Kanie Shusei, Nishikawa Toshio, Ojika Makoto, Oba Yuichi
Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, 464-8601, Japan.
Department of Environmental Biology, College of Bioscience and Biotechnology, Chubu University, Kasugai 487-8501, Japan.
Sci Rep. 2016 Apr 21;6:24794. doi: 10.1038/srep24794.
Firefly luciferin, the substrate for the bioluminescence reaction of luminous beetles, possesses a benzothiazole ring, which is rare in nature. Here, we demonstrate a novel one-pot reaction to give firefly luciferin in a neutral buffer from p-benzoquinone and cysteine without any synthetic reagents or enzymes. The formation of firefly luciferin was low in yield in various neutral buffers, whereas it was inhibited or completely prevented in acidic or basic buffers, in organic solvents, or under a nitrogen atmosphere. Labelling analysis of the firefly luciferin using stable isotopic cysteines showed that the benzothiazole ring was formed via the decarboxylation and carbon-sulfur bond rearrangement of cysteine. These findings imply that the biosynthesis of firefly luciferin can be developed/evolved from the non-enzymatic production of firefly luciferin using common primary biosynthetic units, p-benzoquinone and cysteine.
萤火虫荧光素是发光甲虫生物发光反应的底物,含有一个苯并噻唑环,这在自然界中很罕见。在此,我们展示了一种新颖的一锅法反应,可在中性缓冲液中由对苯醌和半胱氨酸制得萤火虫荧光素,无需任何合成试剂或酶。在各种中性缓冲液中,萤火虫荧光素的生成产率较低,而在酸性或碱性缓冲液、有机溶剂中或氮气氛围下,其生成会受到抑制或完全被阻止。使用稳定同位素标记的半胱氨酸对萤火虫荧光素进行标记分析表明,苯并噻唑环是通过半胱氨酸的脱羧和碳 - 硫键重排形成的。这些发现意味着萤火虫荧光素的生物合成可以从使用常见初级生物合成单元对苯醌和半胱氨酸的非酶促萤火虫荧光素生产过程发展而来。