Department of Biotechnology, PES Institute of Technology, BSK III Stage, Hosakerahalli, Bangalore, Karnataka, India.
Phytochemistry. 2011 Dec;72(18):2267-74. doi: 10.1016/j.phytochem.2011.09.004. Epub 2011 Oct 1.
Two carboxylesterases (ME-III and ME-IV) have been purified to apparent homogeneity from the seeds of Mucuna pruriens employing ammonium sulfate fractionation, cation exchange chromatography on CM-cellulose, gel-permeation chromatography on Sephadex G-100 and preparative PAGE. The homogeneity of the purified preparations was confirmed by polyacrylamide gel electrophoresis (PAGE), gel-electrofocussing and SDS-PAGE. The molecular weights determined by gel-permeation chromatography on Sephadex G-200 were 20.89 kDa (ME-III) and 31.62 kDa (ME-IV). The molecular weights determined by SDS-PAGE both in the presence and absence of 2-mercaptoethanol were 21 kDa (ME-III) and 30.2 kDa (ME-IV) respectively, suggesting a monomeric structure for both the enzymes. The enzymes were found to have Stokes radius of 2.4 nm (ME-III) and 2.7 nm (ME-IV). The isoelectric pH values of the enzymes, ME-III and ME-IV, were 6.8 and 7.4, respectively. ME-III and ME-IV were classified as carboxylesterases employing PAGE in conjunction with substrate and inhibitor specificity. The K(m) of ME-III and ME-IV with 1-naphthyl acetate as substrate was 0.1 and 0.166 mM while with 1-naphthyl propionate as substrate the K(m) was 0.052 and 0.0454 mM, respectively. As the carbon chain length of the acyl group increased, the affinity of the substrate to the enzyme increased indicating hydrophobic nature of the acyl group binding site. The enzymes exhibited an optimum temperature of 45°C (ME-III) and 37°C (ME-IV), an optimum pH of 7.0 (ME-III) and 7.5 (ME-IV) and both the enzymes (ME-III and ME-IV) were stable up to 120 min at 35°C. Both the enzymes were inhibited by organophosphates (dichlorvos and phosphamidon), but resistant towards carbamates (carbaryl and eserine sulfate) and sulphydryl inhibitors (p-chloromercuricbenzoate, PCMB).
从豇豆花叶病毒中分离纯化到两个羧酸酯酶(ME-III 和 ME-IV),采用硫酸铵分级沉淀、CM-纤维素阳离子交换层析、Sephadex G-100 凝胶过滤层析和制备 PAGE 电泳进行纯化。通过聚丙烯酰胺凝胶电泳(PAGE)、凝胶等电聚焦电泳和 SDS-PAGE 电泳鉴定纯化产物的均一性。Sephadex G-200 凝胶过滤层析测定的分子量分别为 20.89 kDa(ME-III)和 31.62 kDa(ME-IV)。SDS-PAGE 电泳在有和没有 2-巯基乙醇存在的情况下测定的分子量分别为 21 kDa(ME-III)和 30.2 kDa(ME-IV),提示这两种酶均为单体结构。酶的 Stokes 半径分别为 2.4nm(ME-III)和 2.7nm(ME-IV)。酶的等电点,ME-III 和 ME-IV,分别为 6.8 和 7.4。根据 PAGE 电泳结合底物和抑制剂特异性,将 ME-III 和 ME-IV 归类为羧酸酯酶。ME-III 和 ME-IV 用 1-萘乙酸酯作为底物的 K(m)分别为 0.1 和 0.166 mM,而用 1-萘丙酸酯作为底物的 K(m)分别为 0.052 和 0.0454 mM,随着酰基链长的增加,底物与酶的亲和力增加,表明酰基结合部位具有疏水性。酶的最适温度分别为 45°C(ME-III)和 37°C(ME-IV),最适 pH 分别为 7.0(ME-III)和 7.5(ME-IV),两种酶(ME-III 和 ME-IV)在 35°C 下稳定 120 分钟。两种酶均被有机磷(敌敌畏和磷酰胺)抑制,但对氨基甲酸酯(西维因和硫酸依色林)和巯基抑制剂(对氯汞苯甲酸、PCMB)具有抗性。