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紫杉醇通过靶向FOXM1来调节有丝分裂灾难和乳腺癌紫杉醇耐药中的KIF20A。

Paclitaxel targets FOXM1 to regulate KIF20A in mitotic catastrophe and breast cancer paclitaxel resistance.

作者信息

Khongkow P, Gomes A R, Gong C, Man E P S, Tsang J W-H, Zhao F, Monteiro L J, Coombes R C, Medema R H, Khoo U S, Lam E W-F

机构信息

Department of Surgery and Cancer, Imperial College London, Hammersmith Hospital Campus, London, UK.

Department of Pathology, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Hong Kong SAR, China.

出版信息

Oncogene. 2016 Feb 25;35(8):990-1002. doi: 10.1038/onc.2015.152. Epub 2015 May 11.

Abstract

FOXM1 has been implicated in taxane resistance, but the molecular mechanism involved remains elusive. In here, we show that FOXM1 depletion can sensitize breast cancer cells and mouse embryonic fibroblasts into entering paclitaxel-induced senescence, with the loss of clonogenic ability, and the induction of senescence-associated β-galactosidase activity and flat cell morphology. We also demonstrate that FOXM1 regulates the expression of the microtubulin-associated kinesin KIF20A at the transcriptional level directly through a Forkhead response element (FHRE) in its promoter. Similar to FOXM1, KIF20A expression is downregulated by paclitaxel in the sensitive MCF-7 breast cancer cells and deregulated in the paclitaxel-resistant MCF-7Tax(R) cells. KIF20A depletion also renders MCF-7 and MCF-7Tax(R) cells more sensitive to paclitaxel-induced cellular senescence. Crucially, resembling paclitaxel treatment, silencing of FOXM1 and KIF20A similarly promotes abnormal mitotic spindle morphology and chromosome alignment, which have been shown to induce mitotic catastrophe-dependent senescence. The physiological relevance of the regulation of KIF20A by FOXM1 is further highlighted by the strong and significant correlations between FOXM1 and KIF20A expression in breast cancer patient samples. Statistical analysis reveals that both FOXM1 and KIF20A protein and mRNA expression significantly associates with poor survival, consistent with a role of FOXM1 and KIF20A in paclitaxel action and resistance. Collectively, our findings suggest that paclitaxel targets the FOXM1-KIF20A axis to drive abnormal mitotic spindle formation and mitotic catastrophe and that deregulated FOXM1 and KIF20A expression may confer paclitaxel resistance. These findings provide insights into the underlying mechanisms of paclitaxel resistance and have implications for the development of predictive biomarkers and novel chemotherapeutic strategies for paclitaxel resistance.

摘要

FOXM1与紫杉烷耐药有关,但其涉及的分子机制仍不清楚。在此,我们表明,FOXM1缺失可使乳腺癌细胞和小鼠胚胎成纤维细胞对紫杉醇诱导的衰老敏感,导致克隆形成能力丧失,并诱导衰老相关的β-半乳糖苷酶活性和平坦细胞形态。我们还证明,FOXM1直接通过其启动子中的叉头反应元件(FHRE)在转录水平调节微管相关驱动蛋白KIF20A的表达。与FOXM1相似,KIF20A的表达在敏感的MCF-7乳腺癌细胞中被紫杉醇下调,而在耐紫杉醇的MCF-7Tax(R)细胞中失调。KIF20A缺失也使MCF-7和MCF-7Tax(R)细胞对紫杉醇诱导的细胞衰老更敏感。至关重要的是,与紫杉醇处理相似,FOXM1和KIF20A的沉默同样促进异常有丝分裂纺锤体形态和染色体排列,这已被证明可诱导有丝分裂灾难依赖性衰老。乳腺癌患者样本中FOXM1和KIF20A表达之间的强且显著相关性进一步突出了FOXM1对KIF20A调节的生理相关性。统计分析表明,FOXM1和KIF20A的蛋白质和mRNA表达均与不良生存显著相关,这与FOXM1和KIF20A在紫杉醇作用和耐药中的作用一致。总体而言,我们的研究结果表明,紫杉醇靶向FOXM1-KIF20A轴以驱动异常有丝分裂纺锤体形成和有丝分裂灾难,而失调的FOXM1和KIF20A表达可能导致紫杉醇耐药。这些发现为紫杉醇耐药的潜在机制提供了见解,并对预测生物标志物的开发和针对紫杉醇耐药的新型化疗策略具有启示意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3adf/4771938/f58fa770dafc/onc2015152f1.jpg

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