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葡萄糖激酶与其变构激活剂相互作用的比较对接评估

Comparative docking assessment of glucokinase interactions with its allosteric activators.

作者信息

Kumari Vandana, Li Chenglong

机构信息

Division of Medicinal Chemistry and Pharmacognosy, College of Pharmacy, The Ohio State University, 500 West 12th Ave., Columbus, OH 43210, USA.

出版信息

Curr Chem Genomics. 2008 Dec 30;2:76-89. doi: 10.2174/1875397300802010076.

Abstract

Glucokinase (GK) is expressed in multiple organs and plays a key role in hepatic glucose metabolism and pancreatic insulin secretion. GK could indeed serve as pacemaker of glycolysis and could be an attractive target for type 2 diabetes (T2D). The recent preclinical data of first GK activator RO-28-1675 has opened up a new field of GK activation as a powerful tool in T2D therapies. The GK allosteric site is located ~20A away from glucose binding site. Chemical structure of Glucokinase activators (GKA) includes three chemical arms; all consisting of cyclic moiety and joined in a shape resembling the letter Y. In this study, comparative docking assessment using Autodock4 revealed that the three arms bind to three aromatic/hydrophobic subpockets at the allosteric site. Our dockings have overall consistency with experimental data in both docking modes and simulated binding free energies, and offer insights on understanding GK/GKA interactions and further GKA design. Specifically, for the first pocket, involvement of Arg63 as key residue in two specific hydrogen-bond formations with all allosteric activators defines the binding feature; for the second pocket, it has the most diverse binding interactions, mostly aromatic, hydrophobic and multiple hydrogen bonds. The site has the best potential for further GKA optimization by utilizing aromatic heterocycles and hydrogen bond forming linkers to build the GKA 2(nd) arm.

摘要

葡萄糖激酶(GK)在多个器官中表达,在肝脏葡萄糖代谢和胰腺胰岛素分泌中起关键作用。GK确实可作为糖酵解的起搏器,可能成为2型糖尿病(T2D)的一个有吸引力的靶点。首个GK激活剂RO-28-1675最近的临床前数据开启了GK激活这一全新领域,成为T2D治疗的有力工具。GK变构位点距离葡萄糖结合位点约20埃。葡萄糖激酶激活剂(GKA)的化学结构包括三个化学臂;均由环状部分组成,连接成类似字母Y的形状。在本研究中,使用Autodock4进行的比较对接评估显示,这三个臂与变构位点的三个芳香/疏水亚口袋结合。我们的对接在对接模式和模拟结合自由能方面与实验数据总体一致,并为理解GK/GKA相互作用及进一步的GKA设计提供了见解。具体而言,对于第一个口袋,精氨酸63作为关键残基与所有变构激活剂形成两个特定氢键,定义了结合特征;对于第二个口袋,它具有最多样化的结合相互作用,主要是芳香、疏水和多个氢键。通过利用芳香杂环和形成氢键的连接子构建GKA的第二个臂,该位点具有进一步优化GKA的最佳潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ea9/2803441/ccedc692a7f8/TOCHGENJ-2-76_F1.jpg

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