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通过脂肪酶的结构控制一步合成 4-辛烯酸正丁酯。

One-Step Synthesis of 4-Octyl Itaconate through the Structure Control of Lipase.

机构信息

Beijing Bioprocess Key Laboratory and State Key Laboratory of Chemical Resource Engineering, College of Life Science and Technology, Beijing University of Chemical Technology (BUCT), Beijing 100029, P. R. China.

出版信息

J Org Chem. 2021 Jun 18;86(12):7895-7903. doi: 10.1021/acs.joc.0c02995. Epub 2021 Jun 4.

Abstract

4-Octyl itaconate is a novel antiviral and immunoregulatory small molecule showing great potential in the treatment of various autoimmune diseases and viral infections. It is difficult to selectively esterify the C4 carboxyl group of itaconate acid via one-step direct esterification using chemical catalysts, while the two-step route with itaconic anhydride as an intermediate is environmentally unfriendly and costly. This research investigated the one-step and green synthesis of 4-octyl itaconate through the structure control of lipase, obtaining 4-octyl itaconate with over 98% yield and over 99% selectivity. Multiscale molecular dynamics simulations were applied to investigate the reaction mechanism. The cavity pocket of lipases resulted in a 4-octyl itaconate selectivity by affecting distribution of substrates toward the catalytic site. Toluene could enhance monoesterification in the C4 carboxyl group and contribute to a nearly 100% conversion from itaconate acid into 4-octyl itaconate by adjusting the catalytic microenvironment around the lipase, producing a shrinkage effect on the channel.

摘要

4-辛基衣康酸酯是一种新型的抗病毒和免疫调节小分子,在治疗各种自身免疫性疾病和病毒感染方面具有巨大的潜力。通过化学催化剂的一步直接酯化反应,很难对衣康酸的 C4 羧基进行选择性酯化,而以衣康酸酐为中间体的两步路线则不环保且成本高。本研究通过脂肪酶的结构控制,对 4-辛基衣康酸酯进行了一步法和绿色合成,得到了产率超过 98%、选择性超过 99%的 4-辛基衣康酸酯。采用多尺度分子动力学模拟研究了反应机制。脂肪酶的腔穴口袋通过影响底物向催化位点的分布,导致 4-辛基衣康酸酯的选择性。甲苯通过调节脂肪酶周围的催化微环境,增强了 C4 羧基中单酯化作用,使衣康酸几乎 100%转化为 4-辛基衣康酸,对通道产生收缩效应。

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