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Incompatible effects of p53 and HDAC inhibition on p21 expression and cell cycle progression

机译:p53和HDAC抑制对p21表达和细胞周期进程的不相容影响

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Nutlin-3 selectively activates p53 by inhibiting the interaction of this tumor suppressor with its negative regulator murine double minute 2 (mdm2), while trichostatin A (TSA) is one of the most potent histone deacetylase (HDAC) inhibitors currently available. As both Nutlin-3 and TSA increase the levels of the cell cycle inhibitor p21(cip1/waf1) in cells, we investigated whether a combination of these compounds would further augment p21 levels. Contrary to expectations, we found that short-term exposure to Nutlin-3 and TSA in combination did not have an additive effect on p21 expression. Instead, we observed that activation of p53 prevented the ability of TSA to increase p21 levels. Furthermore, TSA inhibited Nutlin-3-induced expression of p53-dependent mRNAs including P21. This negative effect of TSA on Nutlin-3 was significantly less pronounced in the case of hdm2, another p53 downstream target. Aside from suggesting a model to explain these incompatible effects of Nutlin-3 and TSA, we discuss the implications of our findings in cancer therapy and cell reprogramming.
机译:Nutlin-3通过抑制该肿瘤抑制因子与其阴性调节因子鼠双分2(mdm2)的相互作用来选择性激活p53,而曲古抑菌素A(TSA)是目前可用的最有效的组蛋白脱乙酰基酶(HDAC)抑制剂之一。由于Nutlin-3和TSA均可增加细胞中细胞周期抑制剂p21(cip1 / waf1)的水平,因此我们研究了这些化合物的组合是否会进一步提高p21的水平。与预期相反,我们发现短期暴露于Nutlin-3和TSA的组合不会对p21表达产生累加作用。相反,我们观察到p53的激活阻止了TSA增加p21水平的能力。此外,TSA抑制Nutlin-3诱导的p53依赖性mRNA(包括P21)的表达。 TSA对Nutlin-3的这种负面影响在hdm2(另一个p53下游靶标)的情况下明显不足。除了建议一个模型来解释Nutlin-3和TSA的这些不相容的作用外,我们还讨论了我们的发现在癌症治疗和细胞重编程中的意义。

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