Determination of nucleoside DOT1L inhibitors’ residence times by τRAMD simulations

Carlos D. Flores-León, Luis Fernando Colorado-Pablo, Miguel Á. Santos-Contreras, R. Aguayo‐Ortiz
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Abstract

Human epigenetic enzyme disruptor of telomeric silencing 1-like (DOT1L) is a key drug target for treating acute myeloid leukemia. Several nucleoside and non-nucleoside DOT1L inhibitors have been developed to inhibit its histone methyltransferase activity. Non-mechanism-based nucleoside DOT1L inhibitors have shown good inhibitory activity and high on-target residence times. Previous computational studies have explored the dynamic behavior of this group of molecules on DOT1L to design compounds with enhanced binding affinities. Nevertheless, it is well known that drug-target kinetics also plays a crucial role in the discovery of new drugs. Therefore, we performed τ-Random Acceleration Molecular Dynamics (τRAMD) simulations to estimate the residence times of nucleoside DOT1L inhibitors. The high correlation between the calculated and experimental residence times suggested that the method can reliably estimate the residence time of nucleoside DOT1L inhibitors when modifications are made to those substituents that occupy the buried hydrophobic pocket of the active site, exhibit hydrophobic interactions with F245 or that form H-bonds with D161 and G163. Overall, this study will be a step toward understanding the binding kinetics of nucleoside DOT1L inhibitors for the treatment of acute myeloid leukemia.
τRAMD模拟测定核苷DOT1L抑制剂的停留时间
人表观遗传学端粒沉默1-样酶干扰因子(DOT1L)是治疗急性粒细胞白血病的关键药物靶点。已经开发了几种核苷和非核苷DOT1L抑制剂来抑制其组蛋白甲基转移酶活性。基于非机制的核苷DOT1L抑制剂显示出良好的抑制活性和高的靶向停留时间。先前的计算研究已经探索了这组分子在DOT1L上的动力学行为,以设计具有增强结合亲和力的化合物。然而,众所周知,药物靶向动力学在新药的发现中也起着至关重要的作用。因此,我们进行了τ-随机加速分子动力学(τRAMD)模拟,以估计核苷DOT1L抑制剂的停留时间。计算的停留时间和实验的停留时间之间的高度相关性表明,当对那些占据活性位点的隐藏疏水口袋、与F245表现出疏水相互作用或与D161和G163形成氢键的取代基进行修饰时,该方法可以可靠地估计核苷DOT1L抑制剂的停留时间。总的来说,这项研究将是了解核苷DOT1L抑制剂治疗急性粒细胞白血病的结合动力学的一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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