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Structural analysis of substrate recognition by glucose isomerase in Mn 2+ binding mode at M2 site in S.?rubiginosus

机译:葡萄糖异构酶在S.αRubiginossmM2位点Mn 2+结合模式中葡萄糖异构酶的结构分析

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Glucose isomerase (GI) catalyzes the reversible enzymatic isomerization ofd-glucose andd-xylose tod-fructose andd-xylulose, respectively. This is one of the most important enzymes in the production of high-fructose corn syrup (HFCS) and biofuel. We recently determined the crystal structure of GI fromS.?rubiginosus(SruGI) complexed with a xylitol inhibitor in one metal binding mode. Although we assessed inhibitor binding at the M1 site, the metal binding at the M2 site and the substrate recognition mechanism for SruGI remains the unclear. Here, we report the crystal structure of the two metal binding modes of SruGI and its complex with glucose. This study provides a snapshot of metal binding at the SruGI M2 site in the presence of Mn2+, but not in the presence of Mg2+. Metal binding at the M2 site elicits a configuration change at the M1 site. Glucose molecule can only bind to the M1 site in presence of Mn2+at the M2 site. Glucose and Mn2+at the M2 site were bridged by water molecules using a hydrogen bonding network. The metal binding geometry of the M2 site indicates a distorted octahedral coordination with an angle of 55–110°, whereas the M1 site has a relatively stable octahedral coordination with an angle of 85–95°. We suggest a two-step sequential process for SruGI substrate recognition, in Mn2+binding mode, at the M2 site. Our results provide a better understanding of the molecular role of the M2 site in GI substrate recognition.
机译:葡萄糖异构酶(GI)分别催化可逆酶异构的葡萄糖和木糖TOD-果糖和二甲苯蔗糖。这是高果糖玉米糖浆(HFC)和生物燃料生产中最重要的酶之一。我们最近确定了在一种金属结合模式中与木糖醇抑制剂络合的GI frOS.?Rubiginosus(srugi)的晶体结构。虽然我们评估了在M1位点的抑制剂结合,但是在M2位点处的金属结合和Srugi的底物识别机制仍然不清楚。在这里,我们报告了Srugi的两种金属结合模式的晶体结构及其复合物与葡萄糖。该研究在MN2 +存在下在SRUGI M2位点处提供了在SRUGI M2位点的金属结合的快照,但在MG2 +存在下。 M2站点的金属绑定引发了M1位点的配置变化。葡萄糖分子只能在M2位点的MN2 +存在下与M1位点结合。使用氢键网络通过水分子桥接M2位点的葡萄糖和Mn2 +。 M2位点的金属结合几何形状表明,具有55-110°的角度的扭曲的八面体配位,而M1位点具有相对稳定的八面体配位,其角度为85-95°。我们建议在M2位点处的MN2 +结合模式中的SRUGI基板识别的两步顺序过程。我们的结果提供了更好地理解M2位点在GI底物识别中的分子作用。

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