高通量基因克隆与表达策略。

L J Dieckman, W C Hanly, E R Collart
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引用次数: 6

摘要

基因克隆和表达的高通量方法需要开发新的、非标准的工具供分子生物学家和生物化学家使用。我们已经开发并实施了一系列方法,使96孔板格式的表达构建得以实现。描述了一种筛选过程,有助于鉴定表达可溶性蛋白的细菌克隆。然后,应用溶解度筛选提供了一个板图,以确定含有产生可溶性蛋白质的克隆的孔的位置。然后可以应用一系列半自动化方法来验证蛋白质生产组的溶解度和冷冻原液的生产。该过程为鉴定产生可溶性蛋白的克隆提供了80%的成功率,并显著降低了验证和制备冷冻库所需的劳动密集型组件的努力水平。这个过程是为大规模结构基因组学项目定制的,这些项目依赖于大量可溶性蛋白质的生产,用于结晶试验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strategies for high-throughput gene cloning and expression.

High-throughput approaches for gene cloning and expression require the development of new, nonstandard tools for use by molecular biologists and biochemists. We have developed and implemented a series of methods that enable the production of expression constructs in 96-well plate format. A screening process is described that facilitates the identification of bacterial clones expressing soluble protein. Application of the solubility screen then provides a plate map that identifies the location of wells containing clones producing soluble proteins. A series of semi-automated methods can then be applied for validation of solubility and production of freezer stocks for the protein production group. This process provides an 80% success rate for the identification of clones producing soluble protein and results in a significant decrease in the level of effort required for the labor-intensive components of validation and preparation of freezer stocks. This process is customized for large-scale structural genomics programs that rely on the production of large amounts of soluble proteins for crystallization trials.

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