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毛果芸香碱的反应部位。

Sites of reaction of pilocarpine.

作者信息

Satterfield M, Brodbelt J S

机构信息

Department of Chemistry and Biochemistry, University of Texas at Austin 78712, USA.

出版信息

J Am Soc Mass Spectrom. 1999 Mar;10(3):209-16. doi: 10.1016/S1044-0305(98)00141-X.

Abstract

Analysis of the sites of reaction of a biologically important compound, pilocarpine, a molecule with imidazole and butyrolactone rings connected by a methylene bridge, has been accomplished in a quadrupole ion trap with the aim of characterizing its structure/reactivity relationships. Ion-molecule reactions of pilocarpine with chemical ionizing agents, dimethyl ether (DME), 2-methoxyethanol, and trimethyl borate (TMB), along with collision-activated dissociation elucidated the reaction sites of pilocarpine and made possible the comparison of structural features that affect sites of reaction. Based on MS/MS experiments, methylation occurs on the imidazole ring upon reactions with CH3OCH2+ or (CH3OCH2CH2OH)H+ ions but methylation occurs on the lactone ring for reactions with (CH3O)2B+ ions. Bracketing experiments with two model compounds, alpha-methyl-gamma-butyrolactone and N-methyl imidazole, show the imidazole ring to have a greater gas-phase basicity and methyl cation affinity than the lactone ring. The contrast of methylation by TMB ions on the lactone ring is explained by initial addition of the dimethoxyborinium ion, (CH3O)2B+, on the imidazole ring with subsequent collisional activation promoting an intramolecular transfer of a methyl group to the lactone ring with concurrent loss of CH3OBO. Semiempirical molecular orbital calculations are undertaken to further address the favored reaction sites.

摘要

对一种具有重要生物学意义的化合物毛果芸香碱进行反应位点分析,该分子具有通过亚甲基桥连接的咪唑环和丁内酯环,此分析在四极离子阱中完成,目的是表征其结构/反应活性关系。毛果芸香碱与化学电离剂二甲醚(DME)、2-甲氧基乙醇和硼酸三甲酯(TMB)的离子-分子反应,以及碰撞活化解离,阐明了毛果芸香碱的反应位点,并使得比较影响反应位点的结构特征成为可能。基于串联质谱实验,与CH3OCH2+或(CH3OCH2CH2OH)H+离子反应时,甲基化发生在咪唑环上,但与(CH3O)2B+离子反应时,甲基化发生在内酯环上。用两种模型化合物α-甲基-γ-丁内酯和N-甲基咪唑进行的包围实验表明,咪唑环比内酯环具有更高的气相碱性和甲基阳离子亲和力。TMB离子在内酯环上的甲基化差异可以解释为,二甲氧基硼鎓离子(CH3O)2B+先加成到咪唑环上,随后的碰撞活化促进了甲基向内酯环的分子内转移,同时失去CH3OBO。进行了半经验分子轨道计算以进一步确定有利的反应位点。

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