Fallon Timothy R, Li Fu-Shuang, Vicent Maria A, Weng Jing-Ke
Whitehead Institute for Biomedical Research , 9 Cambridge Center, Cambridge, Massachusetts 02142, United States.
Department of Biology, Massachusetts Institute of Technology , Cambridge, Massachusetts 02139, United States.
Biochemistry. 2016 Jun 21;55(24):3341-4. doi: 10.1021/acs.biochem.6b00402. Epub 2016 Jun 7.
Firefly luciferin is a specialized metabolite restricted to fireflies (family Lampyridae) and other select families of beetles (order Coleoptera). Firefly luciferin undergoes luciferase-catalyzed oxidation to produce light, thereby enabling the luminous mating signals essential for reproductive success in most bioluminescent beetles. Although firefly luciferin and luciferase have become widely used biotechnological tools, questions remain regarding the physiology and biochemistry of firefly bioluminescence. Here we report sulfoluciferin to be an in vivo derivative of firefly luciferin in fireflies and report the cloning of luciferin sulfotransferase (LST) from the North American firefly Photinus pyralis. LST catalyzes the production of sulfoluciferin from firefly luciferin and the sulfo-donor PAPS. Sulfoluciferin is abundant in several surveyed firefly genera as well as in the bioluminescent elaterid beetle Pyrophorus luminosus at a low level. We propose that sulfoluciferin could serve as a luciferin storage molecule in fireflies and that LST may find use as a new tool to modulate existing biotechnological applications of the firefly bioluminescent system.
萤火虫荧光素是一种特殊的代谢产物,仅存在于萤火虫(萤科)和其他特定的甲虫科(鞘翅目)中。萤火虫荧光素在荧光素酶的催化下发生氧化反应以产生光,从而使大多数发光甲虫在繁殖成功过程中发出至关重要的发光求偶信号。尽管萤火虫荧光素和荧光素酶已成为广泛使用的生物技术工具,但关于萤火虫生物发光的生理学和生物化学仍存在一些问题。在此,我们报告磺基荧光素是萤火虫体内萤火虫荧光素的衍生物,并报道了从北美萤火虫Photinus pyralis中克隆荧光素磺基转移酶(LST)。LST催化由萤火虫荧光素和磺基供体PAPS生成磺基荧光素。磺基荧光素在几个被调查的萤火虫属中含量丰富,在发光叩头虫Pyrophorus luminosus中含量较低。我们认为磺基荧光素可能作为萤火虫体内荧光素的储存分子,并且LST可能会成为一种新工具,用于调节萤火虫生物发光系统现有的生物技术应用。