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中心体蛋白 TACC3 通过调节过早衰老程序控制紫杉醇敏感性。

The centrosomal protein TACC3 controls paclitaxel sensitivity by modulating a premature senescence program.

机构信息

Institut für Biochemie und Molekularbiologie II, Universitätsklinikum der Heinrich-Heine-Universität, Düsseldorf, Germany.

出版信息

Oncogene. 2010 Nov 18;29(46):6184-92. doi: 10.1038/onc.2010.354. Epub 2010 Aug 23.

DOI:10.1038/onc.2010.354
PMID:20729911
Abstract

Microtubule-interfering cancer drugs such as paclitaxel (PTX) often cause chemoresistance and severe side effects, including neurotoxicity. To explore potentially novel antineoplastic molecular targets, we investigated the cellular response of breast carcinoma cells to short hairpin(sh)RNA-mediated depletion of the centrosomal protein transforming acidic coiled coil (TACC) 3, an Aurora A kinase target expressed during mitosis. Unlike PTX, knockdown of TACC3 did not trigger a cell death response, but instead resulted in a progressive loss of the pro-apoptotic Bcl-2 protein Bim that links microtubule integrity to spindle poison-induced cell death. Interestingly, TACC3-depleted cells arrested in G₁ through a cellular senescence program characterized by the upregulation of nuclear p21(WAF), downregulation of the retinoblastoma protein and extracellular signal-regulated kinase 1/2, formation of HP1γ (phospho-Ser83)-positive senescence-associated heterochromatic foci and increased senescence-associated β-galactosidase activity. Remarkably, the onset of senescence following TACC3 knockdown was strongly accelerated in the presence of non-toxic PTX concentrations. Thus, we conclude that mitotic spindle stress is a major trigger of premature senescence and propose that the combined targeting of the centrosomal Aurora A-TACC3 axis together with drugs interfering with microtubule dynamics may efficiently improve the chemosensitivity of cancer cells.

摘要

微管干扰性癌症药物,如紫杉醇(PTX),常引起化疗耐药和严重的副作用,包括神经毒性。为了探索潜在的新型抗肿瘤分子靶标,我们研究了乳腺癌细胞对短发夹(sh)RNA 介导的中心体蛋白转化酸性卷曲螺旋(TACC)3 耗竭的细胞反应,TACC3 是一种在有丝分裂期间表达的 Aurora A 激酶靶标。与 PTX 不同,TACC3 的敲低不会引发细胞死亡反应,而是导致促凋亡 Bcl-2 蛋白 Bim 的逐渐丧失,Bim 将微管完整性与纺锤体毒物诱导的细胞死亡联系起来。有趣的是,TACC3 耗竭的细胞通过细胞衰老程序停滞在 G₁期,其特征是核 p21(WAF)上调、视网膜母细胞瘤蛋白下调和细胞外信号调节激酶 1/2,形成 HP1γ(磷酸化-Ser83)阳性衰老相关异染色质焦点和增加衰老相关β-半乳糖苷酶活性。值得注意的是,TACC3 敲低后在非毒性 PTX 浓度存在下,衰老的发生被强烈加速。因此,我们得出结论,有丝分裂纺锤体应激是过早衰老的主要触发因素,并提出靶向中心体 Aurora A-TACC3 轴与干扰微管动力学的药物联合应用可能有效地提高癌细胞的化疗敏感性。

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