Department of Integrative Oncology, British Columbia Cancer Research Centre, Vancouver, British Columbia, Canada.
PLoS One. 2013;8(1):e53702. doi: 10.1371/journal.pone.0053702. Epub 2013 Jan 21.
Integrin-linked kinase (ILK) localizes to both focal adhesions and centrosomes in distinct multiprotein complexes. Its dual function as a kinase and scaffolding protein has been well characterized at focal adhesions, where it regulates integrin-mediated cell adhesion, spreading, migration and signaling. At the centrosomes, ILK regulates mitotic spindle organization and centrosome clustering. Our previous study showed various spindle defects after ILK knockdown or inhibition that suggested alteration in microtubule dynamics. Since ILK expression is frequently elevated in many cancer types, we investigated the effects of ILK overexpression on microtubule dynamics. We show here that overexpressing ILK in HeLa cells was associated with a shorter duration of mitosis and decreased sensitivity to paclitaxel, a chemotherapeutic agent that suppresses microtubule dynamics. Measurement of interphase microtubule dynamics revealed that ILK overexpression favored microtubule depolymerization, suggesting that microtubule destabilization could be the mechanism behind the decreased sensitivity to paclitaxel, which is known to stabilize microtubules. Conversely, the use of a small molecule inhibitor selective against ILK, QLT-0267, resulted in suppressed microtubule dynamics, demonstrating a new mechanism of action for this compound. We further show that treatment of HeLa cells with QLT-0267 resulted in higher inter-centromere tension in aligned chromosomes during mitosis, slower microtubule regrowth after cold depolymerization and the presence of a more stable population of spindle microtubules. These results demonstrate that ILK regulates microtubule dynamics in both interphase and mitotic cells.
整合素连接激酶(ILK)定位于粘着斑和中心体的不同多蛋白复合物中。其作为激酶和支架蛋白的双重功能在粘着斑中得到了很好的描述,在那里它调节整合素介导的细胞黏附、铺展、迁移和信号转导。在中心体,ILK 调节有丝分裂纺锤体的组织和中心体的聚类。我们之前的研究表明,ILK 敲低或抑制后出现各种纺锤体缺陷,表明微管动力学发生改变。由于 ILK 在许多癌症类型中表达升高,我们研究了 ILK 过表达对微管动力学的影响。我们在这里表明,在 HeLa 细胞中过表达 ILK 与有丝分裂持续时间缩短和对紫杉醇(一种抑制微管动力学的化疗药物)的敏感性降低有关。有丝分裂间期微管动力学的测量表明,ILK 过表达有利于微管解聚,这表明微管不稳定可能是紫杉醇敏感性降低的机制,紫杉醇已知稳定微管。相反,使用针对 ILK 的小分子抑制剂 QLT-0267,导致微管动力学受到抑制,证明了该化合物的一种新作用机制。我们进一步表明,用 QLT-0267 处理 HeLa 细胞导致有丝分裂中期排列的染色体着丝粒间张力增加,冷解聚后微管重新生长缓慢,以及存在更稳定的纺锤体微管群体。这些结果表明,ILK 在有丝分裂间期和有丝分裂细胞中调节微管动力学。