Mitra Arpita, Sept David
Department of Chemical Engineering, Washington University, St. Louis, Missouri 63130, USA.
Biochemistry. 2004 Nov 9;43(44):13955-62. doi: 10.1021/bi0487387.
Several naturally occurring peptides and depsipeptides which include the cryptophycins, dolastatin 10, hemiasterlin, and phomopsin A have been found to be potent antimitotic agents, causing cell death at picomolar or low nanomolar concentrations. These compounds inhibit microtubule growth, modulate the dynamics of microtubules, and induce the self-association of tubulin dimers into single-walled rings and spirals. These peptides exhibit mutual competitive inhibition in binding to beta-tubulin, while noncompetitively inhibiting the binding of vinblastine and vincristine to beta-tubulin. Despite the abundance of biochemical information, the details of their molecular interactions with tubulin are not known. In this study, using a combination of molecular dynamics simulations and molecular docking studies, a common binding site for cryptophycin 1, cryptophycin 52, dolastatin 10, hemiasterlin, and phomopsin A on beta-tubulin has been identified. Application of these same methods to alpha-tubulin indicated no interaction between alpha-tubulin and any of the peptides. On the basis of the docking results, a model for the mechanism of microtubule disruption and formation of aberrant nonmicrotubule structures is proposed. Both the active site and mechanism of microtubule depolymerization predictions are in good agreement with experimental findings.
已发现几种天然存在的肽和缩肽,包括隐藻素、多拉司他汀10、半星菌素和拟茎点霉毒素A,它们是有效的抗有丝分裂剂,在皮摩尔或低纳摩尔浓度下可导致细胞死亡。这些化合物抑制微管生长,调节微管动力学,并诱导微管蛋白二聚体自缔合形成单壁环和螺旋。这些肽在与β-微管蛋白结合时表现出相互竞争抑制作用,同时非竞争性抑制长春碱和长春新碱与β-微管蛋白的结合。尽管有丰富的生化信息,但它们与微管蛋白分子相互作用的细节尚不清楚。在本研究中,结合分子动力学模拟和分子对接研究,已确定隐藻素1、隐藻素52、多拉司他汀10、半星菌素和拟茎点霉毒素A在β-微管蛋白上的一个共同结合位点。将这些相同方法应用于α-微管蛋白表明,α-微管蛋白与任何一种肽之间均无相互作用。基于对接结果,提出了一个微管破坏机制和异常非微管结构形成的模型。微管解聚预测的活性位点和机制均与实验结果高度吻合。