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痘病毒 VH1 的二聚化对于 STAT1 酪氨酸 701 的去磷酸化是必需的。

Dimerization of Vaccinia virus VH1 is essential for dephosphorylation of STAT1 at tyrosine 701.

机构信息

Department of Biochemistry and Molecular Biology, Thomas Jefferson University, Philadelphia, Pennsylvania 19107, USA.

出版信息

J Biol Chem. 2011 Apr 22;286(16):14373-82. doi: 10.1074/jbc.M111.226357. Epub 2011 Mar 1.

Abstract

The gene product of Vaccinia virus gene H1, VH1, is the first identified dual specificity phosphatase (DSP). The human genome encodes 38 different VH1-like DSPs, which include major regulators of signaling pathways, highly dysregulated in disease states. VH1 down-regulates cellular antiviral response by dephosphorylating activated STAT1 in the IFN-γ/STAT1 signaling pathway. In this report, we have investigated the molecular basis for VH1 catalytic activity. Using small-angle x-ray scattering (SAXS), we determined that VH1 exists in solution as a boomerang-shaped dimer. Targeted alanine mutations in the dimerization domain (aa 1-27) decrease phosphatase activity while leaving the dimer intact. Deletion of the N-terminal dimer swapped helix (aa 1-20) completely abolishes dimerization and severely reduces phosphatase activity. An engineered chimera of VH1 that contains only one active site retains wild-type levels of catalytic activity. Thus, a dimeric quaternary structure, as opposed to two cooperative active sites within the same dimer is essential for VH1 catalytic activity. Together with laforin, VH1 is the second DSP reported in literature for which dimerization via an N-terminal dimerization domain is necessary for optimal catalytic activity. We propose that dimerization may represent a common mechanism to regulate the activity and substrate recognition of DSPs, often assumed to function as monomers.

摘要

痘苗病毒基因 H1 的基因产物 VH1 是第一个被鉴定的双重特异性磷酸酶 (DSP)。人类基因组编码 38 种不同的 VH1 样 DSP,它们包括信号通路的主要调节剂,在疾病状态下高度失调。VH1 通过去磷酸化 IFN-γ/STAT1 信号通路中的激活 STAT1 来下调细胞抗病毒反应。在本报告中,我们研究了 VH1 催化活性的分子基础。使用小角 X 射线散射 (SAXS),我们确定 VH1 在溶液中作为回旋镖形二聚体存在。二聚化结构域 (aa1-27) 的靶向丙氨酸突变降低了磷酸酶活性,同时保持二聚体完整。N 端二聚交换螺旋 (aa1-20) 的缺失完全消除了二聚化并严重降低了磷酸酶活性。仅包含一个活性位点的 VH1 工程化嵌合体保留了野生型水平的催化活性。因此,与同一二聚体中的两个协作活性位点相反,四聚体结构对于 VH1 催化活性是必需的。与 laforin 一起,VH1 是文献中报道的第二个需要通过 N 端二聚化结构域进行二聚化以实现最佳催化活性的 DSP。我们提出二聚化可能代表一种常见的机制,用于调节 DSP 的活性和底物识别,通常假定其作为单体发挥作用。

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