首页> 外文期刊>Molecular cancer therapeutics >MKAD-21 Suppresses the Oncogenic Activity of the miR-21/PPP2R2A/ERK Molecular Network in Bladder Cancer
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MKAD-21 Suppresses the Oncogenic Activity of the miR-21/PPP2R2A/ERK Molecular Network in Bladder Cancer

机译:MKAD-21抑制MIR-21 / PPP2R2A / ERK分子网络在膀胱癌中的致癌活性

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摘要

Bladder cancer represents a disease associated with significant morbidity and mortality. MiR-21 has been found to have oncogenic activity in multiple cancers, including bladder cancer, whereas inhibition of its expression suppresses tumor growth. Here, we examine the molecular network regulated by miR-21 in bladder cancer and evaluate the effects of i.v. and i.p. administration of a novel miR-21 chemical inhibitor in vivo. LNA miR-21 reduced the oncogenic potential of bladder cancer cells, whereas the MKAD-21 chemically modified antisense oligo against miR-21 dose-dependently blocked xenograft growth. I.v. administration of LNA miR-21 was more effective in suppressing tumor growth than was i.p. administration. Integration of computational and transcriptomic analyses in a panel of 28 bladder cancer lines revealed a 15-gene signature that correlates with miR-21 levels. Protein Phosphatase 2 Regulatory Subunit Balpha (PPP2R2A) was one of these 15 genes and was experimentally validated as a novel miR-21 direct target gene. Gene network and molecular analyses showed that PPP2R2A is a potent negative regulator of the ERK pathway activation and bladder cancer cell proliferation. Importantly, we show that PPP2R2A acts as a mediator of miR-21-induced oncogenic effects in bladder cancer. Integrative analysis of human bladder cancer tumors and a large panel of human bladder cancer cell lines revealed a novel 15-gene signature that correlates with miR-21 levels. Importantly, we provide evidence that PPP2R2A represents a new miR-21 direct target and regulator of the ERK pathway and bladder cancer cell growth. Furthermore, i.v. administration of the MKAD-21 inhibitor effectively suppressed tumor growth through regulation of the PPP2R2A-ERK network in mice. (C) 2018 AACR.
机译:膀胱癌代表与显着发病率和死亡率相关的疾病。已发现miR-21在多种癌症中具有致癌活性,包括膀胱癌,而其表达的抑制抑制了肿瘤生长。在这里,我们检查膀胱癌中miR-21调节的分子网络,并评估I.V的效果。和i.p.在体内施用新型miR-21化学抑制剂。 LNA miR-21降低了膀胱癌细胞的致癌潜力,而MKAD-21对miR-21剂量依赖性抑制的异种移植生长进行化学改性的反义寡核苷酸。 I.v. LNA miR-21的给药更有效地抑制肿瘤生长而不是I.P.行政。在28个膀胱癌系的面板中纳入计算和转录组分析的整合揭示了与miR-21水平相关的15基因签名。蛋白质磷酸酶2调节亚基秃鹰(PPP2R2A)是这15个基因中的一种,并通过实验验证为新的miR-21直接靶基因。基因网络和分子分析表明,PPP2R2A是ERK途径激活和膀胱癌细胞增殖的有效阴性调节器。重要的是,我们表明PPP2R2A作为MIR-21诱导的膀胱癌的致癌作用的介质。对人膀胱癌肿瘤的一致性分析和大面板的人膀胱癌细胞系揭示了一种与miR-21水平相关的新型15-基因签名。重要的是,我们提供了PPP2R2A代表ERK途径和膀胱癌细胞生长的新MIR-21直接靶标和调节剂。此外,I.v.通过调节小鼠的PPP2R2A-ERK网络有效地抑制了MKAD-21抑制剂的施用。 (c)2018年AACR。

著录项

  • 来源
    《Molecular cancer therapeutics》 |2018年第7期|共11页
  • 作者单位

    UCLA David Geffen Sch Med Vatche &

    Tamar Manoukian Div Digest Dis Ctr Syst Biomed Los Angeles;

    David Geffen Sch Med Jonsson Comprehens Canc Ctr Dept Med Div Hematol Oncol Los Angeles CA USA;

    David Geffen Sch Med Jonsson Comprehens Canc Ctr Dept Med Div Hematol Oncol Los Angeles CA USA;

    Univ Crete Sch Med Lab Tumor Cell Biol Iraklion Greece;

    UCLA David Geffen Sch Med Vatche &

    Tamar Manoukian Div Digest Dis Ctr Syst Biomed Los Angeles;

    UCLA David Geffen Sch Med Vatche &

    Tamar Manoukian Div Digest Dis Ctr Syst Biomed Los Angeles;

    UCLA David Geffen Sch Med Vatche &

    Tamar Manoukian Div Digest Dis Ctr Syst Biomed Los Angeles;

    David Geffen Sch Med Jonsson Comprehens Canc Ctr Dept Med Div Hematol Oncol Los Angeles CA USA;

    David Geffen Sch Med Jonsson Comprehens Canc Ctr Dept Med Div Hematol Oncol Los Angeles CA USA;

    UCLA David Geffen Sch Med Dept Urol Inst Urol Oncol Los Angeles CA 90095 USA;

    Univ Crete Sch Med Lab Tumor Cell Biol Iraklion Greece;

    UCLA David Geffen Sch Med Vatche &

    Tamar Manoukian Div Digest Dis Ctr Syst Biomed Los Angeles;

    David Geffen Sch Med Jonsson Comprehens Canc Ctr Dept Med Div Hematol Oncol Los Angeles CA USA;

    David Geffen Sch Med Jonsson Comprehens Canc Ctr Dept Med Div Hematol Oncol Los Angeles CA USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 肿瘤学;
  • 关键词

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