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000614119 1001_ $$aBaxter, James M.$$b0
000614119 245__ $$aPower Density Titration of Reversible Photoisomerization of a Fluorescent Protein Chromophore in the Presence of Thermally Driven Barrier Crossing Shown by Quantitative Millisecond Serial Synchrotron X-ray Crystallography
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000614119 520__ $$aWe 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.
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000614119 7001_ $$aHutchison, Christopher D. M.$$b1
000614119 7001_ $$aFadini, Alisia$$b2
000614119 7001_ $$aMaghlaoui, Karim$$b3
000614119 7001_ $$aCordon-Preciado, Violeta$$b4
000614119 7001_ $$aMorgan, R. Marc L.$$b5
000614119 7001_ $$0P:(DE-H253)PIP1026545$$aAgthe, Michael$$b6
000614119 7001_ $$aHorrell, Sam$$b7
000614119 7001_ $$aTellkamp, Friedjof$$b8
000614119 7001_ $$0P:(DE-H253)PIP1029103$$aMehrabi, Pedram$$b9
000614119 7001_ $$aPfeifer, Yannik$$b10
000614119 7001_ $$0P:(DE-HGF)0$$aMüller-Werkmeister, Henrike M.$$b11
000614119 7001_ $$0P:(DE-HGF)0$$avon Stetten, David$$b12
000614119 7001_ $$aPearson, Arwen R.$$b13
000614119 7001_ $$0P:(DE-HGF)0$$avan Thor, Jasper J.$$b14$$eCorresponding author
000614119 77318 $$2Crossref$$3journal-article$$a10.1021/jacs.3c12883$$bAmerican Chemical Society (ACS)$$d2024-06-07$$n24$$p16394-16403$$tJournal of the American Chemical Society$$v146$$x0002-7863$$y2024
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