首页> 美国卫生研究院文献>Molecules >Purification and Immobilization of the Recombinant Brassica oleracea Chlorophyllase 1 (BoCLH1) on DIAION®CR11 as Potential Biocatalyst for the Production of Chlorophyllide and Phytol
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Purification and Immobilization of the Recombinant Brassica oleracea Chlorophyllase 1 (BoCLH1) on DIAION®CR11 as Potential Biocatalyst for the Production of Chlorophyllide and Phytol

机译:重组芸苔叶绿素酶1(BoCLH1)在DIAION®CR11上的纯化和固定化作为生产叶绿素和植物甾醇的潜在生物催化剂

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摘要

Recombinant Brassica oleracea chlorophyllase 1 (BoCLH1) with a protein molecular weight of 38.63 kDa was successfully expressed in E. coli and could catalyze chlorophyll (Chl) hydrolysis to chlorophyllide and phytol in vitro. In this study, we used DIAION®CR11, a highly porous cross-linked polystyrene divinylbenzene-based metal chelator, for purifying and immobilizing the poly (His)-tagged enzyme. The Cu(II) showed the highest protein adsorption (9.2 ± 0.43 mg/g gel) and enzyme activity (46.3 ± 3.14 U/g gel) for the immobilization of the poly (His)-tagged recombinant BoCLH1 compared with other metal chelators. Biochemical analysis of the immobilized enzyme showed higher chlorophyllase activity for Chl a hydrolysis in a weak base environment (pH 8.0), and activity above 70% was in a high-temperature environment, compared with the free enzyme. In addition, compared with free BoCLH1, the enzyme half-life (t1/2) of the immobilized BoCLH1 increased from 25.42 to 54.35 min (approximately two-fold) at 60 °C. The immobilized enzyme retained a residual activity of approximately 60% after 17 cycles in a repeated-batch operation. Therefore, DIAION®CR11Cu(II)-immobilized recombinant BoCLH1 can be repeatedly used to lower the cost and is potentially useful for the industrial production of chlorophyllide and phytol.
机译:具有38.63 kDa的蛋白质分子量的甘蓝叶绿素重组酶1(BoCLH1)在大肠杆菌中成功表达,并能在体外催化叶绿素(Chl)水解为叶绿素和植醇。在这项研究中,我们使用了高度多孔的交联聚苯乙烯二乙烯基苯基金属螯合剂DIAION ® CR11来纯化和固定标记有聚(His)的酶。与其他金属螯合剂相比,Cu(II)表现出最高的蛋白质吸附(9.2±0.43 mg / g凝胶)和酶活性(46.3±3.14 U / g凝胶),用于固定带有聚(His)标签的重组BoCLH1。固定化酶的生化分析显示,与游离酶相比,在弱碱性环境(pH 8.0)中,Chl a水解的叶绿素酶活性更高,而在高温环境中,活性高于70%。此外,与游离BoCLH1相比,固定化BoCLH1在60°C时的酶半衰期(t1 / 2)从25.42分钟增加至54.35分钟(约两倍)。在重复批操作中,经过17个循环后,固定化酶保留了约60%的残留活性。因此,可以重复使用DIAION sCR11Cu(II)固定的重组BoCLH1,以降低成本,并可能用于工业生产叶绿素和植物醇。

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