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14-3-3蛋白ζ亚型的晶体结构

Crystal structure of the zeta isoform of the 14-3-3 protein.

作者信息

Liu D, Bienkowska J, Petosa C, Collier R J, Fu H, Liddington R

机构信息

Dana-Farber Cancer Institute, Boston, Massachusetts 02115, USA.

出版信息

Nature. 1995 Jul 13;376(6536):191-4. doi: 10.1038/376191a0.

Abstract

The 14-3-3 family of proteins have recently been identified as regulatory elements in intracellular signalling pathways: 14-3-3 proteins bind to oncogene and proto-oncogene products, including c-Raf-1 (refs 2-5), c-Bcr (ref. 6) and polyomavirus middle-T antigen; overexpression of 14-3-3 activates Raf kinase in yeast and induces meiotic maturation in Xenopus oocytes. Here we report the crystal structure of the major isoform of mammalian 14-3-3 proteins at 2.9 A resolution. Each subunit of the dimeric protein consists of a bundle of nine antiparallel helices that form a palisade around an amphipathic groove. The groove is large enough to accommodate a tenth helix, and we propose that binding to an amphipathic helix represents a general mechanism for the interaction of 14-3-3 with diverse cellular proteins. The residues in the dimer interface and the putative ligand-binding surface are invariant among vertebrates, yeast and plants, suggesting a conservation of structure and function throughout the 14-3-3 family.

摘要

14-3-3蛋白家族最近被确定为细胞内信号通路中的调节元件:14-3-3蛋白与癌基因和原癌基因产物结合,包括c-Raf-1(参考文献2-5)、c-Bcr(参考文献6)和多瘤病毒中T抗原;14-3-3的过表达在酵母中激活Raf激酶,并在非洲爪蟾卵母细胞中诱导减数分裂成熟。在此,我们报告了分辨率为2.9埃的哺乳动物14-3-3蛋白主要异构体的晶体结构。二聚体蛋白的每个亚基由一束九个反平行螺旋组成,这些螺旋围绕一个两性离子凹槽形成一个栅栏。该凹槽足够大以容纳第十个螺旋,并且我们提出与两性离子螺旋的结合代表了14-3-3与多种细胞蛋白相互作用的一般机制。二聚体界面和假定的配体结合表面中的残基在脊椎动物、酵母和植物中是不变的,这表明在整个14-3-3家族中结构和功能具有保守性。

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