构域表现出对枯草芽孢杆菌细胞壁的水解活性。但是,反相(RP)-HPLC和质谱分析表明CwlP-SLT域仅具有muramidase活性。另外,CwlP的肽酶M23结构域表现出水解活性,并且可以切割d-丙氨酸-二氨基庚二酸交联,这是与dd-内肽酶有关的性质。值得注意的是,CwlP的M23结构域具有独特的不依赖Zn2 +的内肽酶活性。这与所有其他表征为Zn2 +的M23肽酶(和类似于CwlP的酶)相反。 CwlP的两个域都可以水解枯草芽孢杆菌的肽聚糖和细胞壁。但是,M23域既不消化金黄色葡萄球菌或嗜热链球菌的肽聚糖也不消化其细胞壁。还确定了CwlP的保守氨基酸残基中定义的点突变的作用。

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