USDA-ARS-National Center for Agricultural Utilization Research, Peoria, IL, 61604, USA.
USDA-ARS-National Center for Agricultural Utilization Research, Peoria, IL, 61604, USA.
Enzyme Microb Technol. 2018 Jul;114:29-32. doi: 10.1016/j.enzmictec.2018.03.007. Epub 2018 Mar 24.
Two GH43 β-xylosidases, RS223-BX from a rice straw metagenomic library, and BoXA from Bacteroides ovatus, that share similar amino acid sequences (81% identical) and 19 of 20 active-site residues, were compared by using site-directed mutagenesis of Asp and His residues implicated in metal binding. Thus, RS223-BX is strongly activated by divalent-metal cations and the previously published X-ray structure of this enzyme shows that a Ca cation is chelated by an active-site Asp carboxyl group and an active-site His. Mutation to Ala causes 90% loss of activity for the Asp mutant and 98% loss of activity for the His mutant, indicating their importance to catalysis. For the other enzyme (BoXA), mutation to Ala causes 20% loss of activity for the His mutant and 40% gain of activity for the Asp mutant, indicating the lack of importance for activity of the native residues and the lack of metal-dependency, given that the Asp residue occupies the active site to secure the metal cation in known metal ion dependent GH43 xylosidases. The high activity of the BoXA mutants compared to that of the analogous RS223-BX mutants further undermines the possibility that BoXA maintains a tightly bound metal cofactor resistant to EDTA extraction. The results strengthen our conclusion that the very similar proteins differ in one being metal ion dependent and one not.
两种 GH43 β-木糖苷酶,一种来自水稻秸秆宏基因组文库的 RS223-BX,另一种来自拟杆菌属的 BoXA,它们具有相似的氨基酸序列(81%相同)和 20 个活性位点残基中的 19 个,通过定点突变 Asp 和 His 残基来比较它们与金属结合有关。因此,RS223-BX 被二价金属阳离子强烈激活,先前发表的该酶的 X 射线结构表明,一个 Ca 阳离子被一个活性位点 Asp 羧基和一个活性位点 His 螯合。突变为 Ala 导致 Asp 突变体活性丧失 90%,His 突变体活性丧失 98%,表明它们对催化的重要性。对于另一种酶(BoXA),突变为 Ala 导致 His 突变体活性丧失 20%,Asp 突变体活性增加 40%,表明活性位点残基对活性不重要,缺乏金属依赖性,因为在已知的金属离子依赖的 GH43 木糖苷酶中,Asp 残基占据活性位点以固定金属阳离子。BoXA 突变体的高活性与类似的 RS223-BX 突变体的高活性相比,进一步削弱了 BoXA 保持紧密结合的金属辅因子、不受 EDTA 提取影响的可能性。这些结果加强了我们的结论,即非常相似的蛋白质在一种依赖金属离子而另一种不依赖金属离子方面存在差异。