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利用杆状病毒表达系统大规模生产和纯化功能性重组牛视紫红质。

Large-scale production and purification of functional recombinant bovine rhodopsin with the use of the baculovirus expression system.

作者信息

Klaassen C H, Bovee-Geurts P H, Decaluwé G L, DeGrip W J

机构信息

Department of Biochemistry, Institute of Cellular Signalling, University of Nijmegen, PO Box 9101, NL-6500 HB Nijmegen, The Netherlands.

出版信息

Biochem J. 1999 Sep 1;342 ( Pt 2)(Pt 2):293-300.

Abstract

Here we describe a generic procedure for the expression and purification of milligram quantities of functional recombinant eukaryotic integral membrane proteins, exemplified by hexahistidine-tagged bovine rhodopsin. These quantities were obtained with the recombinant baculovirus/Sf9 insect cell-based expression system in large-scale bioreactor cultures with the use of a serum-free and protein-free growth medium. After optimization procedures, expression levels up to 4 mg/l were established. The recombinant rhodopsin could be purified with high overall yield by using immobilized-metal-affinity chromatography on Ni(2+)-agarose. After reconstitution into a native lipid environment, the purified protein was functionally indistinguishable from native rhodopsin with regard to the following parameters: spectral absorbance band, structural changes after photoactivation, and G-protein activation. The procedures developed can be adapted to other membrane proteins. The ability to produce and purify tens of milligrams of functional recombinant eukaryotic membrane protein meets the ever-increasing demand of material necessary to perform detailed biochemical and structural biophysical studies that are essential in unravelling their working mechanism at a molecular level.

摘要

在此,我们描述了一种表达和纯化毫克级功能性重组真核生物整合膜蛋白的通用方法,以六组氨酸标签化的牛视紫红质为例。这些蛋白量是通过基于重组杆状病毒/Sf9昆虫细胞的表达系统,在大规模生物反应器培养中使用无血清且无蛋白的生长培养基获得的。经过优化程序后,表达水平达到了4毫克/升。通过在Ni(2+) - 琼脂糖上进行固定化金属亲和层析,重组视紫红质能够以较高的总产率进行纯化。在重构到天然脂质环境中后纯化的蛋白质,在以下参数方面与天然视紫红质在功能上无法区分:光谱吸收带、光激活后的结构变化以及G蛋白激活。所开发的程序可适用于其他膜蛋白。生产和纯化数十毫克功能性重组真核生物膜蛋白的能力,满足了对进行详细生化和结构生物物理研究所必需材料不断增长的需求,而这些研究对于在分子水平上揭示其工作机制至关重要。

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本文引用的文献

1
Tyrosine structural changes detected during the photoactivation of rhodopsin.
J Biol Chem. 1998 Sep 11;273(37):23735-9. doi: 10.1074/jbc.273.37.23735.

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