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罗奈帕司他(SST0001)对人乙酰肝素酶抑制机制的动力学分析及分子模拟

Kinetic analysis and molecular modeling of the inhibition mechanism of roneparstat (SST0001) on human heparanase.

作者信息

Pala Daniele, Rivara Silvia, Mor Marco, Milazzo Ferdinando Maria, Roscilli Giuseppe, Pavoni Emiliano, Giannini Giuseppe

机构信息

Dipartimento di Farmacia, Università degli Studi di Parma, Parco Area delle Scienze 27/A, Parma 43124, Italy.

Dipartimento di Farmacia, Università degli Studi di Parma, Parco Area delle Scienze 27/A, Parma 43124, Italy

出版信息

Glycobiology. 2016 Jun;26(6):640-54. doi: 10.1093/glycob/cww003. Epub 2016 Jan 13.

Abstract

Heparanase is a β-d-glucuronidase which cleaves heparan sulfate chains in the extracellular matrix and on cellular membranes. A dysregulated heparanase activity is intimately associated with cell invasion, tumor metastasis and angiogenesis, making heparanase an attractive target for the development of anticancer therapies. SST0001 (roneparstat; Sigma-Tau Research Switzerland S.A.) is a non-anticoagulant 100% N-acetylated and glycol-split heparin acting as a potent heparanase inhibitor, currently in phase I in advanced multiple myeloma. Herein, the kinetics of heparanase inhibition by roneparstat is reported. The analysis of dose-inhibition curves confirmed the high potency of roneparstat (IC50 ≈ 3 nM) and showed, at higher concentrations, a Hill coefficient consistent with the engagement of two molecules of inhibitor. A homology model of human heparanase GS3 construct was built and used for docking experiments with inhibitor fragments. The model has high structural similarity with the recently reported crystal structure of human heparanase. Different interaction schemes are proposed, which support the hypothesis of a complex binding mechanism involving the recruitment of one or multiple roneparstat chains, depending on its concentration. In particular, docking solutions were obtained in which (i) a single roneparstat molecule interacts with both heparin-binding domains (HBDs) of heparanase or (ii) two fragments of roneparstat interact with either HBD-1 or HBD-2, consistent with the possibility of different inhibitor:enzyme binding stoichiometries. This study provides unique insights into the mode of action of roneparstat as well as clues of its interaction with heparanase at a molecular level, which could be exploited to design novel potential inhibitor molecules.

摘要

乙酰肝素酶是一种β - d - 葡糖醛酸酶,可切割细胞外基质和细胞膜上的硫酸乙酰肝素链。乙酰肝素酶活性失调与细胞侵袭、肿瘤转移和血管生成密切相关,这使得乙酰肝素酶成为抗癌治疗开发的一个有吸引力的靶点。SST0001(roneparstat;瑞士西格玛 - 陶研究公司)是一种非抗凝的100% N - 乙酰化且糖基裂解的肝素,作为一种有效的乙酰肝素酶抑制剂,目前正处于晚期多发性骨髓瘤的I期试验阶段。本文报道了roneparstat对乙酰肝素酶的抑制动力学。剂量 - 抑制曲线分析证实了roneparstat的高效性(IC50≈3 nM),并表明在较高浓度下,希尔系数与两个抑制剂分子的结合情况一致。构建了人乙酰肝素酶GS3构建体的同源模型,并用于与抑制剂片段的对接实验。该模型与最近报道的人乙酰肝素酶晶体结构具有高度的结构相似性。提出了不同的相互作用方案,这些方案支持了一种复杂结合机制的假设,即根据其浓度募集一条或多条roneparstat链。特别是,获得了对接解决方案,其中(i)单个roneparstat分子与乙酰肝素酶的两个肝素结合结构域(HBDs)相互作用,或(ii)roneparstat的两个片段与HBD - 1或HBD - 2相互作用,这与不同的抑制剂:酶结合化学计量比的可能性一致。这项研究为roneparstat的作用模式提供了独特的见解,并在分子水平上揭示了其与乙酰肝素酶相互作用的线索,这些线索可用于设计新型潜在抑制剂分子。

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