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海洋弧菌 GH20 外切-β-N-乙酰氨基葡萄糖苷酶的反应中间体类似物的强效抑制作用。

Potent inhibition of a GH20 exo-β-N-acetylglucosaminidase from marine Vibrio bacteria by reaction intermediate analogues.

机构信息

Biochemistry-Electrochemistry Research Unit and School of Chemistry, Institute of Science, Suranaree University of Technology, Nakhon Ratchasima 30000, Thailand.

School of Molecular Sciences, The University of Western Australia, 35 Stirling Highway, Crawley, WA 6009, Australia.

出版信息

Int J Biol Macromol. 2018 Aug;115:1165-1173. doi: 10.1016/j.ijbiomac.2018.04.193. Epub 2018 May 3.

Abstract

Exo-β-N-acetylglucosaminidases (GlcNAcases) are hydrolytic enzymes involved in the metabolism of chitin in bacteria and in eukaryotic glycosphingolipid metabolism, with genetic defects in human GlcNAcases (HexA and HexB) resulting in Tay-Sachs and Sandhoff diseases, respectively. Here, we determined the effects of three known inhibitors of exo-β-N-acetylglucosaminidases (PUGNAc, NHAcCAS and NHAcDNJ) on a GH20 exo-β-N-GlcNAcase (VhGlcNAcase) from the pathogenic bacterium Vibrio harveyi, in dose-response experiments. The inhibitors were shown to modify the kinetic parameters (both K and k), yielding significant decreases in the overall efficiency of the enzyme in hydrolyzing the natural substrate diNAG. Molecular interactions between the inhibitors and the enzyme were investigated by isothermal calorimetry (ITC), and were confirmed using molecular docking. VhGlcNAcase was strongly inhibited by these compounds, with PUGNAc having the lowest IC value, of 1.2 μM. Molecular docking suggested that the inhibitors mimicked reaction intermediates, with enzyme-inhibitor interactions being similar to those of the enzyme with diNAG. The equilibrium dissociation constants (K) obtained from ITC were 0.19 μM for PUGNAc, 12.9 μM for NHAcCAS and 25.6 μM for NHAcDNJ, confirming that PUGNAc was the most potent inhibitor. The ITC data indicated that the binding of the enzyme to the inhibitors was driven by enthalpy. The negative heat capacity change (ΔC) of -0.34 ± 0.05 kcal·mol·K indicates that hydrophobic interactions make a substantial contribution to the molecular interactions between PUGNAc and the enzyme. Our results suggest that PUGNAc is a highly potent inhibitor, and suggest its usefulness as a scaffold for potential drugs targeting GlcNAcase-related metabolic diseases.

摘要

外切-β-N-乙酰氨基葡萄糖苷酶(GlcNAcases)是参与细菌壳聚糖代谢和真核糖脂代谢的水解酶,人类 GlcNAcases(HexA 和 HexB)的遗传缺陷分别导致泰萨二氏症和桑格福德氏症。在这里,我们在剂量反应实验中测定了三种已知的外切-β-N-乙酰氨基葡萄糖苷酶抑制剂(PUGNAc、NHAcCAS 和 NHAcDNJ)对来自致病性细菌哈维弧菌的 GH20 外切-β-N-GlcNAcase(VhGlcNAcase)的影响。抑制剂被证明可以修饰动力学参数(K 和 k),从而显著降低酶水解天然底物二 NAG 的整体效率。通过等温量热法(ITC)研究了抑制剂与酶之间的分子相互作用,并通过分子对接进行了验证。这些化合物强烈抑制 VhGlcNAcase,其中 PUGNAc 的 IC 值最低,为 1.2 μM。分子对接表明抑制剂模拟了反应中间体,酶-抑制剂相互作用与酶与二 NAG 的相互作用相似。ITC 获得的平衡解离常数(K)分别为 PUGNAc 为 0.19 μM,NHAcCAS 为 12.9 μM,NHAcDNJ 为 25.6 μM,证实 PUGNAc 是最有效的抑制剂。ITC 数据表明,酶与抑制剂的结合是由焓驱动的。-0.34±0.05 kcal·mol·K 的负热容变化(ΔC)表明,疏水相互作用对 PUGNAc 与酶之间的分子相互作用有很大贡献。我们的结果表明,PUGNAc 是一种高效的抑制剂,并表明其作为针对 GlcNAcase 相关代谢疾病的潜在药物靶标的有用性。

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