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      Autophosphorylation, electrophoretic mobility and immunoreaction of oat phototropin 1 under UV and blue Light.

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          Abstract

          Phototropins are UV-A/blue light photoreceptors containing two flavin mononucleotide (FMN)-binding domains, light, oxygen and voltage (LOV)1 and LOV2, of which LOV2 is more sensitive toward light and more important for the physiological response compared with LOV1. Some physiological responses are plant phototropism, chloroplast migration and stomatal opening. Oat phototropin 1 together with light-dependent autophosphorylation shows a reduced electrophoretic mobility and reduced immunoreaction against a heterologous antiserum; both effects were suggested to be caused by phosphorylation at the same sites (M. Salomon, E. Knieb, T. von Zeppelin and W. Rudiger [2003] Biochemistry 42, 4217-4225). In this study, we show that both effects can be separated from each other: at low temperature, reduced immunoreaction preceded the mobility shift, and irradiation with UV-C light led to the mobility shift without the loss of immunoreactivity. We demonstrated that UV-C light at 280 nm, which does not match any absorption maximum of FMN, leads to autophosphorylation of phototropin. It is hypothesized that UV-C light causes differential activation of the LOV domains via energy transfer from aromatic amino acids.

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          Author and article information

          Journal
          Photochem. Photobiol.
          Photochemistry and photobiology
          American Society for Photobiology
          0031-8655
          0031-8655
          October 8 2004
          : 81
          : 1
          Affiliations
          [1 ] Department of Biology I (Botanik), Ludwig-Maximilians-Universität München, Menzinger street 67, 80638 München, Germany. ruediger@lrz.uni-muenchen.de
          Article
          2004-04-03-RA-133
          10.1562/2004-04-03-RA-133
          15469384
          0e9a139a-4fa9-4f4e-84bf-c71a7f94a4c4
          History

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