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新型间位和对位取代的 N-苄基保护奎宁环酯的制备及其与丁酰胆碱酯酶的拆分。

Preparation of novel meta- and para-substituted N-benzyl protected quinuclidine esters and their resolution with butyrylcholinesterase.

机构信息

Department of Chemistry, Faculty of Science, University of Zagreb, Horvatovac 102A, HR-10 000 Zagreb, Croatia.

出版信息

Molecules. 2012 Jan 16;17(1):786-95. doi: 10.3390/molecules17010786.

Abstract

Since the optically active quinuclidin-3-ol is an important intermediate in the preparation of physiologically or pharmacologically active compounds, a new biocatalytic method for the production of chiral quinuclidin-3-ols was examined. Butyrylcholinesterase (BChE; EC 3.1.1.8) was chosen as a biocatalyst in a preparative kinetic resolution of enantiomers. A series of racemic, (R)- and (S)-esters of quinuclidin-3-ol and acetic, benzoic, phthalic and isonicotinic acids were synthesized, as well as their racemic quaternary N-benzyl, meta- and para-N-bromo and N-methylbenzyl derivatives. After the resolution, all N-benzyl protected groups were successfully removed by catalytic transfer hydrogenation with ammonium formate (10% Pd-C). Hydrolyses studies with BChE confirmed that (R)-enantiomers of the prepared esters are much better substrates for the enzyme than (S)-enantiomers. Introduction of bromine atom or methyl group in the meta or para position of the benzyl moiety resulted in a considerable improvement of the stereoselectivity compared to the non-substituted compounds. Optically pure quinuclidin-3-ols were prepared in high yields and enantiopurity by the usage of various N-benzyl protected groups and BChE as a biocatalyst.

摘要

由于光学活性的奎宁环-3-醇是制备生理或药理活性化合物的重要中间体,因此研究了一种新的生物催化方法来生产手性奎宁环-3-醇。选择丁酰胆碱酯酶(BChE;EC 3.1.1.8)作为对映体的制备动力学拆分中的生物催化剂。合成了一系列外消旋的、(R)-和(S)-奎宁环-3-醇与乙酸、苯甲酸、邻苯二甲酸和异烟酸的酯,以及它们的外消旋的季铵盐 N-苄基、间位和对位 N-溴代和 N-甲基苄基衍生物。拆分后,所有 N-苄基保护基团都通过用甲酸铵(10%Pd-C)进行催化转移氢化成功去除。用 BChE 进行的水解研究证实,所制备的酯的(R)-对映体比(S)-对映体更适合作为酶的底物。与未取代的化合物相比,苯甲基部分的间位或对位引入溴原子或甲基可显著提高立体选择性。通过使用各种 N-苄基保护基团和 BChE 作为生物催化剂,可以以高收率和对映体纯度制备光学纯的奎宁环-3-醇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32cb/6268536/ecffe819740c/molecules-17-00786-g001.jpg

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