de la Cruz Norberto B, Peterson Francis C, Volkman Brian F
Department of Biochemistry and Center for Eukaryotic Structural Genomics, Medical College of Wisconsin, Milwaukee, Wisconsin 53226, USA.
Proteins. 2008 May 1;71(2):546-51. doi: 10.1002/prot.21936.
We determined the solution structure of At3g28950 from A. thaliana, a homolog of At5g39720, whose structure we solved earlier. The secondary structure of the 165-aa protein consists of a 5-strand antiparallel beta-barrel domain flanked by two alpha-helices and a 2-strand beta-sheet; an additional free C-terminal alpha-helix extends into solution. Bioinformatic searches and analyses suggest that members of this growing set of structurally related proteins have been recruited to serve a wide variety of functions ranging from gamma-glutamyl cyclotransferase activity to participation in plant responses to chemical and biotic stimuli. Expression of a human homolog is elevated in bladder cancer tissues. Expression patterns for At3g28950 and its Arabidopsis paralogs suggest that each one evolved a different physiological role. The At3g28950 structure was solved as part of a structural genomics effort, and the results demonstrate how such a project can further understanding of genome evolution in addition to sequence-structure and structure-function relationships. Proteins 2008. (c) 2008 Wiley-Liss, Inc.
我们确定了拟南芥中At3g28950的溶液结构,它是At5g39720的同源物,我们之前已解析出后者的结构。这个165个氨基酸的蛋白质的二级结构由一个5链反平行β桶结构域组成,两侧是两个α螺旋和一个2链β片层;一个额外的游离C端α螺旋延伸到溶液中。生物信息学搜索和分析表明,这一不断增加的结构相关蛋白质家族的成员已被招募来发挥多种功能,从γ-谷氨酰环转移酶活性到参与植物对化学和生物刺激的反应。一种人类同源物在膀胱癌组织中的表达升高。At3g28950及其拟南芥旁系同源物的表达模式表明,它们各自进化出了不同的生理作用。At3g28950的结构是作为结构基因组学研究的一部分解析出来的,结果表明这样一个项目除了能揭示序列-结构和结构-功能关系外,还能如何进一步增进对基因组进化的理解。《蛋白质》2008年。(c)2008威利-利斯公司。