Cellular and Genetic Medicine Unit, School of Medical Sciences, University of New South Wales, Sydney, New South Wales, Australia.
Biomedical Imaging Facility, Mark Wainwright Analytical Center, University of New South Wales, Sydney, New South Wales, Australia.
Mol Cancer Res. 2020 Jul;18(7):1074-1087. doi: 10.1158/1541-7786.MCR-19-1122. Epub 2020 Apr 8.
Antimicrotubule vinca alkaloids are widely used in the clinic but their toxicity is often dose limiting. Strategies that enhance their effectiveness at lower doses are needed. We show that combining vinca alkaloids with compounds that target a specific population of actin filaments containing the cancer-associated tropomyosin Tpm3.1 result in synergy against a broad range of tumor cell types. We discovered that low concentrations of vincristine alone induce supernumerary microtubule asters that form transient multi-polar spindles in early mitosis. Over time these asters can be reconstructed into functional bipolar spindles resulting in cell division and survival. These microtubule asters are organized by the nuclear mitotic apparatus protein (NuMA)-dynein-dynactin complex without involvement of centrosomes. However, anti-Tpm3.1 compounds at nontoxic concentrations inhibit this rescue mechanism resulting in delayed onset of anaphase, formation of multi-polar spindles, and apoptosis during mitosis. These findings indicate that drug targeting actin filaments containing Tpm3.1 potentiates the anticancer activity of low-dose vincristine treatment. IMPLICATIONS: Simultaneously inhibiting Tpm3.1-containing actin filaments and microtubules is a promising strategy to potentiate the anticancer activity of low-dose vincristine.
长春花生物碱类的抗微管药物在临床上被广泛应用,但它们的毒性往往会限制其剂量。因此,我们需要寻找能在低剂量下提高其疗效的策略。我们发现,将长春花生物碱类药物与靶向含有癌相关原肌球蛋白 Tpm3.1 的特定肌动蛋白丝群体的化合物联合使用,可以针对广泛的肿瘤细胞类型产生协同作用。我们发现,单独使用低浓度的长春新碱会诱导额外的微管星状体,这些星状体在早期有丝分裂中形成短暂的多极纺锤体。随着时间的推移,这些星状体可以被重建为功能性的两极纺锤体,从而导致细胞分裂和存活。这些微管星状体是由核有丝分裂器蛋白(NuMA)-动力蛋白-动力蛋白肌动蛋白复合物组织的,而不涉及中心体。然而,在非毒性浓度下的抗 Tpm3.1 化合物会抑制这种挽救机制,导致后期有丝分裂延迟、多极纺锤体形成和细胞凋亡。这些发现表明,靶向含有 Tpm3.1 的肌动蛋白丝的药物可以增强低剂量长春新碱治疗的抗癌活性。意义:同时抑制含有 Tpm3.1 的肌动蛋白丝和微管是增强低剂量长春新碱抗癌活性的一种有前途的策略。