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腺苷脱氨酶 - 新型哌嗪衍生物的作用靶点。

Adenosine deaminase - A target for new piperazine derivatives.

机构信息

H. Buniatian Institute of Biochemistry of Armenian NAS, 5/1, P. Sevak Str., Yerevan 0014, Armenia.

A.L. Mnjoyan Institute of Fine Organic Chemistry of Armenian NAS, 26 Azatutyan Ave., Yerevan 0014, Armenia.

出版信息

Biophys Chem. 2021 Oct;277:106658. doi: 10.1016/j.bpc.2021.106658. Epub 2021 Jul 24.

Abstract

The level of adenosine deaminase (ADA) activity increases in pathological effusions. Therefore, the concentration of its substrate, anti-inflammatory adenosine, decreases, thereby aggravating inflammation. Hence, the quest for ADA inhibiting compounds is an actual problem in medicine and pharmacology. This work describes the inhibition of bovine ADA by new synthesized piperazine compounds. 15 compounds were screened; IC values for 5 more potent ones of them were between 3.4 and 98.6 μg/ml. The inhibition of activity of intracellular and ecto- forms of ADA by the most effective "compound 1" was of competitive nature. For these two forms of enzyme, the inhibition constants, K (1.5 and 115 μM) and IC values (6.5 and 480 μM), respectively, differed by nearly two orders. The constant of bimolecular interaction K between "compound 1" and the tryptophan residues in ADA was estimated in fluorescence quenching study as of 0.145 ± 0.027 μM. Finally, the molecular interactions between "compound 1" and the bovine enzyme ADA were highlighted through molecular docking studies.

摘要

腺苷脱氨酶(ADA)的活性水平在病理性渗出液中升高。因此,其抗炎底物——腺苷的浓度降低,从而加重炎症。因此,寻找 ADA 抑制化合物是医学和药理学中的一个实际问题。本工作描述了新合成的哌嗪类化合物对牛 ADA 的抑制作用。筛选了 15 种化合物,其中 5 种更有效的化合物的 IC 值在 3.4 和 98.6 μg/ml 之间。最有效的“化合物 1”对内源和外源性 ADA 活性的抑制作用具有竞争性。对于这两种形式的酶,抑制常数 K(分别为 1.5 和 115 μM)和 IC 值(分别为 6.5 和 480 μM)相差近两个数量级。荧光猝灭研究中,“化合物 1”与 ADA 色氨酸残基之间的双分子相互作用常数 K 估计为 0.145±0.027 μM。最后,通过分子对接研究强调了“化合物 1”与牛 ADA 之间的分子相互作用。

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