首页> 外文期刊>Molecular biotechnology >Cloning, Purification, and Characterization of the Catalytic C-Terminal Domain of the Human 3-Hydroxy-3-methyl glutaryl-CoA Reductase: An Effective, Fast, and Easy Method for Testing Hypocholesterolemic Compounds
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Cloning, Purification, and Characterization of the Catalytic C-Terminal Domain of the Human 3-Hydroxy-3-methyl glutaryl-CoA Reductase: An Effective, Fast, and Easy Method for Testing Hypocholesterolemic Compounds

机译:人3-羟基-3-甲基戊二糖-CoA还原酶的催化C-末端结构域的克隆,纯化和表征:一种有效,快速,易于检测脱粒细胞缩薄化合物的方法

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摘要

3-hydroxy-3-methyl glutaryl-CoA reductase, also known as HMGR, plays a crucial role in regulating cholesterol biosynthesis and represents the main pharmacological target of statins. In mammals, this enzyme localizes to the endoplasmic reticulum membrane. HMGR includes different regions, an integral N-terminal domain connected by a linker-region to a cytosolic C-terminal domain, the latter being responsible for enzymatic activity. The aim of this work was to design a simple strategy for cloning, expression, and purification of the catalytic C-terminal domain of the human HMGR (cf-HMGR), in order to spectrophotometrically test its enzymatic activity. The recombinant cf-HMGR protein was heterologously expressed in Escherichia coli, purified by Ni+-agarose affinity chromatography and reconstituted in its active form. MALDI mass spectrometry was adopted to monitor purification procedure as a technique orthogonal to the classical Western blot analysis. Protein identity was validated by MS and MS/MS analysis, confirming about 82% of the recombinant sequence. The specific activity of the purified and dialyzed cf-HMGR preparation was enriched about 85-fold with respect to the supernatant obtained from cell lysate. The effective, cheap, and easy method here described could be useful for screening statin-like molecules, so simplifying the search for new drugs with hypocholesterolemic effects.
机译:3-羟基-3-甲基谷氨酸 - COA还原酶,也称为HMGR,在调节胆固醇生物合成中起着至关重要的作用,并代表他汀类药物的主要药理学靶标。在哺乳动物中,该酶定位于内质网膜。 HMGR包括不同的区域,通过接头区域连接到细胞溶质C末端结构域的整体n末端结构域,后者负责酶活性。这项工作的目的是设计一种用于人HMGR(CF-HMGR)的催化C-末端结构域的克隆,表达和纯化的简单策略,以便分光聚集地测试其酶活性。重组CF-HMGR蛋白在大肠杆菌中异源表达,通过Ni + -Agarose亲和层析纯化并以其活性形式重构。采用马尔达质谱法监测纯化程序作为与经典Western印迹分析正交的技术。通过MS和MS / MS分析验证蛋白质标识,确认重组序列的约82%。纯化和透析的CF-Hmgr制剂的比活性相对于由细胞裂解物获得的上清液富集约85倍。这里描述的有效,便宜和易于筛选样蛋白酶样分子的方法可用于筛选脱粒药物的新药。

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