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      Unraveling the Primary Isomerization Dynamics in Cyanobacterial Phytochrome Cph1 with Multi-pulse Manipulations.

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          Abstract

          The ultrafast mechanisms underlying the initial photoisomerization (Pr → Lumi-R) in the forward reaction of the cyanobacterial photoreceptor Cph1 were explored with multipulse pump-dump-probe transient spectroscopy. A recently postulated multi-population model was used to fit the transient pump-dump-probe and dump-induced depletion signals. We observed dump-induced depletion of the Lumi-R photoproduct, demonstrating that photoisomerization occurs via evolution on both the excited- and ground-state electronic surfaces. Excited-state equilibrium was not observed, as shown via the absence of a dump-induced excited-state "Le Châtelier redistribution" of excited-state populations. The importance of incorporating the inhomogeneous dynamics of Cph1 in interpreting measured transient data is discussed.

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          Author and article information

          Journal
          J Phys Chem Lett
          The journal of physical chemistry letters
          American Chemical Society (ACS)
          1948-7185
          1948-7185
          Jul 20 2013
          : 4
          : 16
          Affiliations
          [1 ] Department of Chemistry, University of California, One Shields Avenue, Davis, CA 95616.
          Article
          NIHMS509690
          10.1021/jz401443q
          3798021
          24143267
          f658f81d-9e2f-4752-afd1-0bf863c9eb82
          History

          excited-state dynamic,photoreceptors,phytochromes,pump-dump-probe,transient absorption

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