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来自嗜热栖热菌7株的黄素还原酶的高压重折叠、纯化及结晶

High pressure refolding, purification, and crystallization of flavin reductase from Sulfolobus tokodaii strain 7.

作者信息

Okai Masahiko, Ohtsuka Jun, Asano Atsuko, Guo Linjun, Miyakawa Takuya, Miyazono Ken-ichi, Nakamura Akira, Okada Akitoshi, Zheng Hai, Kimura Kenzo, Nagata Koji, Tanokura Masaru

机构信息

Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, University of Tokyo, Tokyo, Japan.

出版信息

Protein Expr Purif. 2012 Aug;84(2):214-8. doi: 10.1016/j.pep.2012.06.006. Epub 2012 Jun 19.

Abstract

Flavin reductase HpaC(St) catalyzes the reduction of free flavins using NADH or NADPH. High hydrostatic pressure was used for the solubilization and refolding of HpaC(St), which was expressed as inclusion bodies in Escherichia coli to achieve high yield in a flavin-free form. The refolded HpaC(St) was purified using Ni-affinity chromatography followed by a heat treatment, which gave a single band on SDS-PAGE. The purified refolded HpaC(St) did not contain FMN, unlike the same enzyme expressed as a soluble protein. After the addition of FMN to the protein solution, the refolded enzyme showed a higher activity than the enzyme expressed as the soluble protein. Crystals of the refolded enzyme were obtained by adding FMN, FAD, or riboflavin to the protein solution and without the addition of flavin compound.

摘要

黄素还原酶HpaC(St)利用NADH或NADPH催化游离黄素的还原反应。采用高静水压对在大肠杆菌中以包涵体形式表达的HpaC(St)进行增溶和重折叠,从而以无黄素形式实现高产率。重折叠后的HpaC(St)先通过镍亲和层析进行纯化,然后进行热处理,在SDS-PAGE上呈现单一条带。与以可溶性蛋白形式表达的同一种酶不同,纯化后的重折叠HpaC(St)不含FMN。向蛋白溶液中添加FMN后,重折叠酶表现出比以可溶性蛋白形式表达的酶更高的活性。通过向蛋白溶液中添加FMN、FAD或核黄素且不添加黄素化合物的方式获得了重折叠酶的晶体。

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