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信号转导和转录激活因子3(STAT3)在Rho鸟苷三磷酸酶(GTPase)调节的细胞迁移和增殖中的作用。

A role of STAT3 in Rho GTPase-regulated cell migration and proliferation.

作者信息

Debidda Marcella, Wang Lei, Zang Heesuk, Poli Valeria, Zheng Yi

机构信息

Division of Experimental Hematology, Children's Hospital Research Foundation, University of Cincinnati, Cincinnati, Ohio 45229, USA.

出版信息

J Biol Chem. 2005 Apr 29;280(17):17275-85. doi: 10.1074/jbc.M413187200. Epub 2005 Feb 10.

Abstract

Rho family GTPases and STAT3 act as mediators of cytokine and growth factor signaling in a variety of cellular functions involved in inflammation, tumorigenesis, and development. In the course of searching for their functional connections, we found by using STAT3 knock-out mouse embryonic fibroblasts that RhoA, Rac1, and Cdc42 could cause nonspecific activation of STAT3 promoter-driven luciferase reporter in the absence of STAT3, raising concerns to a body of literature where STAT3 was associated with Rho GTPases based on the reporter system. We also found that although active RhoA, Rac1, and Cdc42 could all mediate Ser-727 and Tyr-705 phosphorylation and nuclear translocation of STAT3, the Rho GTPases were able to induce STAT3 activation independently of the interleukin-6 autocrine pathway, and active RhoA, Rac1, or Cdc42 could not form a stable complex with STAT3 as previously suggested, indicating an unappreciated mechanism of STAT3 activation by the Rho GTPases. The RhoA-induced STAT3 activation partly depended on Rho-associated kinase (ROK) and involved multiple effector signals as revealed by the examination of effector domain mutants of RhoA. Genetic deletion of STAT3 led to a loss of response to RhoA in myosin light chain phosphorylation and actin stress fiber induction but sensitized the cells to RhoA or ROK-stimulated cell migration. STAT3 was required for the RhoA-induced NF-kappaB and cyclin D1 transcription and was involved in NF-kappaB nuclear translocation. Furthermore, loss of STAT3 expression inhibited RhoA-promoted cell proliferation and blocked RhoA or ROK induced anchorage-independent growth. These phenotypic changes in STAT3-/- cells could be rescued by reconstituting STAT3 gene. Our studies carried out in STAT3 null cells demonstrate unambiguously that STAT3 represents an essential effector pathway of Rho GTPases in regulating multiple cellular functions including actin cytoskeleton reorganization, cell migration, gene activation, and proliferation.

摘要

Rho家族GTP酶和STAT3在涉及炎症、肿瘤发生和发育的多种细胞功能中作为细胞因子和生长因子信号传导的介质。在寻找它们的功能联系过程中,我们通过使用STAT3基因敲除的小鼠胚胎成纤维细胞发现,在没有STAT3的情况下,RhoA、Rac1和Cdc42可导致STAT3启动子驱动的荧光素酶报告基因的非特异性激活,这引发了对基于报告系统将STAT3与Rho GTP酶相关联的大量文献的关注。我们还发现,虽然活性RhoA、Rac1和Cdc42都能介导STAT3的Ser-727和Tyr-705磷酸化以及核转位,但Rho GTP酶能够独立于白细胞介素-6自分泌途径诱导STAT3激活,并且活性RhoA、Rac1或Cdc42不能如先前所述与STAT3形成稳定复合物,这表明Rho GTP酶激活STAT3的机制尚未被充分认识。RhoA诱导的STAT3激活部分依赖于Rho相关激酶(ROK),并且如对RhoA效应器结构域突变体的检测所示,涉及多个效应器信号。STAT3的基因缺失导致在肌球蛋白轻链磷酸化和肌动蛋白应力纤维诱导中对RhoA的反应丧失,但使细胞对RhoA或ROK刺激的细胞迁移敏感。STAT3是RhoA诱导的NF-κB和细胞周期蛋白D1转录所必需的,并且参与NF-κB的核转位。此外,STAT3表达的丧失抑制了RhoA促进的细胞增殖,并阻断了RhoA或ROK诱导的非贴壁依赖性生长。通过重建STAT3基因可以挽救STAT3-/-细胞中的这些表型变化。我们在STAT3缺失细胞中进行的研究明确表明,STAT3代表Rho GTP酶在调节包括肌动蛋白细胞骨架重组、细胞迁移、基因激活和增殖在内的多种细胞功能中的重要效应器途径。

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