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POPX2 phosphatase regulates apoptosis through the TAK1-IKK-NF-κB pathway

机译:POPX2磷酸酶通过TAK1-IKK-NF- κ B途径调节细胞凋亡

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Chemoresistance is one of the leading causes that contributes to tumor relapse and poor patient outcome after several rounds of drug therapy. The causes of chemoresistance are multi-factorial. Ultimately, it is the balance of pro- and anti-apoptotic activities in the cells. We have previously reported links between POPX2 serine/threonine phosphatase with cell motility and invasiveness of breast cancer cells. Here, we show that POPX2 plays a role in the regulation of apoptosis. The effect of POPX2 on apoptosis centers on the inactivation of TGF- β activated kinase (TAK1). TAK1 is essential for several important biological functions including innate immunity, development and cell survival. We find that POPX2 interacts directly with TAK1 and is able to dephosphorylate TAK1. Cells with lower levels of POPX2 exhibit higher TAK1 activity in response to etoposide (VP-16) treatment. This subsequently leads to increased translocation of NF- κ B from the cytosol to the nucleus. Consequently, NF- κ B-mediated transcription of anti-apoptotic proteins is upregulated to promote cell survival. On the other hand, cells with higher levels of POPX2 are more vulnerable to apoptosis induced by etoposide. Our data demonstrate that POPX2 is a negative regulator of TAK1 signaling pathway and modulates apoptosis through the regulation of TAK1 activity. As inhibition of TAK1 has been proposed to reduce chemoresistance and increase sensitivity to chemotherapy in certain types of cancer, modulation of POPX2 levels may provide an additional avenue and consideration in fine-tuning therapeutic response.
机译:在数轮药物治疗后,化学抗性是导致肿瘤复发和患者预后不良的主要原因之一。化学耐药的原因是多方面的。最终,它是细胞中促凋亡和抗凋亡活性的平衡。我们以前曾报道过POPX2丝氨酸/苏氨酸磷酸酶与乳腺癌细胞的细胞运动性和侵袭性之间的联系。在这里,我们表明POPX2在凋亡的调节中起作用。 POPX2对细胞凋亡的作用集中在TGF-β活化激酶(TAK1)的失活上。 TAK1对于多种重要的生物学功能至关重要,包括先天免疫,发育和细胞存活。我们发现POPX2与TAK1直接相互作用,并且能够使TAK1去磷酸化。 POPX2含量较低的细胞对依托泊苷(VP-16)的处理具有较高的TAK1活性。随后,这导致NF-κB从胞质溶胶向核的转运增加。因此,NF-κB介导的抗凋亡蛋白的转录被上调以促进细胞存活。另一方面,具有更高水平的POPX2的细胞更容易受到依托泊苷诱导的凋亡的影响。我们的数据表明,POPX2是TAK1信号通路的负调节剂,并通过调节TAK1活性来调节细胞凋亡。由于已提出抑制TAK1的作用以降低某些类型癌症的化学耐药性并增加对化学疗法的敏感性,因此POPX2水平的调节可为微调治疗反应提供额外的途径和考虑。

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