首页> 美国卫生研究院文献>Journal of Bacteriology >Specificities of FemA and FemB for different glycine residues: FemB cannot substitute for FemA in staphylococcal peptidoglycan pentaglycine side chain formation.
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Specificities of FemA and FemB for different glycine residues: FemB cannot substitute for FemA in staphylococcal peptidoglycan pentaglycine side chain formation.

机译:FemA和FemB对不同甘氨酸残基的特异性:FemB在葡萄球菌肽聚糖五糖苷侧链形成中不能替代FemA。

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摘要

The femAB operon codes for two nearly identical approximately 50-kDa proteins involved in the formation of the staphylococcal pentaglycine interpeptide bridge. Sequencing and analysis of the femA region of mutants isolated by chemical mutagenesis and selection for lysostaphin resistance revealed point mutations leading to the expression of truncated FemA proteins. These femA mutants, although still producing an intact FemB, exhibited a phenotype identical as that described for femAB double mutants. Thus, FemA seems to be essential for the addition of glycine residues 2 and 3 only, whereas FemB is involved in the attachment of exclusively glycine residues 4 and 5. Although FemB has 39% identity with FemA, it cannot substitute for FemA. The FemA and FemB proteins seem to be highly specific in regard to the position of the glycine residues that they attach.
机译:femAB操纵子编码两个几乎相同的约50kDa的蛋白质,参与了葡萄球菌五甘氨酸肽桥的形成。通过化学诱变和耐溶葡萄球菌素抗性选择分离的突变体的femA区域的测序和分析显示点突变导致截短的FemA蛋白的表达。这些femA突变体尽管仍产生完整的FemB,但表现出与femAB双突变体相同的表型。因此,FemA似乎仅对添加甘氨酸残基2和3必不可少,而FemB仅参与甘氨酸残基4和5的连接。尽管FemB与FemA具有39%的同一性,但它不能替代FemA。 FemA和FemB蛋白似乎在它们附着的甘氨酸残基的位置上具有高度特异性。

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