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利用小角X射线散射对溶液中未磷酸化的STAT5a寡聚化平衡进行结构表征。

Structural characterization of unphosphorylated STAT5a oligomerization equilibrium in solution by small-angle X-ray scattering.

作者信息

Bernadó Pau, Pérez Yolanda, Blobel Jascha, Fernández-Recio Juan, Svergun Dmitri I, Pons Miquel

机构信息

Laboratory of Biomolecular NMR, Institute for Research in Biomedicine, Parc Científic de Barcelona, Baldiri Reixac, 10-12, 08028 Barcelona, Spain.

出版信息

Protein Sci. 2009 Apr;18(4):716-26. doi: 10.1002/pro.83.

Abstract

Signal transducer and activator of transcription (STAT) proteins play a crucial role in the activation of gene transcription in response to extracellular stimuli. The regulation and activity of these proteins require a complex rearrangement of the domains. According to the established models, based on crystallographic data, STATs convert from a basal antiparallel inactive dimer into a parallel active one following phosphorylation. The simultaneous analysis of small-angle X-ray scattering data measured at different concentrations of unphosphorylated human STAT5a core domain unambiguously identifies the simultaneous presence of a monomer and a dimer. The dimer is the minor species but could be structurally characterized by SAXS in the presence of the monomer using appropriate computational tools and shown to correspond to the antiparallel assembly. The equilibrium is governed by a moderate dissociation constant of K(d) approximately 90 microM. Integration of these results with previous knowledge of the N-terminal domain structure and dissociation constants allows the modeling of the full-length protein. A complex network of intermolecular interactions of low or medium affinity is suggested. These contacts can be eventually formed or broken to trigger the dramatic modifications in the dimeric arrangement needed for STAT regulation and activity.

摘要

信号转导及转录激活蛋白(STAT)在响应细胞外刺激时对基因转录的激活起着关键作用。这些蛋白的调控和活性需要结构域进行复杂的重排。根据基于晶体学数据建立的模型,STATs在磷酸化后从基础的反平行无活性二聚体转变为平行活性二聚体。对在不同浓度的未磷酸化人STAT5a核心结构域下测得的小角X射线散射数据进行同步分析,明确鉴定出同时存在单体和二聚体。二聚体是次要形式,但在单体存在的情况下,可使用适当的计算工具通过小角X射线散射对其结构进行表征,并显示其对应于反平行组装。该平衡由约90微摩尔的适度解离常数K(d)控制。将这些结果与先前关于N端结构域结构和解离常数的知识相结合,可对全长蛋白进行建模。提示存在一个由低亲和力或中等亲和力分子间相互作用构成的复杂网络。这些接触最终可能形成或断裂,以引发STAT调控和活性所需的二聚体排列的显著改变。

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