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SECSG的高通量蛋白质到结构流程

The high-throughput protein-to-structure pipeline at SECSG.

作者信息

Liu Zhi-Jie, Tempel Wolfram, Ng Joseph D, Lin Dawei, Shah Ashit K, Chen Lirong, Horanyi Peter S, Habel Jeff E, Kataeva Irina A, Xu Hao, Yang Hua, Chang Jessie C, Huang Lei, Chang Shu-Huey, Zhou Weihong, Lee Doowon, Praissman Jeremy L, Zhang Hua, Newton M Gary, Rose John P, Richardson Jane S, Richardson David C, Wang Bi-Cheng

机构信息

Southeast Collaboratory for Structural Genomics, Department of Biochechemistry and Molecular Biology, University of Georgia, Athens, GA 30602, USA.

出版信息

Acta Crystallogr D Biol Crystallogr. 2005 Jun;61(Pt 6):679-84. doi: 10.1107/S0907444905013132. Epub 2005 May 26.

Abstract

Using a high degree of automation, the crystallography core at the Southeast Collaboratory for Structural Genomics (SECSG) has developed a high-throughput protein-to-structure pipeline. Various robots and automation procedures have been adopted and integrated into a pipeline that is capable of screening 40 proteins for crystallization and solving four protein structures per week. This pipeline is composed of three major units: crystallization, structure determination/validation and crystallomics. Coupled with the protein-production cores at SECSG, the protein-to-structure pipeline provides a two-tiered approach for protein production at SECSG. In tier 1, all protein samples supplied by the protein-production cores pass through the pipeline using standard crystallization screening and optimization procedures. The protein targets that failed to yield diffraction-quality crystals (resolution better than 3.0 A) become tier 2 or salvaging targets. The goal of tier 2 target salvaging, carried out by the crystallomics core, is to produce the target proteins with increased purity and homogeneity, which would render them more likely to yield well diffracting crystals. This is performed by alternative purification procedures and/or the introduction of chemical modifications to the proteins (such as tag removal, methylation, surface mutagenesis, selenomethionine labelling etc.). Details of the various procedures in the pipeline for protein crystallization, target salvaging, data collection/processing and high-throughput structure determination/validation, as well as some examples, are described.

摘要

利用高度自动化技术,东南结构基因组学协作实验室(SECSG)的晶体学核心团队开发了一条高通量的蛋白质到结构的流程。采用了各种机器人和自动化程序,并将其整合到一个每周能够筛选40种蛋白质用于结晶并解析四种蛋白质结构的流程中。该流程由三个主要单元组成:结晶、结构确定/验证和晶体组学。与SECSG的蛋白质生产核心相结合,蛋白质到结构的流程为SECSG的蛋白质生产提供了一种两级方法。在第一层,蛋白质生产核心提供的所有蛋白质样品都通过该流程,使用标准的结晶筛选和优化程序。未能产生衍射质量晶体(分辨率优于3.0埃)的蛋白质靶点成为第二层或挽救靶点。由晶体组学核心进行的第二层靶点挽救的目标是生产纯度和均一性更高的目标蛋白质,这将使它们更有可能产生衍射良好的晶体。这通过替代纯化程序和/或对蛋白质进行化学修饰(如标签去除、甲基化、表面诱变、硒代甲硫氨酸标记等)来实现。文中描述了蛋白质结晶、靶点挽救、数据收集/处理和高通量结构确定/验证流程中各种程序的详细信息以及一些示例。

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