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Computational characterisation of the interactions between human ST6Gal I and transition-state analogue inhibitors: insights for inhibitor design

机译:抑制剂设计中的抑制剂设计中的相互作用的计算表征

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Human -galactoside -2,6-sialyltransferase I (hST6Gal I) catalyses the synthesis of sialylated glycoconjugates involved in cell-cell interactions. Overexpression of hST6Gal I is observed in many different types of cancers, where it promotes metastasis through altered cell surface sialylation. A wide range of sialyltransferase (ST) inhibitors have been developed based on the natural donor, cytidine 5-monophosphate N-acetylneuraminic acid (CMP-Neu5Ac). Of these, analogues that are structurally similar to the transition state exhibit the highest inhibitory activity. In order to design inhibitors that are readily accessible synthetically and with favourable pharmacokinetic properties, an investigation of the replacement of the charged phosphodiester-linker, present in many ST inhibitors, with a potential neutral isostere such as a carbamate or a 1,2,3-triazole has been undertaken. To investigate this, molecular docking and molecular dynamics simulations were performed. These simulations provided an insight into the binding mode of previously reported phosphodiester-linked ST inhibitors and demonstrated that targeting the proposed sialyl acceptor site is a viable option for producing selective inhibitors. The potential for a carbamate- or triazole-linker as an isosteric replacement for the phosphodiester in transition-state analogue ST inhibitors was established using molecular docking. Molecular dynamics simulations of carbamate- and phosphodiester-linked compounds revealed that both classes exhibit consistent interactions with hST6Gal I. Overall, the results obtained from this study provide a rationale for synthetic and biological evaluation of triazole- and carbamate-linked transition-state analogue ST inhibitors as potential new antimetastatic agents. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:人 - 白藜芦醇糖苷-2,6-唾液酸氢酶I(HST6GAL I)催化了参与细胞 - 细胞相互作用的唾液酸化糖缀合物的合成。在许多不同类型的癌症中观察到HST6Gal I的过度表达,其中通过改变的细胞表面唾液化促进转移。基于天然供体,胞苷5-单磷酸N-乙酰氨酰氨基丙酸(CMP-NEU5Ac)开发了各种唾液酸糖酶(ST)抑制剂。其中,在结构上类似于过渡状态的类似物表现出最高的抑制活性。为了设计易于易于易于和有利的药代动力学性能的抑制剂,对许多ST抑制剂中存在的带电磷酸二酯 - 接头的替代的研究,其中潜在的中性等级等蛋白酶或1,2,3 -Triazole已经进行。为了研究这一点,进行分子对接和分子动力学模拟。这些模拟提供了先前报道的磷酸二酯连接的ST抑制剂的结合模式的洞察力,并证明靶向所提出的SiaLyl受体位点是制备选择性抑制剂的可行选择。使用分子对接建立了氨基甲酸酯或三唑 - 连接物作为磷酸二酯的基石替代的潜力。氨基甲酸酯和磷酸二酯 - 连接化合物的分子动力学模拟显示,两种类别表现出与HST6GAL I的一致相互作用。总体而言,从该研究中获得的结果为三唑和氨基甲酸酯连接的过渡状态模拟ST提供了合成和生物学评价的理由。抑制剂作为潜在的新抗致剂剂。版权所有(c)2015 John Wiley&Sons,Ltd。

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