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首页> 外文期刊>Biochimica et biophysica acta. Molecular basis of disease: BBA >The miR-193a-3p regulated PSEN1 gene suppresses the multi-chemoresistance of bladder cancer
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The miR-193a-3p regulated PSEN1 gene suppresses the multi-chemoresistance of bladder cancer

机译:miR-193a-3p调控的PSEN1基因抑制膀胱癌的多化学耐药性

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摘要

Chemoresistance prevents the curative cancer therapy, our understanding of which remains inadequate. Among the differentially expressed genes between the chemosensitive (5637) and chemoresistant (H-bc) bladder cancer cell lines, the expression level of the PSEN1 gene (presenilin 1), a key component of the gamma-secretase, is negatively correlated with chemoresistance. A small interfering RNA mediated repression of the PSEN1 gene suppresses cell apoptosis and de-sensitizes 5637 cells, while overexpression of the presenilin 1 sensitizes H-bc cells to the drug-triggered cell death. As a direct target of microRNA-193a-3p that promotes the multi-chemoresistance of the bladder cancer cell, PSEN1 acts as an important executor for the microRNA-193a-3p's positive impact on the multi-chemoresistance of bladder cancer, probably via its activating effect on DNA damage response pathway. In addition to the mechanistic insights, the key players in this microRNA-193a-3p/PSEN1 axis are likely the diagnostic and/or therapeutic targets for an effective chemotherapy of bladder cancer. (C) 2014 Elsevier B.V. All rights reserved.
机译:化学抗性阻止了治愈性癌症治疗,但我们对这种治疗的了解仍然不足。在化学敏感性(5637)和化学抗性(H-bc)膀胱癌细胞系之间差异表达的基因中,γ-分泌酶的关键成分PSEN1基因(早老素1)的表达水平与化学抗性负相关。小干扰RNA介导的PSEN1基因的阻遏抑制细胞凋亡并使5637细胞脱敏,而早老素1的过表达使H-bc细胞对药物触发的细胞死亡敏感。作为促进膀胱癌细胞多化学耐药性的microRNA-193a-3p的直接靶标,PSEN1可能通过其激活而成为microRNA-193a-3p对膀胱癌多化学耐药性产生积极影响的重要执行者对DNA损伤反应途径的影响。除了机理上的见解之外,在microRNA-193a-3p / PSEN1轴上的关键角色可能是膀胱癌有效化疗的诊断和/或治疗靶标。 (C)2014 Elsevier B.V.保留所有权利。

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