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JAK1的激酶阴性突变体能够维持γ干扰素诱导的基因表达,但无法维持抗病毒状态。

Kinase-negative mutants of JAK1 can sustain interferon-gamma-inducible gene expression but not an antiviral state.

作者信息

Briscoe J, Rogers N C, Witthuhn B A, Watling D, Harpur A G, Wilks A F, Stark G R, Ihle J N, Kerr I M

机构信息

Imperial Cancer Research Fund, London, UK.

出版信息

EMBO J. 1996 Feb 15;15(4):799-809.

Abstract

The receptor-associated protein tyrosine kinases JAK1 and JAK2 are both required for the interferon (IFN)-gamma response. The effects of expressing kinase-negative JAK mutant proteins on signal transduction in response to IFN-gamma in wild-type cells and in mutant cells lacking either JAK1 or JAK2 have been analysed. In cells lacking endogenous JAK1 the expression of a transfected kinase-negative JAK1 can sustain substantial IFN-gamma-inducible gene expression, consistent with a structural as well as an enzymic role for JAK1. Kinase-negative JAK2, expressed in cells lacking endogenous JAK2, cannot sustain IFN-gamma-inducible gene expression, despite low level activation of STAT1 DNA binding activity. When expressed in wild-type cells, kinase-negative JAK2 acts as a dominant-negative inhibitor of the IFN-gamma response. Further analysis of the JAK/STAT pathway suggests a model for the IFN-gamma response in which the initial phosphorylation of JAK1 and JAK2 is mediated by JAK2, whereas phosphorylation of the IFN-gamma receptor is normally carried out by JAK1. The efficient phosphorylation of STAT 1 in the receptor-JAK complex may again depend on JAK2. Interestingly, a JAK1-dependent signal, in addition to STAT1 activation, appears to be required for the expression of the antiviral state.

摘要

受体相关蛋白酪氨酸激酶JAK1和JAK2都是干扰素(IFN)-γ反应所必需的。已分析了表达激酶失活型JAK突变蛋白对野生型细胞以及缺乏JAK1或JAK2的突变细胞中IFN-γ应答信号转导的影响。在缺乏内源性JAK1的细胞中,转染的激酶失活型JAK1的表达能够维持大量IFN-γ诱导型基因的表达,这与JAK1的结构和酶促作用一致。在缺乏内源性JAK2的细胞中表达的激酶失活型JAK2,尽管STAT1 DNA结合活性有低水平激活,但仍不能维持IFN-γ诱导型基因的表达。当在野生型细胞中表达时,激酶失活型JAK2作为IFN-γ应答的显性负性抑制剂起作用。对JAK/STAT途径的进一步分析提示了一种IFN-γ应答模型,其中JAK1和JAK2的初始磷酸化由JAK2介导,而IFN-γ受体的磷酸化通常由JAK1进行。受体-JAK复合物中STAT 1的有效磷酸化可能再次依赖于JAK2。有趣的是,除了STAT1激活外,抗病毒状态的表达似乎还需要一种依赖JAK1的信号。

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