Pirrung Michael C, Dorsey Allyson, Howitt Natalie De, Liao Jiayu
Department of Chemistry University of California Riverside CA 92521 USA).
Department of Bioengineering University of California Riverside CA 92521 USA.
ChemistryOpen. 2017 Sep 6;6(6):697-700. doi: 10.1002/open.201700136. eCollection 2017 Dec.
A 5,5- -luciferin was prepared to measure isotope effects on reactions of two intermediates in firefly bioluminescence: emission by oxyluciferin and elimination of a putative luciferyl adenylate hydroperoxide to dehydroluciferin. A negligible isotope effect on bioluminescence provides further support for the belief that the emitting species is the keto-phenolate of oxyluciferin and rules out its excited-state tautomerization, one potential contribution to a bioluminescence quantum yield less than unity. A small isotope effect on dehydroluciferin formation supports a single-electron-transfer mechanism for reaction of the luciferyl adenylate enolate with oxygen to form the hydroperoxide or dehydroluciferin. Partitioning between the dioxetanone intermediate (en route to oxyluciferin) and dehydroluciferin is determined, not by the fate of the hydroperoxide, but by that of the radical formed from luciferyl adenylate, and the kinetic isotope effect (KIE) reflects H-atom abstraction by superoxide.
制备了5,5'-荧光素以测量同位素对萤火虫生物发光中两个中间体反应的影响:氧化荧光素的发光以及假定的荧光素腺苷酸氢过氧化物消除形成脱氢荧光素。对生物发光可忽略不计的同位素效应进一步支持了发光物种是氧化荧光素的酮酚盐这一观点,并排除了其激发态互变异构,这是生物发光量子产率小于1的一个潜在因素。对脱氢荧光素形成的小同位素效应支持了荧光素腺苷酸烯醇化物与氧气反应形成氢过氧化物或脱氢荧光素的单电子转移机制。二氧杂环丁烷中间体(生成氧化荧光素的途径)和脱氢荧光素之间的分配不是由氢过氧化物的命运决定的,而是由荧光素腺苷酸形成的自由基的命运决定的,动力学同位素效应(KIE)反映了超氧化物对氢原子的夺取。