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新型不依赖连接的克隆载体,与用于使用杆状病毒感染昆虫细胞进行平行构建体表达评估的高通量平台兼容。

New ligation-independent cloning vectors compatible with a high-throughput platform for parallel construct expression evaluation using baculovirus-infected insect cells.

作者信息

Brown William Clay, DelProposto James, Rubin J Ronald, Lamiman Kelly, Carless Jacob, Smith Janet L

机构信息

High-throughput Protein Lab, Center for Structural Biology, Life Sciences Institute, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

Protein Expr Purif. 2011 May;77(1):34-45. doi: 10.1016/j.pep.2011.01.007. Epub 2011 Jan 22.

Abstract

Biomedical research has undergone a major shift in emphasis over the past decade from characterizing the genomes of organisms to characterizing their proteomes. The high-throughput approaches that were successfully applied to sequencing of genomes, such as miniaturization and automation, have been adapted for high-throughput cloning and protein production. High-throughput platforms allow for a multi-construct, multi-parallel approach to expression optimization and construct evaluation. We describe here a series of baculovirus transfer and expression vectors that contain ligation-independent cloning regions originally designed for use in high-throughput Escherichia coli expression evaluation. These new vectors allow for parallel cloning of the same gene construct into a variety of baculovirus or E. coli expression vectors. A high-throughput platform for construct expression evaluation in baculovirus-infected insect cells was developed to utilize these vectors. Data from baculovirus infection expression trials for multiple constructs of two target protein systems relevant to the study of human diseases are presented. The target proteins exhibit a wide variation in behavior and illustrate the benefit of investigating multiple cell types, fusion partners and secretion signals in optimization of constructs and conditions for eukaryotic protein production.

摘要

在过去十年中,生物医学研究的重点发生了重大转变,从对生物体基因组进行表征转向对其蛋白质组进行表征。那些成功应用于基因组测序的高通量方法,如小型化和自动化,已被用于高通量克隆和蛋白质生产。高通量平台允许采用多构建体、多平行的方法进行表达优化和构建体评估。我们在此描述了一系列杆状病毒转移和表达载体,它们含有最初设计用于高通量大肠杆菌表达评估的不依赖连接的克隆区域。这些新载体允许将同一基因构建体平行克隆到多种杆状病毒或大肠杆菌表达载体中。为利用这些载体,开发了一个用于在杆状病毒感染的昆虫细胞中进行构建体表达评估的高通量平台。本文展示了与人类疾病研究相关的两个靶蛋白系统的多个构建体的杆状病毒感染表达试验数据。靶蛋白的行为表现出很大差异,说明了在优化真核蛋白生产的构建体和条件时研究多种细胞类型、融合伴侣和分泌信号的益处。

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