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首页> 外文期刊>Cell death & disease. >ΔNp63α suppresses cells invasion by downregulating PKCγ/Rac1 signaling through miR-320a
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ΔNp63α suppresses cells invasion by downregulating PKCγ/Rac1 signaling through miR-320a

机译:ΔNP63α通过MIR-320A下调PKCγ/ RAC1信号来抑制细胞侵袭

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摘要

ΔNp63α, a member of the p53 family of transcription factors, is overexpressed in a number of cancers and plays a role in proliferation, differentiation, migration, and invasion. ΔNp63α has been shown to regulate several microRNAs that are involved in development and cancer. We identified miRNA miR-320a as a positively regulated target of ΔNp63α. Previous studies have shown that miR-320a is downregulated in colorectal cancer and targets the small GTPase Rac1, leading to a reduction in noncanonical WNT signaling and EMT, thereby inhibiting tumor metastasis and invasion. We showed that miR-320a is a direct target of ΔNp63α. Knockdown of ΔNp63α in HaCaT and A431 cells downregulates miR-320a levels and leads to a corresponding elevation in PKCγ transcript and protein levels. Rac1 phosphorylation at Ser71 was increased in the absence of ΔNp63α, whereas overexpression of ΔNp63α reversed S71 phosphorylation of Rac1. Moreover, increased PKCγ levels, Rac1 phosphorylation and cell invasion observed upon knockdown of ΔNp63α was reversed by either overexpressing miR-320a mimic or Rac1 silencing. Finally, silencing PKCγ or treatment with the PKC inhibitor G?6976 reversed increased Rac1 phosphorylation and cell invasion observed upon silencing ΔNp63α. Taken together, our data suggest that ΔNp63α positively regulates miR-320a, thereby inhibiting PKCγ expression, Rac1 phosphorylation, and cancer invasion.
机译:Δnp63α是p53的转录因子的成员,在许多癌症中过表达,并在增殖,分化,迁移和侵袭中发挥作用。已经显示Δnp63α调节涉及开发和癌症的几个微稻草。我们将miRNA miR-320a识别为Δnp63α的正规靶标。以前的研究表明,miR-320a在结肠直肠癌中下调并靶向小GTP酶RAC1,导致非甘露透化的Wnt信号传导和EMT的减少,从而抑制肿瘤转移和侵袭。我们表明MIR-320A是ΔNP63α的直接靶标。 HACAT和A431细胞中ΔNP63α的敲低下调MIR-320A水平,并导致PKCγ转录物和蛋白质水平的相应升高。在没有ΔNP63α的情况下,Ser71的Rac1磷酸化增加,而Δnp63α的过度表达Δnp63α反转的Rac1的S71磷酸化。此外,通过过表达MiR-320A模拟或RAC1沉默反转,在ΔNP63α敲低时观察到的PKCγ水平,RAC1磷酸化和细胞浸润。最后,沉默PKCγ或用PKC抑制剂Gγ处理,在沉默ΔNP63α时观察到的RAC1磷酸化和细胞侵袭。我们的数据结合在一起,表明Δnp63α正常调节miR-320a,从而抑制pkcγ表达,Rac1磷酸化和癌症侵袭。

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