Division of Applied Life Science (BK21 Plus), Gyeongsang National University, Jinju 52828, Korea.
Gene & Cell Therapy Team, Division of Drug Development & Optimization, New Drug Development Center, Osong Medical Innovation Foundation, Osongsaengmyung-ro 123, Osong-eup, Heungdeok-gu, Cheongju-si 28160, Chungbuk, Korea.
Cells. 2019 May 22;8(5):495. doi: 10.3390/cells8050495.
N-Myc downstream-regulated gene 2 (NDRG2) was characterized as a tumor suppressor, inducing anti-metastatic and anti-proliferative effects in several tumor cells. However, NDRG2 functions on anticancer drug sensitivity, and its molecular mechanisms are yet to be fully investigated. In this study, we investigated the mechanism of NDRG2-induced sensitization to AsO in the U937 cell line, which is one of the most frequently used cells in the field of resistance to AsO. NDRG2-overexpressing U937 cells (U937-NDRG2) showed a higher sensitivity to AsO than mock control U937 cell (U937-Mock). The higher sensitivity to AsO in U937-NDRG2 was associated with Mcl-1 degradation through glycogen synthase kinase 3β (GSK3β) activation. Inhibitory phosphorylation of GSK3β was significantly reduced in U937-NDRG2, and the reduction was diminished by okadaic acid, a protein phosphatase inhibitor. NDRG2 mediated the interaction between GSK3β and protein phosphatase 2A (PP2A), inducing dephosphorylation of GSK3β at S9 by PP2A. Although the C-terminal deletion mutant of NDRG2 (ΔC NDRG2), which could not interact with PP2A, interacted with GSK3β, the mutant failed to dephosphorylate GSK3β at S9 and increased sensitivity to AsO. Our findings suggest that NDRG2 is a kind of adaptor protein mediating the interaction between GSK3β and PP2A, inducing GSK3β activation through dephosphorylation at S9 by PP2A, which increases sensitivity to AsO in U937 cells.
N- MYC 下游调节基因 2(NDRG2)被认为是一种肿瘤抑制因子,可在几种肿瘤细胞中诱导抗转移和抗增殖作用。然而,NDRG2 在抗癌药物敏感性方面的功能及其分子机制尚未得到充分研究。在这项研究中,我们研究了 NDRG2 诱导 U937 细胞系对砷剂敏感性的机制,U937 细胞系是砷剂耐药领域最常用的细胞之一。NDRG2 过表达的 U937 细胞(U937-NDRG2)对砷剂的敏感性高于对照 Mock 细胞(U937-Mock)。U937-NDRG2 对砷剂的敏感性增加与 Mcl-1 通过糖原合酶激酶 3β(GSK3β)激活而降解有关。U937-NDRG2 中 GSK3β 的抑制性磷酸化显著减少,而蛋白磷酸酶抑制剂 okadaic acid 可减少这种减少。NDRG2 介导 GSK3β 与蛋白磷酸酶 2A(PP2A)之间的相互作用,诱导 PP2A 使 GSK3β 在 S9 去磷酸化。虽然不能与 PP2A 相互作用的 NDRG2 的 C 端缺失突变体(ΔC NDRG2)与 GSK3β 相互作用,但突变体不能使 GSK3β 在 S9 去磷酸化,并增加对砷剂的敏感性。我们的研究结果表明,NDRG2 是一种衔接蛋白,介导 GSK3β 与 PP2A 之间的相互作用,通过 PP2A 使 GSK3β 在 S9 去磷酸化而诱导 GSK3β 激活,从而增加 U937 细胞对砷剂的敏感性。