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首页> 外文期刊>International Journal of Nanomedicine >Imaging and kinetics of the bimolecular complex formed by the tumor suppressor p53 with ubiquitin ligase COP1 as studied by atomic force microscopy and surface plasmon resonance
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Imaging and kinetics of the bimolecular complex formed by the tumor suppressor p53 with ubiquitin ligase COP1 as studied by atomic force microscopy and surface plasmon resonance

机译:通过原子力显微镜和表面等离子体共振研究的肿瘤抑制剂P53与遍突结实酶COP1形成的肿瘤抑制器P53形成的成像和动力学

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摘要

p53 plays an important role in the safeguard of the genome but it is frequently downregulated mainly by E3 ubiquitin ligases among which COP1 plays an important role. The overexpression of COP1 has been reported to occur in several tumors and may be indicative of its overall oncogenic effect, which in turn might be originated by a direct interaction of COP1 with p53. Such an interaction may constitute a rewarding target for anticancer drug design strategies; therefore, a deeper understanding of its underlying molecular mechanism and kinetics is needed. The formation of a single p53–COP1 bimolecular complex was visualized by atomic force microscopy imaging on a mica substrate. The kinetic characterization of the complex, performed by atomic force spectroscopy and surface plasmon resonance, provided a K D value of ~10-8?M and a relative long lifetime in the order of minutes, both at the single-molecule level and in bulk solution. The surprisingly high affinity value and low dissociation rate of the?p53–COP1 bimolecular complex, which is even stronger than the p53–MDM2 complex, should be considered a benchmark for designing, development and optimization of suitable drugs able to antagonize the complex formation with the aim of preventing the inhibitory effect of COP1 on the p53 oncosuppressive function.
机译:P53在基因组的保障中起着重要作用,但它经常主要由E3泛素连接酶分发,其中COP1发挥着重要作用。据报道,COP1的过度表达在几种肿瘤中发生,并且可以指示其整体致癌效果,这又可以通过COP1与P53的直接相互作用。这种相互作用可能构成抗癌药物设计策略的有益目标;因此,需要更深入地了解其潜在的分子机制和动力学。通过在云母底物上通过原子力显微镜成像来观察单个P53-COP1双分子复合物的形成。由原子力光谱和表面等离子体共振进行的复合物的动力学表征提供了〜10 -8 / sup>Δm和相对长的寿命的k d 值。分钟的顺序,在单分子水平和散装溶液中。令人惊讶的高亲和力值和低离解率的Δp53-cop1双分子复合物,甚至比p53-mdm2复合物更强,应该被认为是用于设计,开发和优化能够拮抗复杂形成的合适药物的基准预防COP1对P53内核抑制功能的抑制作用的目的。

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