Abad José-Luis, Serra Montserrat, Camps Francisco, Fabriàs Gemma
Departamento de Química OrgAnica Biológica, Instituto de Investigaciones Químicas y Ambientales de Barcelona, Consejo Superior de Investigaciones Científicas, J. Girona 18, 08034, Barcelona, Spain.
J Org Chem. 2007 Feb 2;72(3):760-4. doi: 10.1021/jo061592s.
The synthesis of two hexadeuterated palmitic acids differing in the position of the diagnostic labels, and their use to decipher the cryptoregiochemistry of a Delta13 desaturation are described. A dithiane and a triple bond functionalities were used to introduce the diagnostic (C13 or C14) and tagging (C8 and C9) labels, respectively, in the palmitic acid skeleton. Using these probes, the cryptoregiochemistry of the Delta13 desaturation involved in the biosynthesis of Thaumetopoea pityocampa sex pheromone was studied by means of kinetic isotope effect determinations. Transformation of both (Z)-11-hexadecenoic and 11-hexadecynoic acids into (Z, Z)-11,13-hexadecadienoic and (Z)-13-hexadecen-11-ynoic acids, respectively, is initiated by abstraction of the hydrogen atom at the C13 position, followed by the fast elimination of the C14 hydrogen to give the double bond.
本文描述了两种在诊断标记位置上不同的十六氘代棕榈酸的合成,以及它们用于解析Δ13去饱和反应的隐秘区域化学的用途。分别使用二硫烷和三键官能团在棕榈酸骨架中引入诊断性(C13或C14)和标记性(C8和C9)标记。利用这些探针,通过动力学同位素效应测定研究了参与松异舟蛾性信息素生物合成的Δ13去饱和反应的隐秘区域化学。(Z)-11-十六碳烯酸和11-十六碳炔酸分别转化为(Z,Z)-11,13-十六碳二烯酸和(Z)-13-十六碳烯-11-炔酸,反应起始于C13位置的氢原子被夺取,随后C14氢快速消除以形成双键。