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γ干扰素激活C3G/Rap1信号通路。

IFN-gamma activates the C3G/Rap1 signaling pathway.

作者信息

Alsayed Y, Uddin S, Ahmad S, Majchrzak B, Druker B J, Fish E N, Platanias L C

机构信息

Section of Hematology-Oncology, University of Illinois at Chicago 60607, USA.

出版信息

J Immunol. 2000 Feb 15;164(4):1800-6. doi: 10.4049/jimmunol.164.4.1800.

DOI:10.4049/jimmunol.164.4.1800
PMID:10657627
Abstract

IFN-gamma transduces signals by activating the IFN-gamma receptor-associated Jak-1 and Jak-2 kinases and by inducing tyrosine phosphorylation and activation of the Stat-1 transcriptional activator. We report that IFN-gamma activates a distinct signaling cascade involving the c-cbl protooncogene product, CrkL adapter, and small G protein Rap1. During treatment of NB-4 human cells with IFN-gamma, c-cbl protooncogene product is rapidly phosphorylated on tyrosine and provides a docking site for the src homology 2 domain of CrkL, which also undergoes IFN-gamma-dependent tyrosine phosphorylation. CrkL then regulates activation of the guanine exchange factor C3G, with which it interacts constitutively via its N terminus src homology 3 domain. This results in the IFN-gamma-dependent activation of Rap1, a protein known to exhibit tumor suppressor activity and mediate growth inhibitory responses. In a similar manner, Rap1 is also activated in response to treatment of cells with type I IFNs (IFN-alpha, IFN-beta), which also engage CrkL in their signaling pathways. On the other hand, IFN-gamma does not induce formation of nuclear CrkL-Stat5 DNA-binding complexes, which are induced by IFN-alpha and IFN-beta, indicating that pathways downstream of CrkL are differentially regulated by different IFN subtypes. Taken altogether, our data demonstrate that, in addition to activating the Stat pathway, IFN-gamma activates a distinct signaling cascade that may play an important role in the generation of its growth inhibitory effects on target cells.

摘要

γ干扰素通过激活与γ干扰素受体相关的Jak-1和Jak-2激酶,并诱导Stat-1转录激活因子的酪氨酸磷酸化和激活来转导信号。我们报告γ干扰素激活了一个独特的信号级联反应,涉及c-cbl原癌基因产物、CrkL衔接蛋白和小G蛋白Rap1。在用γ干扰素处理NB-4人细胞的过程中,c-cbl原癌基因产物迅速发生酪氨酸磷酸化,并为CrkL的src同源2结构域提供一个停靠位点,CrkL也经历γ干扰素依赖性酪氨酸磷酸化。然后CrkL调节鸟嘌呤交换因子C3G的激活,它通过其N端src同源3结构域与其组成性相互作用。这导致γ干扰素依赖性的Rap1激活,Rap1是一种已知具有肿瘤抑制活性并介导生长抑制反应的蛋白质。以类似的方式,在用I型干扰素(α干扰素、β干扰素)处理细胞时,Rap1也会被激活,I型干扰素在其信号通路中也涉及CrkL。另一方面,γ干扰素不会诱导核CrkL-Stat5 DNA结合复合物的形成,而α干扰素和β干扰素会诱导这种复合物的形成,这表明CrkL下游的信号通路受到不同干扰素亚型的差异调节。综上所述,我们的数据表明,除了激活Stat信号通路外,γ干扰素还激活了一个独特的信号级联反应,这可能在其对靶细胞产生生长抑制作用中发挥重要作用。

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