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首页> 外文期刊>Journal of Molecular Biology >Cleavage specificity of Enterococcus faecalis EnpA (EF1473), a peptidoglycan endopeptidase related to the LytM/lysostaphin family of metallopeptidases.
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Cleavage specificity of Enterococcus faecalis EnpA (EF1473), a peptidoglycan endopeptidase related to the LytM/lysostaphin family of metallopeptidases.

机译:粪肠球菌EnpA(EF1473)的切割特异性,一种与金属肽酶的LytM /溶葡萄球菌素家族相关的肽聚糖内肽酶。

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摘要

Enterococcus faecalis EnpA (EF1473) is a 1721-residue predicted protein encoded by prophage 03 that displays similarity to the staphylolytic glycyl-glycyl endopeptidases lysostaphin and LytM. We purified a catalytically active fragment of the protein, EnpA(C), comprising residues 1374-1505 and showed that the recombinant polypeptide efficiently cleaved cross-linked muropeptides generated by muramidases, but was poorly active in intact sacculi. Analysis of the products of digestion of purified dimers by mass spectrometry indicated that EnpA(C) cleaves the D-Ala-L-Ala bond formed by the D,D-transpeptidase activity of penicillin-binding proteins in the last cross-linking step of peptidoglycan synthesis. Synthetic D was identified as the minimum substrate of EnpA(C) indicating that interaction of the enzyme with the donor peptide stem of cross-linked dimers is sufficient for its activity. Peptidoglycan was purified from various bacterial species and digested with mutanolysin and EnpA(C) to assess enzyme specificity. EnpA(C) did not cleave direct cross-links, but tolerated extensive variation in cross-bridges with respect to both their length (one to five residues) and their amino acid sequence. Recognition of the donor stem of cross-linked dimers could account for the substrate specificity of EnpA(C), which is significantly broader in comparison to endopeptidases belonging to the lysostaphin family.
机译:粪肠球菌EnpA(EF1473)是由prohage 03编码的一种1721残基预测蛋白,与糖酵解糖基-糖基内肽酶lysostaphin和LytM相似。我们纯化了蛋白EnpA(C)的催化活性片段,其中包括残基1374-1505,并显示重组多肽有效裂解了由muramidase产生的交联的多聚肽,但在完整的囊壁中活性较弱。质谱分析纯化的二聚体的消化产物表明,EnpA(C)裂解了青霉素结合蛋白在最后一个交联步骤中由青霉素结合蛋白的D,D-转肽酶活性形成的D-Ala-L-Ala键。肽聚糖合成。合成D被确定为EnpA(C)的最小底物,表明该酶与交联二聚体的供体肽茎的相互作用足以满足其活性。从各种细菌物种中纯化肽聚糖,并用变溶素和EnpA(C)消化以评估酶的特异性。 EnpA(C)不能裂解直接的交联,但可以容忍交叉桥的长度(一到五个残基)和氨基酸序列的广泛变化。识别交联二聚体的供体茎可以解释EnpA(C)的底物特异性,这与属于溶葡萄球菌素家族的内肽酶相比要宽得多。

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