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Functional characterization of a constitutively active kinase variant of Arabidopsis phototropin 1

Phototropins (phots) are plasma membrane–associated serine/threonine kinases that coordinate a range of processes linked to optimizing photosynthetic efficiency in plants. These photoreceptors contain two light-, oxygen-, or voltage-sensing (LOV) domains within their N terminus, with each binding on...

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Autores principales: Petersen, Jan, Inoue, Shin-ichiro, Kelly, Sharon M., Sullivan, Stuart, Kinoshita, Toshinori, Christie, John M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5566536/
https://www.ncbi.nlm.nih.gov/pubmed/28663371
http://dx.doi.org/10.1074/jbc.M117.799643
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author Petersen, Jan
Inoue, Shin-ichiro
Kelly, Sharon M.
Sullivan, Stuart
Kinoshita, Toshinori
Christie, John M.
author_facet Petersen, Jan
Inoue, Shin-ichiro
Kelly, Sharon M.
Sullivan, Stuart
Kinoshita, Toshinori
Christie, John M.
author_sort Petersen, Jan
collection PubMed
description Phototropins (phots) are plasma membrane–associated serine/threonine kinases that coordinate a range of processes linked to optimizing photosynthetic efficiency in plants. These photoreceptors contain two light-, oxygen-, or voltage-sensing (LOV) domains within their N terminus, with each binding one molecule of flavin mononucleotide as a UV/blue light–absorbing chromophore. Although phots contain two LOV domains, light-induced activation of the C-terminal kinase domain and subsequent receptor autophosphorylation is controlled primarily by the A′α-LOV2-Jα photosensory module. Mutations that disrupt interactions between the LOV2 core and its flanking helical segments can uncouple this mode of light regulation. However, the impact of these mutations on phot function in Arabidopsis has not been explored. Here we report that histidine substitution of Arg-472 located within the A′α-helix of Arabidopsis phot1 constitutively activates phot1 kinase activity in vitro without affecting LOV2 photochemistry. Expression analysis of phot1 R472H in the phot-deficient mutant confirmed that it is autophosphorylated in darkness in vivo but unable to initiate phot1 signaling in the absence of light. Instead, we found that phot1 R472H is poorly functional under low-light conditions but can restore phototropism, chloroplast accumulation, stomatal opening, and leaf positioning and expansion at higher light intensities. Our findings suggest that Arabidopsis can adapt to the elevated phosphorylation status of the phot1 R472H mutant in part by reducing its stability, whereas the activity of the mutant under high-light conditions can be attributed to additional increases in LOV2-mediated photoreceptor autophosphorylation.
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spelling pubmed-55665362017-08-25 Functional characterization of a constitutively active kinase variant of Arabidopsis phototropin 1 Petersen, Jan Inoue, Shin-ichiro Kelly, Sharon M. Sullivan, Stuart Kinoshita, Toshinori Christie, John M. J Biol Chem Plant Biology Phototropins (phots) are plasma membrane–associated serine/threonine kinases that coordinate a range of processes linked to optimizing photosynthetic efficiency in plants. These photoreceptors contain two light-, oxygen-, or voltage-sensing (LOV) domains within their N terminus, with each binding one molecule of flavin mononucleotide as a UV/blue light–absorbing chromophore. Although phots contain two LOV domains, light-induced activation of the C-terminal kinase domain and subsequent receptor autophosphorylation is controlled primarily by the A′α-LOV2-Jα photosensory module. Mutations that disrupt interactions between the LOV2 core and its flanking helical segments can uncouple this mode of light regulation. However, the impact of these mutations on phot function in Arabidopsis has not been explored. Here we report that histidine substitution of Arg-472 located within the A′α-helix of Arabidopsis phot1 constitutively activates phot1 kinase activity in vitro without affecting LOV2 photochemistry. Expression analysis of phot1 R472H in the phot-deficient mutant confirmed that it is autophosphorylated in darkness in vivo but unable to initiate phot1 signaling in the absence of light. Instead, we found that phot1 R472H is poorly functional under low-light conditions but can restore phototropism, chloroplast accumulation, stomatal opening, and leaf positioning and expansion at higher light intensities. Our findings suggest that Arabidopsis can adapt to the elevated phosphorylation status of the phot1 R472H mutant in part by reducing its stability, whereas the activity of the mutant under high-light conditions can be attributed to additional increases in LOV2-mediated photoreceptor autophosphorylation. American Society for Biochemistry and Molecular Biology 2017-08-18 2017-06-29 /pmc/articles/PMC5566536/ /pubmed/28663371 http://dx.doi.org/10.1074/jbc.M117.799643 Text en © 2017 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version free via Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) .
spellingShingle Plant Biology
Petersen, Jan
Inoue, Shin-ichiro
Kelly, Sharon M.
Sullivan, Stuart
Kinoshita, Toshinori
Christie, John M.
Functional characterization of a constitutively active kinase variant of Arabidopsis phototropin 1
title Functional characterization of a constitutively active kinase variant of Arabidopsis phototropin 1
title_full Functional characterization of a constitutively active kinase variant of Arabidopsis phototropin 1
title_fullStr Functional characterization of a constitutively active kinase variant of Arabidopsis phototropin 1
title_full_unstemmed Functional characterization of a constitutively active kinase variant of Arabidopsis phototropin 1
title_short Functional characterization of a constitutively active kinase variant of Arabidopsis phototropin 1
title_sort functional characterization of a constitutively active kinase variant of arabidopsis phototropin 1
topic Plant Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5566536/
https://www.ncbi.nlm.nih.gov/pubmed/28663371
http://dx.doi.org/10.1074/jbc.M117.799643
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