Baxter James M, Hutchison Christopher D M, Fadini Alisia, Maghlaoui Karim, Cordon-Preciado Violeta, Morgan R Marc L, Agthe Michael, Horrell Sam, Tellkamp Friedjof, Mehrabi Pedram, Pfeifer Yannik, Müller-Werkmeister Henrike M, von Stetten David, Pearson Arwen R, van Thor Jasper J
Department of Life Sciences, Imperial College London, London SW7 2AZ, U.K.
Center for Structural Biology, Imperial College London, London SW7 2AZ, U.K.
J Am Chem Soc. 2024 Jun 7;146(24):16394-403. doi: 10.1021/jacs.3c12883.
We present millisecond quantitative serial X-ray crystallography at 1.7 Å resolution demonstrating precise optical control of reversible population transfer from Trans-Cis and Cis-Trans photoisomerization of a reversibly switchable fluorescent protein, rsKiiro. Quantitative results from the analysis of electron density differences, extrapolated structure factors, and occupancy refinements are shown to correspond to optical measurements of photoinduced population transfer and have sensitivity to a few percent in concentration differences. Millisecond time-resolved concentration differences are precisely and reversibly controlled through intense continuous wave laser illuminations at 405 and 473 nm for the Trans-to-Cis and Cis-to-Trans reactions, respectively, while the X-ray crystallographic measurement and laser illumination of the metastable Trans chromophore conformation causes partial thermally driven reconversion across a 91.5 kJ/mol thermal barrier from which a temperature jump between 112 and 128 K is extracted.
我们展示了分辨率为1.7 Å的毫秒级定量串行X射线晶体学,证明了对可逆切换荧光蛋白rsKiiro从反式-顺式和顺式-反式光异构化的可逆种群转移进行精确的光学控制。电子密度差异分析、外推结构因子和占有率精修的定量结果显示与光诱导种群转移的光学测量结果相对应,并且对浓度差异的敏感度可达百分之几。通过分别在405和473 nm处进行强连续波激光照射,可精确且可逆地控制反式到顺式和顺式到反式反应的毫秒级时间分辨浓度差异,而亚稳态反式发色团构象的X射线晶体学测量和激光照射会导致跨越91.5 kJ/mol热垒的部分热驱动再转化,从中提取出112至128 K之间的温度跃升。