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Funnel 分子动力学在整合素 αIIbβ3 与 RGD 肽复合物中的应用。

Application of Funnel Metadynamics to the Platelet Integrin αIIbβ3 in Complex with an RGD Peptide.

机构信息

Scientific Computing and Imaging Institute, University of Utah, Salt Lake City, UT 84112, USA.

Department of Biomedical Engineering, University of Utah, Salt Lake City, UT 84112, USA.

出版信息

Int J Mol Sci. 2024 Jun 14;25(12):6580. doi: 10.3390/ijms25126580.

Abstract

Integrin αβ mediates platelet aggregation by binding the Arginyl-Glycyl-Aspartic acid (RGD) sequence of fibrinogen. RGD binding occurs at a site topographically proximal to the α and β subunits, promoting the conformational activation of the receptor from bent to extended states. While several experimental approaches have characterized RGD binding to αβ integrin, applying computational methods has been significantly more challenging due to limited sampling and the need for a priori information regarding the interactions between the RGD peptide and integrin. In this study, we employed all-atom simulations using funnel metadynamics (FM) to evaluate the interactions of an RGD peptide with the α and β subunits of integrin. FM incorporates an external history-dependent potential on selected degrees of freedom while applying a funnel-shaped restraint potential to limit RGD exploration of the unbound state. Furthermore, it does not require a priori information about the interactions, enhancing the sampling at a low computational cost. Our FM simulations reveal significant molecular changes in the β subunit of integrin upon RGD binding and provide a free-energy landscape with a low-energy binding mode surrounded by higher-energy prebinding states. The strong agreement between previous experimental and computational data and our results highlights the reliability of FM as a method for studying dynamic interactions of complex systems such as integrin.

摘要

整合素 αβ 通过结合纤维蛋白原的精氨酸-甘氨酸-天冬氨酸(RGD)序列来介导血小板聚集。RGD 结合发生在与 α 和 β 亚基拓扑上接近的位点,促进受体从弯曲状态到伸展状态的构象激活。虽然几种实验方法已经描述了 RGD 与 αβ 整合素的结合,但由于采样有限且需要关于 RGD 肽与整合素之间相互作用的先验信息,应用计算方法具有更大的挑战性。在这项研究中,我们使用全原子模拟和漏斗型元动力学(FM)来评估 RGD 肽与整合素的 α 和 β 亚基的相互作用。FM 在选定的自由度上结合外部历史相关势能,同时应用漏斗形约束势能来限制 RGD 对未结合状态的探索。此外,它不需要有关相互作用的先验信息,从而以较低的计算成本提高采样率。我们的 FM 模拟揭示了 RGD 结合后整合素 β 亚基的显著分子变化,并提供了一个自由能景观,其中低能量结合模式周围是具有更高能量的预结合状态。先前的实验和计算数据与我们的结果之间的强烈一致性突出了 FM 作为研究整合素等复杂系统动态相互作用的方法的可靠性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6091/11203998/0756557630fd/ijms-25-06580-g001.jpg

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