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On the biosynthetic pathway of papaverine via (S)-reticuline - Theoretical vs. experimental study

机译:罂粟碱通过(S)-网状茶碱的生物合成途径-理论与实验研究

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摘要

The electronic structures, optical properties and molecular structures of a series of isoquinoline alkaloids resulting in the formation of papaverine, through a proposed biosynthetic pathway via S(+)-reticuline were elucidated. The mechanism of papaverine synthesis was studied by electronic absorption, diffuse reflectance, fluorescence and CD spectroscopy, as well as ESI and MALDI Orbitrap imaging mass spectrometry. Quantum chemical DFT calculations in the gas phase and solution were performed with a view to study the electronic transitions of the interacting species, corresponding proposed intermediates, and the expected mass spectrometric fragments. The complete study and understanding of the mechanism of the biosynthetic pathway in the poppy plants appears important for the functional oriented drug-design and synthesis of corresponding structurally related alkaloids.
机译:阐明了一系列异喹啉生物碱的电子结构,光学性质和分子结构,该结构导致罂粟碱通过拟议的经由S(+)-网氨酸的生物合成途径形成。通过电子吸收,漫反射,荧光和CD光谱以及ESI和MALDI Orbitrap成像质谱研究了罂粟碱的合成机理。进行气相和溶液中的量子化学DFT计算是为了研究相互作用物种的电子跃迁,相应的拟议中间体和预期的质谱碎片。对罂粟植物生物合成途径的机理的全面研究和理解对于功能性药物设计和相应结构相关生物碱的合成很重要。

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