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编码镁螯合酶亚基的荚膜红细菌BchI、-D和-H基因的异源表达及重组酶的特性分析。

Heterologous expression of the Rhodobacter capsulatus BchI, -D, and -H genes that encode magnesium chelatase subunits and characterization of the reconstituted enzyme.

作者信息

Willows R D, Beale S I

机构信息

Division of Biology and Medicine, Brown University, Providence, Rhode Island 02912, USA.

出版信息

J Biol Chem. 1998 Dec 18;273(51):34206-13. doi: 10.1074/jbc.273.51.34206.

Abstract

Magnesium chelatase inserts Mg2+ into protoporphyrin IX in the chlorophyll and bacteriochlorophyll biosynthetic pathways. In photosynthetic bacteria, the products of three genes, bchI, bchD, and bchH, are required for magnesium chelatase activity. These genes from Rhodobacter capsulatus were cloned separately into expression plasmids pET3a and pET15b. The pET15b constructs produced NH2-terminally His6-tagged proteins. All proteins were highly expressed and were purified to near homogeneity. The BchI and BchH proteins were soluble. BchD proteins were insoluble, inactive inclusion bodies that were renatured by rapid dilution from 6 M urea. The presence of BchI in the solution into which the urea solution of BchD was diluted increased the yield of active BchD. A molar ratio of 1 BchI:1 BchD was sufficient for maximum renaturation of BchD. All of the proteins were active in the magnesium chelatase assay except His-tagged BchI, which was inactive and inhibited in incubations containing non-His-tagged BchI. Expressed BchH proteins contained tightly bound protoporphyrin IX, and they were susceptible to inactivation by light. Maximum magnesium chelatase activity per mol of BchD occurred at a stoichiometry of 4 BchI:1 BchD. The optimum reaction pH was 8.0. The reaction exhibited Michaelis-Menten kinetics with respect to protoporphyrin IX and BchH.

摘要

镁螯合酶在叶绿素和细菌叶绿素生物合成途径中将Mg2+插入原卟啉IX中。在光合细菌中,镁螯合酶活性需要三个基因bchI、bchD和bchH的产物。来自荚膜红细菌的这些基因被分别克隆到表达质粒pET3a和pET15b中。pET15b构建体产生N端带有His6标签的蛋白质。所有蛋白质均高度表达并纯化至接近均一。BchI和BchH蛋白是可溶的。BchD蛋白是不溶性、无活性的包涵体,通过从6M尿素中快速稀释进行复性。在稀释BchD尿素溶液的溶液中存在BchI可提高活性BchD的产量。1 BchI:1 BchD的摩尔比足以使BchD实现最大程度的复性。除了His标签化的BchI在含有非His标签化BchI的孵育中无活性并具有抑制作用外,所有蛋白质在镁螯合酶测定中均有活性。表达的BchH蛋白含有紧密结合的原卟啉IX,并且它们易受光灭活。每摩尔BchD的最大镁螯合酶活性在4 BchI:1 BchD的化学计量比下出现。最佳反应pH为8.0。该反应相对于原卟啉IX和BchH呈现米氏动力学。

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