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长程分子动力学研究 UDP-GlcNAc 对真核生物葡萄糖胺-6-磷酸合酶活性的调节作用。

Long range molecular dynamics study of regulation of eukaryotic glucosamine-6-phosphate synthase activity by UDP-GlcNAc.

机构信息

Department of Pharmaceutical Technology and Biochemistry, Gdansk University of Technology, ul. Narutowicza 11/12, 80-233 Gdańsk, Poland.

出版信息

J Mol Model. 2011 Dec;17(12):3103-15. doi: 10.1007/s00894-011-1003-x. Epub 2011 Mar 2.

Abstract

Glucosamine-6-phosphate (GlcN-6-P) synthase catalyses the first and practically irreversible step in hexosamine metabolism. The final product of this pathway, uridine 5' diphospho N-acetyl-D-glucosamine (UDP-GlcNAc), is an essential substrate for assembly of bacterial and fungal cell walls. Moreover, the enzyme is involved in phenomenon of hexosamine induced insulin resistance in type II diabetes, which makes it a potential target for antifungal, antibacterial and antidiabetic therapy. The crystal structure of the isomerase domain of GlcN-6-P synthase from human pathogenic fungus Candida albicans, in complex with UDP-GlcNAc has been solved recently but it has not revealed the molecular mechanism of inhibition taking place under UDP-GlcNAc influence, the unique feature of the eukaryotic enzyme. UDP-GlcNAc is a physiological inhibitor of GlcN-6-P synthase, binding about 1 nm away from the active site of the enzyme. In the present work, comparative molecular dynamics simulations of the free and UDP-GlcNAc-bounded structures of GlcN-6-P synthase have been performed. The aim was to complete static X-ray structural data and detect possible changes in the dynamics of the two structures. Results of the simulation studies demonstrated higher mobility of the free structure when compared to the liganded one. Several amino acid residues were identified, flexibility of which is strongly affected upon UDP-GlcNAc binding. Importantly, the most fixed residues are those related to the inhibitor binding process and to the catalytic reaction. The obtained results constitute an important step toward understanding of mechanism of GlcN-6-P synthase inhibition by UDP-GlcNAc molecule.

摘要

葡萄糖胺-6-磷酸(GlcN-6-P)合酶催化己糖胺代谢中的第一步,也是实际上不可逆转的一步。该途径的最终产物尿苷 5′二磷酸-N-乙酰-D-葡萄糖胺(UDP-GlcNAc)是细菌和真菌细胞壁组装的必需底物。此外,该酶还参与了 II 型糖尿病中己糖胺诱导的胰岛素抵抗现象,这使其成为抗真菌、抗菌和抗糖尿病治疗的潜在靶点。最近,已解决了来自人病原真菌白色念珠菌的 GlcN-6-P 合酶异构酶结构域与 UDP-GlcNAc 复合物的晶体结构,但它并未揭示在 UDP-GlcNAc 影响下发生的抑制的分子机制,这是真核酶的独特特征。UDP-GlcNAc 是 GlcN-6-P 合酶的生理抑制剂,与酶的活性位点约有 1nm 的距离。在本工作中,对 GlcN-6-P 合酶的游离和 UDP-GlcNAc 结合结构进行了比较分子动力学模拟。目的是补充静态 X 射线结构数据,并检测两种结构动力学上的可能变化。模拟研究的结果表明,与结合配体的结构相比,游离结构具有更高的流动性。鉴定出几个氨基酸残基,其柔性在与 UDP-GlcNAc 结合时受到强烈影响。重要的是,固定性最强的残基与抑制剂结合过程和催化反应有关。所得结果是理解 UDP-GlcNAc 分子抑制 GlcN-6-P 合酶机制的重要步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a42b/3224219/a39af5f9c63a/894_2011_1003_Fig1_HTML.jpg

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