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Bypass of telomere-dependent replicative senescence (M1) upon overexpression of Cdk4 in normal human epithelial cells

机译:在正常人体上皮细胞中过表达CDK4时旁路依赖于端粒依赖性复制衰老(M1)

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Many stimuli causing 'stress' or DNA damage in cells can produce phenotypes that overlap with telomere-based replicative senescence. In epithelial systems, the p16/RB pathway may function as a stress senescence-signaling pathway independent of telomere shortening. Overexpressing cyclin-dependent kinase 4 (Cdk4) in human epidermal keratinocytes and human mammary epithelial cells not only prevents the p16INK4a-associated premature growth arrest due to telomere-independent stress (e.g., inadequate culture conditions), but also bypasses the ensuing telomere-dependent senescence (M1). Overexpressed Cdk4 in epithelial cells induces a dramatic upregulation of p16INK4a and milder upregulation of p53 and p21WAF1, which become unresponsive to UV irradiation. Despite the high levels of these checkpoint factors, Cdk4-overexpressing cells divide in an apparently normal regulated fashion, are able to respond to changes in calcium levels, retain the stem cell phenotype, and fully differentiate and stratify. These results suggest that the differentiation pathways in Cdk4-overexpressing cells remain intact.
机译:在细胞中引起“压力”或DNA损伤的许多刺激可以产生与基于端粒的复制衰老重叠的表型。在上皮系统中,P16 / RB途径可以用作与端粒缩短无关的应力衰老信号通路。在人表皮角蛋白细胞和人乳腺上皮细胞中过度抑制的细胞周期蛋白依赖性激酶4(CDK4)不仅可以防止由于独立于端粒的应力(例如,培养条件不足)而导致的p16ink4a相关的过早生长滞留,还绕过随后的端子依赖衰老(M1)。上皮细胞中的过表达CDK4诱导P16ink4a和mulder Upregulation的p53和p21waf1的显着上调,这对紫外线照射无响应。尽管这些检查点因素的高水平,CDK4过度抑制细胞以明显正常的调节方式分开,能够响应钙水平的变化,保留干细胞表型,并完全区分和分层。这些结果表明CDK4过表达细胞中的分化途径保持完整。

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