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Triazoles bind the C-terminal domain of SMO: Illustration by docking and molecular dynamics simulations the binding between SMO and triazoles

机译:三唑绑定SMO的C终端域:通过对接和分子动力学模拟SMO和三唑之间的绑定

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摘要

Itraconazole is an antagonist of the component Smoothened of Hedgehog pathway, which can inhibit the growth of medulloblastoma, basal cell carcinoma, and melanoma, etc. To research the binding mechanism of the Smoothened and triazoles, we used docking and molecular dynamics simulations on the Smoothened crystal structure and six triazoles. Unlike vismodegib, itraconazole can effectively bind into the pocket in the C-terminal domain of the Smoothened crystal structure instead of the N-terminal domain. The binding of itraconazole can change the conformation of the N-terminal domain even although itraconazole only had limited area contacting with N-terminal domain of the Smoothened. Besides, the binding of Itraconazole will not affect the binding of vismodegib. The strong binding affinity could be demonstrated between itraconazole and the Smoothened. Posaconazole and ketoconazole also had the strong binding affinity and the similar binding mode with the Smoothened crystal structure.
机译:Itraconazole是刺猬途径平滑的组分的拮抗剂,其可以抑制Medulloblastoma,基础细胞癌和黑素瘤等的生长,以研究平滑和三唑的结合机制,我们在平滑的情况下使用对接和分子动力学模拟 晶体结构和六个三倍。 与Vismodegib不同,Itraconazole可以有效地将切割晶体结构的C末端结构域的袋中与N-末端域中的袋中结合到袋中。 即使Itraconazole仅与平滑的N-末端结构域接触有限的区域,伊唑康唑的结合也可以改变N-末端结构域的构象。 此外,伊唑康唑的结合不会影响Vismodegib的结合。 在伊唑康唑和平滑之间可以证明强的结合亲和力。 波萨唑和酮康唑还具有强烈的结合亲和力和与平滑的晶体结构相似的结合模式。

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