Photochemical Properties of the Flavin Mononucleotide-Binding Domains of the Phototropins from Arabidopsis, Rice, andChlamydomonas reinhardtii

Author:

Kasahara Masahiro1,Swartz Trevor E.2,Olney Margaret A.2,Onodera Akihiko3,Mochizuki Nobuyoshi3,Fukuzawa Hideya4,Asamizu Erika5,Tabata Satoshi5,Kanegae Hiromi6,Takano Makoto6,Christie John M.2,Nagatani Akira3,Briggs Winslow R.2

Affiliation:

1. National Institute for Basic Biology, Okazaki 444–8585, Japan (M.K.);

2. Department of Plant Biology, Carnegie Institution of Washington, 260 Panama Street, Stanford, California 94305 (T.E.S., M.A.O., J.M.C., W.R.B.);

3. Department of Botany, Graduate School of Science, University of Kyoto, Kyoto 606–8502, Japan (A.O., N.M., A.N.);

4. Division of Integrated Life Sciences, Graduate School of Biostudies, Kyoto University, Kyoto 606–8502, Japan (H.F.);

5. Kazuza DNA Research Institute, 1532–3 Yana, Kisarazu, Chiba 292–0812, Japan (E.A., S.T.); and

6. Department of Molecular Genetics, National Institute of Agrobiological Resources, Tsukuba, Ibaraki, 305–8602, Japan (H.K., M.T.)

Abstract

Abstract Phototropins (phot1 and phot2, formerly designated nph1 and npl1) are blue-light receptors that mediate phototropism, blue light-induced chloroplast relocation, and blue light-induced stomatal opening in Arabidopsis. Phototropins contain two light, oxygen, or voltage (LOV) domains at their N termini (LOV1 and LOV2), each a binding site for the chromophore flavin mononucleotide (FMN). Their C termini contain a serine/threonine protein kinase domain. Here, we examine the kinetic properties of the LOV domains of Arabidopsis phot1 and phot2, rice (Oryza sativa) phot1 and phot2, andChlamydomonas reinhardtii phot. When expressed inEscherichia coli, purified LOV domains from all phototropins examined bind FMN tightly and undergo a self-contained photocycle, characterized by fluorescence and absorption changes induced by blue light (T. Sakai, T. Kagawa, M. Kasahara, T.E. Swartz, J.M. Christie, W.R. Briggs, M. Wada, K. Okada [2001] Proc Natl Acad Sci USA 98: 6969–6974; M. Salomon, J.M. Christie, E. Knieb, U. Lempert, W.R. Briggs [2000] Biochemistry 39: 9401–9410). The photocycle involves the light-induced formation of a cysteinyl adduct to the C(4a) carbon of the FMN chromophore, which subsequently breaks down in darkness. In each case, the relative quantum efficiencies for the photoreaction and the rate constants for dark recovery of LOV1, LOV2, and peptides containing both LOV domains are presented. Moreover, the data obtained from full-length Arabidopsis phot1 and phot2 expressed in insect cells closely resemble those obtained for the tandem LOV-domain fusion proteins expressed in E. coli. For both Arabidopsis and rice phototropins, the LOV domains of phot1 differ from those of phot2 in their reaction kinetic properties and relative quantum efficiencies. Thus, in addition to differing in amino acid sequence, the phototropins can be distinguished on the basis of the photochemical cycles of their LOV domains. The LOV domains ofC. reinhardtii phot also undergo light-activated spectral changes consistent with cysteinyl adduct formation. Thus, the phototropin family extends over a wide evolutionary range from unicellular algae to higher plants.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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