首页> 外文期刊>Journal of Molecular Biology >High-resolution crystal structure of aldose reductase complexed with the novel sulfonyl-pyridazinone inhibitor exhibiting an alternative active site anchoring group
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High-resolution crystal structure of aldose reductase complexed with the novel sulfonyl-pyridazinone inhibitor exhibiting an alternative active site anchoring group

机译:醛糖还原酶的高分辨率晶体结构与表现出替代活性位点锚定组的新型磺酰基 - 哒嗪酮抑制剂复合

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The crystal structure of a novel sulfonyl-pyridazinone inhibitor in complex with aldose reductase, the first enzyme of the polyol pathway, has been determined to 1.43 angstrom and 0.95 angstrom resolution. The ternary complex of inhibitor, cofactor and enzyme has been obtained by soaking of preformed crystals. Supposedly due to low solubility in the crystallisation buffer, in both structures the inhibitor shows reduced occupancy of 74% and 46% population, respectively. The pyridazinone head group of the inhibitor occupies the catalytic site, whereas the chloro-benzofuran moiety penetrates into the opened specificity pocket. The high-resolution structure provides some evidence that the pyridazinone group binds in a negatively charged deprotonated state, whereas the neighbouring His110 residue most likely adopts a neutral uncharged status. Since the latter structure is populated by the ligand to only 46%, a second conformation of the C-terminal ligand-binding region can be detected. This conformation corresponds to the closed state of the specificity pocket when no or only small ligands are bound to aldose reductase. The two conformational states are in good agreement with frames observed along a molecular dynamics trajectory describing the transition from closed to open situation. Accordingly, both geometries, superimposed in the averaged crystal structure, correspond to snapshots of the ligand-bound and the unbound state. Isothermal titration calorimetry has been applied to determine the binding constants of the investigated pyridazinone in comparison to the hydantoin sorbinil and the carboxylate-type inhibitors IDD 594 and tolrestat. The pyridazinone exhibits a binding affinity similar to those of tolrestat and sorbinil, and shows slightly reduced affinity compared to IDD 594. These studies elucidating the binding mode and providing information about protonation states of protein side-chains involved in binding of this novel class of inhibitors establish the platform for further structure-based drug design. (c) 2005 Elsevier Ltd. All rights reserved.
机译:新型磺酰哒嗪酮抑制剂的晶体结构与醛糖还原酶,多元醇途径的第一种酶,已经确定为1.43埃和0.95埃分辨率。通过浸泡预制晶体,获得了抑制剂,辅因子和酶的三元复合物。由于结晶缓冲液中的溶解度低,在两种结构中,抑制剂分别显示出74%和46%的群体的占用率。抑制剂的哒嗪酮头组占催化部位,而氯 - 苯并呋喃部分渗透到开放的特异性口袋中。高分辨率结构提供了一些证据表明哒嗪酮基团在带负电的质子化状态下结合,而邻近的HIS110残基最有可能采用中性不带电状态。由于后一种结构被配体填充到仅46%,因此可以检测C-末端配体结合区域的第二构象。当没有或仅小配体与醛糖还原酶结合时,该构象对应于特异性袋的闭合状态。两个构象状态与沿着分子动力学轨迹观察到的框架良好,描述了从关闭到开放情况的过渡。因此,叠加在平均晶体结构中的几何形状对应于配体束和未结合状态的快照。已经应用等温滴定热量测定法以确定研究的哒嗪酮的结合常数与乙藻氏菌素和羧酸盐型抑制剂IDD 594和甲醛相比。哒嗪酮表现出类似于甲苯酚和索氏菌素的结合亲和力,与IDD 594相比略微降低了亲和力。这些研究阐明了结合模式并提供了有关蛋白质侧链的质子化状态的信息,参与该新型抑制剂的结合。建立进一步结构的药物设计平台。 (c)2005 Elsevier有限公司保留所有权利。

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