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一种合成烟酰胺辅因子仿生剂对腺苷-L-高半胱氨酸水解酶的抑制作用

-Adenosyl-L-Homocysteine Hydrolase Inhibition by a Synthetic Nicotinamide Cofactor Biomimetic.

作者信息

Kailing Lyn L, Bertinetti Daniela, Paul Caroline E, Manszewski Tomasz, Jaskolski Mariusz, Herberg Friedrich W, Pavlidis Ioannis V

机构信息

Department of Biochemistry, University of Kassel, Kassel, Germany.

Laboratory of Organic Chemistry, Wageningen University & Research, Wageningen, Netherlands.

出版信息

Front Microbiol. 2018 Mar 21;9:505. doi: 10.3389/fmicb.2018.00505. eCollection 2018.

Abstract

-adenosyl-L-homocysteine (SAH) hydrolases (SAHases) are involved in the regulation of methylation reactions in many organisms and are thus crucial for numerous cellular functions. Consequently, their dysregulation is associated with severe health problems. The SAHase-catalyzed reaction is reversible and both directions depend on the redox activity of nicotinamide adenine dinucleotide (NAD) as a cofactor. Therefore, nicotinamide cofactor biomimetics (NCB) are a promising tool to modulate SAHase activity. In the present study, we investigated 10 synthetic truncated NAD analogs against a SAHase from the root-nodulating bacterium . Among this set of analogs, one was identified to inhibit the SAHase in both directions. Isothermal titration calorimetry (ITC) and crystallography experiments suggest that the inhibitory effect is not mediated by a direct interaction with the protein. Neither the apo-enzyme (i.e., deprived of the natural cofactor), nor the holo-enzyme (i.e., in the NAD-bound state) were found to bind the inhibitor. Yet, enzyme kinetics point to a non-competitive inhibition mechanism, where the inhibitor acts on both, the enzyme and enzyme-SAH complex. Based on our experimental results, we hypothesize that the NCB inhibits the enzyme via oxidation of the enzyme-bound NADH, which may be accessible through an open molecular gate, leaving the enzyme stalled in a configuration with oxidized cofactor, where the reaction intermediate can be neither converted nor released. Since the reaction mechanism of SAHase is quite uncommon, this kind of inhibition could be a viable pharmacological route, with a low risk of off-target effects. The NCB presented in this work could be used as a template for the development of more potent SAHase inhibitors.

摘要

腺苷-L-高半胱氨酸(SAH)水解酶(SAHases)参与许多生物体中甲基化反应的调节,因此对众多细胞功能至关重要。因此,它们的失调与严重的健康问题相关。SAHase催化的反应是可逆的,两个方向都取决于作为辅因子的烟酰胺腺嘌呤二核苷酸(NAD)的氧化还原活性。因此,烟酰胺辅因子仿生剂(NCB)是调节SAHase活性的一种有前途的工具。在本研究中,我们针对一种来自根瘤菌的SAHase研究了10种合成的截短NAD类似物。在这组类似物中,有一种被鉴定为在两个方向上都能抑制SAHase。等温滴定量热法(ITC)和晶体学实验表明,抑制作用不是由与蛋白质的直接相互作用介导的。无论是脱辅基酶(即不含天然辅因子)还是全酶(即处于NAD结合状态)都未发现与抑制剂结合。然而,酶动力学表明是一种非竞争性抑制机制,其中抑制剂对酶和酶-SAH复合物都有作用。基于我们的实验结果,我们假设NCB通过氧化与酶结合的NADH来抑制酶,这可能通过一个开放的分子门实现,使酶停滞在氧化辅因子的构型中,反应中间体既不能转化也不能释放。由于SAHase的反应机制相当罕见,这种抑制可能是一种可行的药理学途径,脱靶效应风险较低。本文中介绍的NCB可作为开发更有效SAHase抑制剂的模板。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c0e/5871694/83f3ebf061e6/fmicb-09-00505-g001.jpg

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