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首页> 外文期刊>Journal of chemical information and modeling >Exploiting Cryo-EM Structural Information and All-Atom Simulations To Decrypt the Molecular Mechanism of Splicing Modulators
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Exploiting Cryo-EM Structural Information and All-Atom Simulations To Decrypt the Molecular Mechanism of Splicing Modulators

机译:利用Cryo-EM结构信息和全原子模拟来解密剪接调节剂的分子机制

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摘要

Splicing modulators (SMs) pladienolides, herboxidienes, and spliceostatins exert their antitumor activity by altering the ability of SF3B1 and PHF5A proteins, components of SF3b splicing factor, to recognize distinct intron branching point sequences, thus finely calibrating constitutive/alternative/aberrant splicing of pre-mRNA. Here, by exploiting structural information obtained from cryo-EM data, and by performing multiple mu s-long all-atom simulations of SF3b in apo form and in complex with selected SMs, we disclose how these latter seep into the narrow slit at the SF3B1/PHF5A protein interface. This locks the intrinsic open/closed conformational transitions of SFB1's solenoidal structure into the open state. As a result, SMs prevent the formation of a closed/intron-loaded conformation of the SF3B1 protein by decreasing the internal SF3B1 cross-correlation and reducing SF3B1's functional plasticity. We further compellingly support the proposition that SMs' action exceeds a purely competitive inhibition. Indeed, our simulations also demonstrate that the introduction of recurrent drug resistance/sensitizing mutations in SF3B1 or PHF5A, besides affecting the binding affinity of SMs, likewise influence the functional dynamics of SF3B1. This knowledge clarifies the molecular terms of SF3b modulation by small-molecules, fostering the rational-based discovery of drugs tackling distinct cancer types resulting from dysregulated splicing. This work also supports the coming of age usage of cryo-EM structural data in forthcoming drug-discovery studies.
机译:拼接调节剂(SMS)Pladienolides,苯脲和抗乳蛋白酶通过改变SF3B1和PHF5A蛋白的能力,SF3B剪接因子的组分来施加其抗肿瘤活性,以识别明显的内含子分支点序列,从而精细校准前的组成型/替代/异常剪接-mrna。这里,通过利用从Cryo-EM数据获得的结构信息,并且通过在APO形式中执行SF3B的多个MU S-Long全原子模拟,并且与所选的SMS复杂,我们公开了这些后者在SF3B1的窄切口中的渗入狭窄/ phf5a蛋白质界面。这将SFB1的电磁结构的固有开/闭合构象转变锁定到打开状态。结果,SMS通过降低内部SF3B1互相关并降低SF3B1的功能可塑性来防止形成SF3B1蛋白的闭合/内含子加载的构象。我们进一步推动了支持SMS行动超过纯粹竞争抑制的命题。实际上,我们的仿真还证明,除了影响SMS的结合亲和力之外,SF3B1或PHF5a中的复发性耐药性/敏化突变的引入同样影响SF3B1的功能动态。本知识阐明了小分子SF3B调节的分子方面,促进了基于原始的药物发现,这些药物解决了多种癌症引起的不同癌症类型。该工作还支持即将到来的药物发现研究中的Cryo-EM结构数据的年龄使用。

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