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光-Favorskii重排及酯释放中的竞争途径:对氟化对羟基苯甲酰基笼形GABA和谷氨酸光触发剂的研究

Competing pathways in the photo-Favorskii rearrangement and release of esters: studies on fluorinated p-hydroxyphenacyl-caged GABA and glutamate phototriggers.

作者信息

Stensrud Kenneth, Noh Jihyun, Kandler Karl, Wirz Jakob, Heger Dominik, Givens Richard S

机构信息

Department of Chemistry, 1251 Wescoe Hall Drive, University of Kansas, Lawrence, Kansas 66045, USA.

出版信息

J Org Chem. 2009 Aug 7;74(15):5219-27. doi: 10.1021/jo900139h.

Abstract

Three new trifluoromethylated p-hydroxyphenacyl (pHP)-caged gamma-aminobutyric acid (GABA) and glutamate (Glu) derivatives have been examined for their efficacy as photoremovable protecting groups in aqueous solution. Through the replacement of hydrogen with fluorine, e.g., a m-trifluoromethyl or a m-trifluoromethoxy versus m-methoxy substituents on the pHP chromophore, modest increases in the quantum yields for the release of amino acids GABA and glutamate as well as improved lipophilicity were realized. The pHP triplet undergoes a photo-Favorskii rearrangement with concomitant release of the amino acid substrate. Deprotonation competes with the rearrangement from the triplet excited state and yields the pHP conjugate base that, upon reprotonation, regenerates the starting ketoester, a chemically unproductive or "energy-wasting" process. When picosecond pump-probe spectroscopy is employed, GABA derivatives 2-5 are characterized by short triplet lifetimes, a manifestation of their rapid release of GABA. The bioavailability of released GABA at the GABA(A) receptor improved when the release took place from m-OCF3 (2) but decreased for m-CF3 (3) when compared with the parent pHP derivative. These studies demonstrate that pKa and lipophilicity exert significant but sometimes opposing influences on the photochemistry and biological activity of pHP phototriggers.

摘要

三种新型三氟甲基化对羟基苯甲酰基(pHP)笼蔽的γ-氨基丁酸(GABA)和谷氨酸(Glu)衍生物作为光可去除保护基团在水溶液中的功效已被研究。通过用氟取代氢,例如在pHP发色团上用间三氟甲基或间三氟甲氧基取代间甲氧基,实现了氨基酸GABA和谷氨酸释放量子产率的适度提高以及亲脂性的改善。pHP三线态发生光-Favorskii重排并伴随氨基酸底物的释放。去质子化与三线态激发态的重排竞争,产生pHP共轭碱,该共轭碱在重新质子化时再生起始的酮酯,这是一个化学上无生产性或“能量浪费”的过程。当采用皮秒泵浦-探测光谱法时,GABA衍生物2-5的特征是三线态寿命短,这表明它们能快速释放GABA。与母体pHP衍生物相比,当从间-OCF3(2)释放GABA时,其在GABA(A)受体处的生物利用度提高,但对于间-CF3(3)则降低。这些研究表明,pKa和亲脂性对pHP光触发剂的光化学和生物活性有显著但有时相反的影响。

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