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重组钙离子结合蛋白脱辅基水母发光蛋白的过表达与纯化。

Overexpression and purification of the recombinant Ca2+-binding protein, apoaequorin.

作者信息

Inouye S, Aoyama S, Miyata T, Tsuji F I, Sakaki Y

机构信息

Basic Research Laboratory, Chisso Corporation, Kanagawa.

出版信息

J Biochem. 1989 Mar;105(3):473-7. doi: 10.1093/oxfordjournals.jbchem.a122689.

Abstract

The small, monomeric Ca2+-binding photoprotein, aequorin, emits blue light by an intramolecular reaction when mixed with Ca2+. The photoprotein is made up of coelenterazine and molecular oxygen, bound noncovalently to apoaequorin (apoprotein). The chemical steps leading to light emission, involving the oxidative degradation of coelenterazine, have been studied extensively, but little is known about the active site and how the molecule catalyzes the oxidation of coelenterazine. The three-dimensional structure of the protein has not been determined and therefore answers to these questions have remained unavailable. The present paper describes a procedure for preparing fairly large amounts of apoaequorin and aequorin for X-ray crystallographic studies. It consists of fusing the apoaequorin cDNA to the signal peptide coding sequence of the outer membrane protein A of Escherichia coli, which is under the control of the lipoprotein promoter. When the cDNA was expressed in E. coli, a large excess of the recombinant protein was produced and released into the culture medium. Purification of the protein was accomplished by acid precipitation and DEAE-cellulose chromatography. The procedure yielded 7.4 mg of recombinant apoaequorin with a purity greater than 95% from 200 ml of culture medium. On regeneration with coelenterazine, the recombinant aequorin was fully active with Ca2+.

摘要

小型单体钙结合光蛋白水母发光蛋白(aequorin)与钙离子混合时,通过分子内反应发出蓝光。该光蛋白由腔肠素和分子氧组成,它们非共价结合到脱辅基水母发光蛋白(脱辅基蛋白)上。导致发光的化学步骤涉及腔肠素的氧化降解,已得到广泛研究,但关于活性位点以及该分子如何催化腔肠素氧化的了解却很少。该蛋白质的三维结构尚未确定,因此这些问题的答案仍然未知。本文描述了一种为X射线晶体学研究制备相当大量脱辅基水母发光蛋白和水母发光蛋白的方法。它包括将脱辅基水母发光蛋白cDNA与受脂蛋白启动子控制的大肠杆菌外膜蛋白A的信号肽编码序列融合。当该cDNA在大肠杆菌中表达时,会产生大量过量的重组蛋白并释放到培养基中。通过酸沉淀和DEAE-纤维素色谱法完成蛋白质的纯化。该方法从200毫升培养基中获得了7.4毫克纯度大于95%的重组脱辅基水母发光蛋白。用腔肠素再生后,重组水母发光蛋白对钙离子具有完全活性。

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