首页> 美国卫生研究院文献>Molecular and Cellular Biology >Transforming growth factor beta stabilizes p15INK4B protein increases p15INK4B-cdk4 complexes and inhibits cyclin D1-cdk4 association in human mammary epithelial cells.
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Transforming growth factor beta stabilizes p15INK4B protein increases p15INK4B-cdk4 complexes and inhibits cyclin D1-cdk4 association in human mammary epithelial cells.

机译:转化生长因子β可稳定p15INK4B蛋白增加p15INK4B-cdk4复合物并抑制人乳腺上皮细胞中的细胞周期蛋白D1-cdk4缔合。

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摘要

The effects of transforming growth factor beta (TGF-beta) were studied in closely related human mammary epithelial cells (HMEC), both finite-life-span 184 cells and immortal derivatives, 184A1S, and 184A1L5R, which differ in their cell cycle responses to TGF-beta but express type I and type II TGF-beta receptors and retain TGF-beta induction of extracellular matrix. The arrest-resistant phenotype was not due to loss of cyclin-dependent kinase (cdk) inhibitors. TGF-beta was shown to regulate p15INK4B expression at at least two levels: mRNA accumulation and protein stability. In TGF-beta-arrested HMEC, there was not only an increase in p15 mRNA but also a major increase in p5INK4B protein stability. As cdk4- and cdk6-associated p15INK4B increased during TGF-beta arrest of sensitive cells, there was a loss of cyclin D1, p21Cip1, and p27Kip1 from these kinase complexes, and cyclin E-cdk2-associated p27Kip1 increased. In HMEC, p15INK4B complexes did not contain detectable cyclin. p15INK4B from both sensitive and resistant cells could displace in vitro cyclin D1, p21Cip1, and p27Kip1 from cdk4 isolated from sensitive cells. Cyclin D1 could not be displaced from cdk4 in the resistant 184A1L5R cell lysates. Thus, in TGF-beta arrest, p15INK4B may displace already associated cyclin D1 from cdks and prevent new cyclin D1-cdk complexes from forming. Furthermore, p27Kip1 binding shifts from cdk4 to cyclin E-cdk2 during TGF-beta-mediated arrest. The importance of posttranslational regulation of p15INK4B by TGF-beta is underlined by the observation that in TGF-beta-resistant 184A1L5R, although the p15 transcript increased, p15INK4B protein was not stabilized and did not accumulate, and cyclin D1-cdk association and kinase activation were not inhibited.
机译:在紧密相关的人类乳腺上皮细胞(HMEC)中研究了转化生长因子beta(TGF-beta)的作用,即有限寿命的184细胞和永生衍生物184A1S和184A1L5R,它们的细胞周期响应与TGF-β但表达I型和II型TGF-β受体,并保留TGF-β诱导的细胞外基质。耐逮捕的表型不是由于细胞周期蛋白依赖性激酶(cdk)抑制剂的丢失。 TGF-β至少在两个水平上调节p15INK4B表达:mRNA积累和蛋白质稳定性。在TGF-β逮捕的HMEC中,不仅p15 mRNA增加,而且p5INK4B蛋白稳定性大大增加。随着cdk4和cdk6相关的p15INK4B在敏感细胞的TGF-β阻滞期间增加,这些激酶复合物中的细胞周期蛋白D1,p21Cip1和p27Kip1丢失,而与细胞周期蛋白E-cdk2相关的p27Kip1也增加。在HMEC中,p15INK4B复合物不含可检测到的细胞周期蛋白。来自敏感细胞和耐药细胞的p15INK4B都可以取代来自敏感细胞cdk4的体外细胞周期蛋白D1,p21Cip1和p27Kip1。在抗性184A1L5R细胞裂解物中,细胞周期蛋白D1无法从cdk4移出。因此,在TGF-β阻滞中,p15INK4B可能会从cdks中取代已经相关的细胞周期蛋白D1,并阻止形成新的细胞周期蛋白D1-cdk复合物。此外,在TGF-β介导的逮捕期间,p27Kip1结合从cdk4转变为细胞周期蛋白E-cdk2。 TGF-β对p15INK4B进行翻译后调控的重要性在以下观察点中得到了强调:在抗TGF-β的184A1L5R中,尽管p15转录本增加,但p15INK4B蛋白却不稳定并没有积累,并且细胞周期蛋白D1-cdk关联和激酶激活没有被抑制。

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