首页> 外文期刊>Journal of cellular and molecular medicine. >Inhibition of MELK produces potential anti‐tumour effects in bladder cancer by inducing G1/S cell cycle arrest via the ATM/CHK2/p53 pathway
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Inhibition of MELK produces potential anti‐tumour effects in bladder cancer by inducing G1/S cell cycle arrest via the ATM/CHK2/p53 pathway

机译:通过ATM / CHK2 / P53途径诱导G1 / S细胞循环滞留,抑制梅尔克在膀胱癌中产生潜在的抗肿瘤作用

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We aimed to investigate the biological function of MELK and the therapeutic potential of OTSSP167 in human bladder cancer (BCa). First, we observed overexpression of MELK in BCa cell lines and tissues and found that it was associated with higher tumour stage and tumour grade, which was consistent with transcriptome analysis. High expression of MELK was significantly correlated with poor prognosis in BCa patients, and MELK was found to have a role in the cell cycle, the G1/S transition in mitosis, and DNA repair and replication. Furthermore, BCa cells presented significantly decreased proliferation capacity following silencing of MELK or treatment with OTSSP167 in vitro and in vivo. Functionally, reduction in MELK or treatment of cells with OTSSP167 could induce cell cycle arrest and could suppress migration. In addition, these treatments could activate phosphorylation of ATM and CHK2, which would be accompanied by down‐regulated MDMX, cyclin D1, CDK2 and E2F1; however, p53 and p21 would be activated. Opposite results were observed when MELK expression was induced. Overall, MELK was found to be a novel oncogene in BCa that induces cell cycle arrest via the ATM/CHK2/p53 pathway. OTSSP167 displays potent anti‐tumour activities, which may provide a new molecule‐based strategy for BCa treatment.
机译:我们的旨在探讨麦克兰(BCA)中梅尔克的生物学功能和ottsp167的治疗潜力。首先,我们观察到BCA细胞系和组织中梅克的过度表达,发现它与肿瘤阶段和肿瘤等级相关,这与转录组分析一致。梅尔克的高表达与BCA患者的预后差显着相关,发现梅尔克在细胞周期中具有作用,有丝分裂的G1 / S转变和DNA修复和复制。此外,BCA细胞在体外和体内用ottsp167沉默或用ottsp167处理后显着降低的增殖能力。在功能上,用大滴167的细胞减少或治疗细胞可以诱导细胞周期骤停,可以抑制迁移。此外,这些治疗可以激活ATM和CHK2的磷酸化,其伴有下调的MDMX,细胞周期蛋白D1,CDK2和E2F1;但是,P53和P21将被激活。当诱导麦克表达时,观察到相反的结果。总体而言,梅尔克被发现是BCA中的新型癌基因,通过ATM / CHK2 / P53途径诱导细胞周期停滞。 OTSSP167显示有效的抗肿瘤活动,可提供新的基于分子的BCA治疗策略。

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