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Rac1保护上皮细胞免受失巢凋亡。

Rac1 protects epithelial cells against anoikis.

作者信息

Coniglio S J, Jou T S, Symons M

机构信息

Picower Institute for Medical Research, Manhasset, New York 11030, USA.

出版信息

J Biol Chem. 2001 Jul 27;276(30):28113-20. doi: 10.1074/jbc.M102299200. Epub 2001 May 21.

Abstract

Rho family members play a critical role in malignant transformation. Anchorage-independent growth and the ability to avoid apoptosis caused by loss of anchorage (anoikis) are important features of transformed cells. Here we show that constitutive activation of Rac1 inhibits anoikis in Madin-Darby canine kidney (MDCK) epithelial cells. Constitutively active Rac1-V12 decreases DNA fragmentation and caspase activity by 50% in MDCK cells kept in suspension. In addition, expression of Rac1-V12 in MDCK cells in suspension conditions causes an increase in the number of surviving cells. We also investigated the signaling pathways that are activated by Rac1 to stimulate cell survival. We show that expression of Rac1-V12 in MDCK cells in suspension stimulates a number of signaling cascades that have been implicated in the control of cell survival, including the p42/44 ERK, p38, protein kinase B, and nuclear factor kappaB pathways. Using specific chemical or protein inhibitors of these respective pathways, we show that Rac1-mediated cell survival strongly depends on phosphatidylinositol 3-kinase activity and that activation of ERK, p38, and NF-kappaB are largely dispensable for Rac1 survival signaling. In conclusion, these studies demonstrate that Rac1 can suppress apoptosis in epithelial cells in anchorage-independent conditions and suggest a potential role for Rac1-mediated survival signaling in cell transformation.

摘要

Rho家族成员在恶性转化中起关键作用。不依赖贴壁生长以及避免因失去贴壁(失巢凋亡)而导致的细胞凋亡的能力是转化细胞的重要特征。在此我们表明,Rac1的组成性激活可抑制Madin-Darby犬肾(MDCK)上皮细胞中的失巢凋亡。组成性活性Rac1-V12可使悬浮培养的MDCK细胞中的DNA片段化和半胱天冬酶活性降低50%。此外,在悬浮条件下,MDCK细胞中Rac1-V12的表达会导致存活细胞数量增加。我们还研究了由Rac1激活以刺激细胞存活的信号通路。我们表明,悬浮培养的MDCK细胞中Rac1-V12的表达会刺激一些与细胞存活控制有关的信号级联反应,包括p42/44 ERK、p38、蛋白激酶B和核因子κB通路。使用这些各自通路的特异性化学或蛋白质抑制剂,我们表明Rac1介导的细胞存活强烈依赖于磷脂酰肌醇3激酶活性,并且ERK、p38和NF-κB的激活对于Rac1的存活信号传导在很大程度上是不必要的。总之,这些研究表明Rac1可以在不依赖贴壁的条件下抑制上皮细胞中的凋亡,并提示Rac1介导的存活信号传导在细胞转化中的潜在作用。

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