Photobiology Laboratory, Institute of Biophysics SB RAS, Federal Research Center "Krasnoyarsk Science Center SB RAS", Krasnoyarsk, Russia.
iHuman Institute, ShanghaiTech University, Shanghai, China.
Protein Sci. 2022 Feb;31(2):454-469. doi: 10.1002/pro.4244. Epub 2021 Nov 29.
Coelenterazine-v (CTZ-v), a synthetic derivative with an additional benzyl ring, yields a bright bioluminescence of Renilla luciferase and its "yellow" mutant with a significant shift in the emission spectrum toward longer wavelengths, which makes it the substrate of choice for deep tissue imaging. Although Ca -regulated photoproteins activated with CTZ-v also display red-shifted light emission, in contrast to Renilla luciferase their bioluminescence activities are very low, which makes photoproteins activated by CTZ-v unusable for calcium imaging. Here, we report the crystal structure of Ca -regulated photoprotein obelin with 2-hydroperoxycoelenterazine-v (obelin-v) at 1.80 Å resolution. The structures of obelin-v and obelin bound with native CTZ revealed almost no difference; only the minor rearrangement in hydrogen-bond pattern and slightly increased distances between key active site residues and some atoms of 2-hydroperoxycoelenterazine-v were found. The fluorescence quantum yield (Φ ) of obelin bound with coelenteramide-v (0.24) turned out to be even higher than that of obelin with native coelenteramide (0.19). Since both obelins are in effect the enzyme-substrate complexes containing the 2-hydroperoxy adduct of CTZ-v or CTZ, we reasonably assume the chemical reaction mechanisms and the yields of the reaction products (Φ ) to be similar for both obelins. Based on these findings we suggest that low bioluminescence activity of obelin-v is caused by the low efficiency of generating an electronic excited state (Φ ). In turn, the low Φ value as compared to that of native CTZ might be the result of small changes in the substrate microenvironment in the obelin-v active site.
腔肠素-v(CTZ-v)是一种具有额外苄基环的合成衍生物,可产生明亮的海肾荧光素及其“黄色”突变体的生物发光,其发射光谱向长波长显著移动,使其成为深层组织成像的首选底物。尽管 CTZ-v 激活的 Ca2+调节光蛋白也显示出红移的光发射,但与海肾荧光素不同,它们的生物发光活性非常低,这使得 CTZ-v 激活的光蛋白不能用于钙成像。在这里,我们报告了 Ca2+调节光蛋白 obelin 与 2-过氧腔肠素-v(obelin-v)在 1.80Å分辨率下的晶体结构。obelin-v 和 obelin 与天然 CTZ 结合的结构几乎没有差异;仅发现氢键模式的微小重排以及关键活性位点残基与 2-过氧腔肠素-v 某些原子之间的距离略有增加。与天然腔肠素结合的 obelin(0.19)的荧光量子产率(Φ)结果甚至高于与腔肠素-v 结合的 obelin(0.24)。由于 obelins 实际上都是包含 CTZ-v 或 CTZ 的 2-过氧加合物的酶-底物复合物,我们合理地假设这两种 obelins 的化学反应机制和反应产物(Φ)的产率相似。基于这些发现,我们认为 obelin-v 的低生物发光活性是由于生成电子激发态(Φ)的效率低所致。反过来,与天然 CTZ 相比,Φ 值较低可能是 obelin-v 活性位点中底物微环境的微小变化所致。