Liu Zhi-Jie, Shah Ashit K, Habel Jeff E, Ng Joseph D, Kataeva Irina, Xu Hao, Horanyi Peter, Yang Hua, Chang Jessie, Zhao Min, Huang Lei, Chang Sue, Tempel Wolfram, Chen Lirong, Zhou Weihong, Lee Doowon, Lin Dawei, Zhang Hua, Newton M Gary, Rose John, Wang Bi-Cheng
Southeast Collaboratory for Structural Genomics, Department of Biochemistry and Molecular Biology, University of Georgia, Athens, GA 30602, USA.
J Struct Funct Genomics. 2005;6(2-3):121-7. doi: 10.1007/s10969-005-5242-x.
Proteins derived from the coding regions of Pyrococcus furiosus are targets for three-dimensional X-ray and NMR structure determination by the Southeast Collaboratory for Structural Genomics (SECSG). Of the 2,200 open reading frames (ORFs) in this organism, 220 protein targets were cloned and expressed in a high-throughput (HT) recombinant system for crystallographic studies. However, only 96 of the expressed proteins could be crystallized and, of these, only 15 have led to structures. To address this issue, SECSG has recently developed a two-tier approach to protein production and crystallization. In this approach, tier-1 efforts are focused on producing protein for new Pfu(italics?) targets using a high-throughput approach. Tier-2 protein production efforts support tier-1 activities by (1) producing additional protein for further crystallization trials, (2) producing modified protein (further purification, methylation, tag removal, selenium labeling, etc) as required and (3) serving as a salvaging pathway for failed tier-1 proteins. In a recent study using this two-tiered approach, nine structures were determined from a set of 50 Pfu proteins, which failed to produce crystals suitable for X-ray diffraction analysis. These results validate this approach and suggest that it has application to other HT crystal structure determination applications.
源自嗜热栖热菌编码区的蛋白质是东南结构基因组学合作实验室(SECSG)进行三维X射线和核磁共振结构测定的目标。在该生物体的2200个开放阅读框(ORF)中,220个蛋白质靶点在用于晶体学研究的高通量(HT)重组系统中进行了克隆和表达。然而,只有96种表达的蛋白质能够结晶,其中只有15种获得了结构。为了解决这个问题,SECSG最近开发了一种两级蛋白质生产和结晶方法。在这种方法中,一级工作重点是使用高通量方法为新的嗜热栖热菌(Pfu)靶点生产蛋白质。二级蛋白质生产工作通过以下方式支持一级活动:(1)生产额外的蛋白质用于进一步的结晶试验;(2)根据需要生产修饰后的蛋白质(进一步纯化、甲基化、去除标签、硒标记等);(3)作为一级蛋白质生产失败后的挽救途径。在最近一项使用这种两级方法的研究中,从一组50种未能产生适合X射线衍射分析晶体的嗜热栖热菌蛋白质中确定了9种结构。这些结果验证了这种方法,并表明它适用于其他高通量晶体结构测定应用。