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Quantitative analyses of the equilibria among DNA complexes of a blue-light-regulated bZIP module, Photozipper

Aureochrome1 is a blue-light-receptor protein identified in a stramenopile alga, Vaucheria frigida. Photozipper (PZ) is an N-terminally truncated, monomeric, V. frigida aureochrome1 fragment containing a basic leucine zipper (bZIP) domain and a light–oxygen–voltage (LOV)-sensing domain. PZ dimerizes...

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Detalles Bibliográficos
Autores principales: Nakatani, Yoichi, Hisatomi, Osamu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Biophysical Society of Japan (BSJ) 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5812316/
https://www.ncbi.nlm.nih.gov/pubmed/29450110
http://dx.doi.org/10.2142/biophysico.15.0_8
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author Nakatani, Yoichi
Hisatomi, Osamu
author_facet Nakatani, Yoichi
Hisatomi, Osamu
author_sort Nakatani, Yoichi
collection PubMed
description Aureochrome1 is a blue-light-receptor protein identified in a stramenopile alga, Vaucheria frigida. Photozipper (PZ) is an N-terminally truncated, monomeric, V. frigida aureochrome1 fragment containing a basic leucine zipper (bZIP) domain and a light–oxygen–voltage (LOV)-sensing domain. PZ dimerizes upon photoexcitation and consequently increases its affinity for the target sequence. In the present study, to understand the equilibria among DNA complexes of PZ, DNA binding by PZ and mutational variants was quantitatively investigated by electrophoretic-mobility-shift assay and fluorescence-correlation spectroscopy in the dark and light states. DNA binding by PZ was sequence-specific and light-dependent. The half-maximal effective concentration of PZ for binding to the target DNA sequence was ~40 nM in the light, which was >10-fold less than the value in the dark. By contrast, the dimeric PZ-S(2)C variant (with intermolecular disulfide bonds) had higher affinity for the target sequence, with dissociation constants of ~4 nM, irrespective of the light conditions. Substitutions of Glu159 and Lys164 in the leucine zipper region decreased the affinity of PZ for the target sequence, especially in the light, suggesting that these residues form inter-helical salt bridges between leucine zipper regions, stabilizing the dimer–DNA complex. Our quantitative analyses of the equilibria in PZ–DNA-complex formation suggest that the blue-light-induced dimerization of LOV domains and coiled-coil formation by leucine zipper regions are the primary determinants of the affinity of PZ for the target sequence.
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spelling pubmed-58123162018-02-15 Quantitative analyses of the equilibria among DNA complexes of a blue-light-regulated bZIP module, Photozipper Nakatani, Yoichi Hisatomi, Osamu Biophys Physicobiol Regular Article Aureochrome1 is a blue-light-receptor protein identified in a stramenopile alga, Vaucheria frigida. Photozipper (PZ) is an N-terminally truncated, monomeric, V. frigida aureochrome1 fragment containing a basic leucine zipper (bZIP) domain and a light–oxygen–voltage (LOV)-sensing domain. PZ dimerizes upon photoexcitation and consequently increases its affinity for the target sequence. In the present study, to understand the equilibria among DNA complexes of PZ, DNA binding by PZ and mutational variants was quantitatively investigated by electrophoretic-mobility-shift assay and fluorescence-correlation spectroscopy in the dark and light states. DNA binding by PZ was sequence-specific and light-dependent. The half-maximal effective concentration of PZ for binding to the target DNA sequence was ~40 nM in the light, which was >10-fold less than the value in the dark. By contrast, the dimeric PZ-S(2)C variant (with intermolecular disulfide bonds) had higher affinity for the target sequence, with dissociation constants of ~4 nM, irrespective of the light conditions. Substitutions of Glu159 and Lys164 in the leucine zipper region decreased the affinity of PZ for the target sequence, especially in the light, suggesting that these residues form inter-helical salt bridges between leucine zipper regions, stabilizing the dimer–DNA complex. Our quantitative analyses of the equilibria in PZ–DNA-complex formation suggest that the blue-light-induced dimerization of LOV domains and coiled-coil formation by leucine zipper regions are the primary determinants of the affinity of PZ for the target sequence. The Biophysical Society of Japan (BSJ) 2018-01-20 /pmc/articles/PMC5812316/ /pubmed/29450110 http://dx.doi.org/10.2142/biophysico.15.0_8 Text en 2018 © The Biophysical Society of Japan This article is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit https://creativecommons.org/licenses/by-nc-sa/4.0/.
spellingShingle Regular Article
Nakatani, Yoichi
Hisatomi, Osamu
Quantitative analyses of the equilibria among DNA complexes of a blue-light-regulated bZIP module, Photozipper
title Quantitative analyses of the equilibria among DNA complexes of a blue-light-regulated bZIP module, Photozipper
title_full Quantitative analyses of the equilibria among DNA complexes of a blue-light-regulated bZIP module, Photozipper
title_fullStr Quantitative analyses of the equilibria among DNA complexes of a blue-light-regulated bZIP module, Photozipper
title_full_unstemmed Quantitative analyses of the equilibria among DNA complexes of a blue-light-regulated bZIP module, Photozipper
title_short Quantitative analyses of the equilibria among DNA complexes of a blue-light-regulated bZIP module, Photozipper
title_sort quantitative analyses of the equilibria among dna complexes of a blue-light-regulated bzip module, photozipper
topic Regular Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5812316/
https://www.ncbi.nlm.nih.gov/pubmed/29450110
http://dx.doi.org/10.2142/biophysico.15.0_8
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