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首页> 外文期刊>FEBS Letters >Essential catalytic role of Glu134 in endo‐β‐1,3‐1,4‐d‐glucan 4‐glucanohydrolase from B. licheniformis as determined by site‐directed mutagenesis
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Essential catalytic role of Glu134 in endo‐β‐1,3‐1,4‐d‐glucan 4‐glucanohydrolase from B. licheniformis as determined by site‐directed mutagenesis

机译:通过定点诱变确定Glu134在地衣芽孢杆菌内-β-1,3,1,4-d-葡聚糖4-葡聚糖水解酶中的重要催化作用

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>Site-directed mutagenesis experiments designed to identify the active site of Bacillus licheniformis endo-β-1,3-1,4- class="smallCaps">d-glucan 4-glucanohydrolase (β-glucanase) have been performed. Putative catalytic residues were chosen on the basis of sequence similarity analysis to viral and eukaryotic lysozymes. Four mutant enzymes were expressed and purified from recombinan: E. coli and their kinetics analysed with barley β-glucan. Replacement of Glu134 by Gin produced a mutant (E134Q) that retains less than 0.3% of the wild-type activity. The other mutants, D133N, E160Q and D179N, are active but show different kinetic parameters relative to wild-type indicative of their participation in substrate binding and transition-state complex stabilization. Glu134 is essential for activity; it is comprised in a region of high sequence similarity to the active site of T4 lysozyme and matches the position of the general acid catalyst. These results strongly support a lysozyme-like mechanism for this family of Bacillus β-glucan hydrolases with Glu134 being the essential acid catalyst.
机译:>定向诱变实验,旨在鉴定地衣芽孢杆菌内-β-1,3-1,4- class =“ smallCaps”> d -已经进行了葡聚糖4-葡聚糖水解酶(β-葡聚糖酶)。基于与病毒和真核溶菌酶的序列相似性分析,选择推定的催化残基。表达了四种重组酶,并从重组蛋白: E中纯化。大麦β-葡聚糖分析大肠埃希菌及其动力学。用Gin替代Glu 134 产生的突变体(E134Q)保留了不到0.3%的野生型活性。其他突变体D133N,E160Q和D179N具有活性,但相对于野生型显示不同的动力学参数,表明它们参与了底物结合和过渡态复合物的稳定作用。 Glu 134 对活动至关重要。它包含在与T4溶菌酶活性位点高度相似的区域中,并且与一般酸催化剂的位置匹配。这些结果有力地证明了该家族的芽孢杆菌β-葡聚糖水解酶具有类似溶菌酶的机制,其中Glu 134 是必需的酸催化剂。

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