首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Recombinant 3-Hydroxy 3-Methyl Glutaryl-CoA Reductase from Candida glabrata (Rec-CgHMGR) Obtained by Heterologous Expression, as a Novel Therapeutic Target Model for Testing Synthetic Drugs
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Recombinant 3-Hydroxy 3-Methyl Glutaryl-CoA Reductase from Candida glabrata (Rec-CgHMGR) Obtained by Heterologous Expression, as a Novel Therapeutic Target Model for Testing Synthetic Drugs

机译:通过异源表达获得的Candida Glabrata(Rec-CGHMGR)重组3-羟基3-甲基戊芳烃辅酶烯还原酶作为一种用于测试合成药物的新型治疗目标模型

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摘要

The enzyme 3-hydroxy-3-methyl-glutaryl CoA reductase (HMGR) is a glycoprotein of the endoplasmic reticulum that participates in the mevalonate pathway, the precursor of cholesterol in human and ergosterol in fungi. This enzyme has three domains: transmembrane, binding, and soluble. In this study, we expressed and purified the soluble fraction of the HMGR enzyme from Candida glabrata (CgHMGR) in an Escherichia coli heterologous system and used it as a model for studying its inhibitory activity. The soluble fraction of CgHMGR was fused to the maltose binding protein (MBP), purified, and characterized. Optimal pH was 8.0, and its optimal temperature activity was 37 degrees C. The k (m) and V (max) for the HMG-CoA were 6.5 mu M and 2.26 x 10(-3) mu M min(-1), respectively. Recombinant CgHMGR was inhibited by simvastatin presenting an IC50 at 14.5 mu M. In conclusion, our findings suggest that the recombinant HMGR version from C. glabrata may be used as a study model system for HMGR inhibitors such as statins and newly synthesized inhibitor compounds that might be used in the treatment of hypercholesterolemia or mycosis.
机译:酶3-羟基-3-甲基 - 戊芳烃COA还原酶(HMGR)是分叉的糖蛋白,其参与甲羟戊酯途径,在真菌中的人和Ergosterol中的胆固醇前体。该酶具有三个结构域:跨膜,结合和可溶性。在该研究中,我们在大肠杆菌异源系统中表达并纯化了来自Candida Glabrata(CGHMGR)的HMGR酶的可溶性分数,并用作研究其抑制活性的模型。 CGHMGR的可溶性级分融合给麦芽糖结合蛋白(MBP),纯化和表征。最佳pH为8.0,其最佳温度活性为37℃。HMG-COA的K(M)和V(MAX)为6.5μm和2.26×10(-3)mm min(-1),分别。通过辛伐他汀抑制重组CGHMGR在14.5μm的辛伐他汀抑制。总之,我们的研究结果表明,来自C.Glabrata的重组Hmgr版本可以用作Hmgr抑制剂的研究模型系统,例如他汀类药物和新合成的抑制剂化合物用于治疗高胆固醇血症或霉菌素。

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