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新型杆状病毒表达工具用于重组蛋白复合物生产。

New baculovirus expression tools for recombinant protein complex production.

机构信息

European Molecular Biology Laboratory (EMBL), Grenoble Outstation, and Unit of Virus Host Cell Interactions UVHCI, UMI3265, 6 rue Jules Horowitz, Grenoble Cedex 9, France.

出版信息

J Struct Biol. 2010 Oct;172(1):45-54. doi: 10.1016/j.jsb.2010.02.010. Epub 2010 Feb 21.

Abstract

Most eukaryotic proteins exist as large multicomponent assemblies with many subunits, which act in concert to catalyze specific cellular activities. Many of these molecular machines are only present in low amounts in their native hosts, which impede purification from source material. Unraveling their structure and function at high resolution will often depend on heterologous overproduction. Recombinant expression of multiprotein complexes for structural studies can entail considerable, sometimes inhibitory, investment in both labor and materials, in particular if altering and diversifying of the individual subunits are necessary for successful structure determination. Our laboratory has addressed this challenge by developing technologies that streamline the complex production and diversification process. Here, we review several of these developments for recombinant multiprotein complex production using the MultiBac baculovirus/insect cell expression system which we created. We also addressed parallelization and automation of gene assembly for multiprotein complex expression by developing robotic routines for multigene vector generation. In this contribution, we focus on several improvements of baculovirus expression system performance which we introduced: the modifications of the transfer plasmids, the methods for generation of composite multigene baculoviral DNA, and the simplified and standardized expression procedures which we delineated using our MultiBac system.

摘要

大多数真核生物蛋白质以具有许多亚基的大型多组分复合物的形式存在,这些亚基协同作用以催化特定的细胞活动。这些分子机器中的许多在其天然宿主中仅以低浓度存在,这阻碍了从源材料中进行纯化。以高分辨率揭示它们的结构和功能通常取决于异源过表达。为了进行结构研究而进行的多蛋白复合物的重组表达可能需要在劳动力和材料方面进行大量的投入,有时甚至是抑制性的投入,特别是如果为了成功确定结构而需要改变和多样化各个亚基。我们的实验室通过开发简化复杂生产和多样化过程的技术来应对这一挑战。在这里,我们回顾了使用我们创建的 MultiBac 杆状病毒/昆虫细胞表达系统进行重组多蛋白复合物生产的几种此类发展。我们还通过开发用于多基因载体生成的机器人例程来解决多蛋白复合物表达的并行化和自动化问题。在这篇文章中,我们重点介绍了我们引入的几种杆状病毒表达系统性能的改进:转移质粒的修饰、复合多基因杆状病毒 DNA 的生成方法,以及我们使用 MultiBac 系统阐明的简化和标准化表达程序。

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