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首页> 外文期刊>Oncogene >Small molecules targeted to the microtubule-Hecl interaction inhibit cancer cell growth through microtubule stabilization
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Small molecules targeted to the microtubule-Hecl interaction inhibit cancer cell growth through microtubule stabilization

机译:靶向微管-Hecl相互作用的小分子通过微管稳定作用抑制癌细胞的生长

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Highly expressed in cancer protein 1 (Hec1) is a subunit of the kinetochore (KT)-associated Ndc80 complex, which ensures proper segregation of sister chromatids at mitosis by mediating the interaction between KTs and microtubules (MTs). HEC1 mRNA and protein are highly expressed in many malignancies as part of a signature of chromosome instability. These properties render Heel a promising molecular target for developing therapeutic drugs that exert their anticancer activities by producing massive chromosome aneuploidy. A virtual screening study aimed at identifying small molecules able to bind at the Hec1-MT interaction domain identified one positive hit compound and two analogs of the hit with high cytotoxic, pro-apoptotic and anti-mitotic activities. The most cytotoxic analog (SM15) was shown to produce chromosome segregation defects in cancer cells by inhibiting the correction of erroneous KT-MT interactions. Live cell imaging of treated cells demonstrated that mitotic arrest and segregation abnormalities lead to cell death through mitotic catastrophe and that cell death occurred also from interphase. Importantly, SM15 was shown to be more effective in inducing apoptotic cell death in cancer cells as compared to normal ones and effectively reduced tumor growth in a mouse xenograft model. Mechanistically, cold-induced MT depolymerization experiments demonstrated a hyper-stabilization of both mitotic and interphase MTs. Molecular dynamics simulations corroborate this finding by showing that SM15 can bind the MT surface independently from Heel and acts as a stabilizer of both MTs and KT-MT interactions. Overall, our studies represent a clear proof of principle that MT-Hec1-interacting compounds may represent novel powerful anticancer agents.
机译:动蛋白(KT)相关的Ndc80复合物的一个亚基在癌蛋白1(Hec1)中高表达,该复合物通过介导KT和微管(MT)之间的相互作用,确保有丝分裂中姐妹染色单体的正确分离。 HEC1 mRNA和蛋白在许多恶性肿瘤中高度表达,这是染色体不稳定的特征之一。这些特性使Heel成为开发通过产生大量染色体非整倍性发挥其抗癌活性的治疗药物的分子靶标。一项旨在筛选能够结合在Hec1-MT相互作用域上的小分子的虚拟筛选研究确定了一种具有高细胞毒性,促凋亡和抗有丝分裂活性的阳性命中化合物和该命中的两种类似物。已显示出最具细胞毒性的类似物(SM15)通过抑制错误的KT-MT相互作用的纠正在癌细胞中产生染色体分离缺陷。经处理的细胞的活细胞成像表明,有丝分裂停滞和分离异常导致有丝分裂灾难导致细胞死亡,并且细胞死亡也发生在相间。重要的是,与正常的SM15相比,SM15被证明在诱导癌细胞凋亡方面更有效,并且在小鼠异种移植模型中有效地减少了肿瘤的生长。从机理上讲,冷诱导的MT解聚实验证明了有丝分裂MT和相间MT都具有高度稳定性。分子动力学模拟通过证明SM15可以独立于Heel结合MT表面并充当MT和KT-MT相互作用的稳定剂,从而证实了这一发现。总体而言,我们的研究代表了原理明确的证据,即与MT-Hec1相互作用的化合物可能代表了新型强大的抗癌药。

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