首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >UDCA slows down intestinal cell proliferation by inducing high and sustained ERK phosphorylation
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UDCA slows down intestinal cell proliferation by inducing high and sustained ERK phosphorylation

机译:UDCA通过诱导ERK高水平和持续的磷酸化来减慢肠道细胞的增殖

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摘要

Ursodeoxycholic acid (UDCA) attenuates colon carcinogenesis in humans and in animal models by an unknown mechanism. We investigated UDCA effects on normal intestinal epithelium in vivo and in vitro to identify the potential chemopreventive mechanism. Feeding of mice with 0.4% UDCA reduced cell proliferation to 50% and suppressed several potential proproliferatory genes including insulin receptor substrate 1 (Irs-1). A similar transcriptional response was observed in the rat intestinal cell line IEC-6 which was then used as an in vitro model. UDCA slowed down the proliferation of IEC-6 cells and induced sustained hyperphosphorylation of ERK1/ERK2 kinases which completely inhibited the proproliferatory effects of EGF and IGF-1. The hyperphosphorylation of ERK1 led to a transcriptional suppression of the Irs-1 gene. Both, the hyperphosphorylation of ERK as well as the suppression of Irs-1 were sufficient to inhibit proliferation of IEC-6 cells. ERK1/ERK2 inhibition in vitro or ERK1 elimination in vitro or in vivo abrogated the antiproliferatory effects of UDCA. We show that UDCA inhibits proliferation of nontransformed intestinal epithelial cells by inducing a sustained hyperphosphorylation of ERK1 kinase which slows down the cell cycle and reduces expression of Irs-1 protein. These data extend our understanding of the physiological and potentially chemopreventive effects of UDCA and identify new targets for chemoprevention.
机译:熊去氧胆酸(UDCA)通过未知的机制减弱人类和动物模型中结肠癌的发生。我们调查了UDCA在体内和体外对正常肠上皮的影响,以确定潜在的化学预防机制。用0.4%UDCA喂养小鼠可将细胞增殖降低至50%,并抑制包括胰岛素受体底物1(Irs-1)在内的几种潜在的增生性基因。在大鼠肠细胞系IEC-6中观察到类似的转录反应,然后将其用作体外模型。 UDCA减慢了IEC-6细胞的增殖,并诱导ERK1 / ERK2激酶持续的过度磷酸化,从而完全抑制了EGF和IGF-1的促增殖作用。 ERK1的过度磷酸化导致Irs-1基因的转录抑制。 ERK的过度磷酸化和Irs-1的抑制都足以抑制IEC-6细胞的增殖。体外ERK1 / ERK2抑制或体外或体内ERK1消除消除了UDCA的抗增殖作用。我们表明,UDCA通过诱导ERK1激酶的持续过度磷酸化抑制非转化的肠上皮细胞的增殖,从而减缓细胞周期并降低Irs-1蛋白的表达。这些数据扩展了我们对UDCA的生理和潜在化学预防作用的理解,并确定了化学预防的新目标。

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