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Spectroscopic and structural characteristics of a dual-light sensor protein, PYP-phytochrome related protein

PYP-phytochrome related (Ppr) protein contains the two light sensor domains, photoactive yellow protein (PYP) and bacteriophytochrome (Bph), which mainly absorb blue and red light by the chromophores of p-coumaric acid (pCA) and biliverdin (BV), respectively. As a result, Ppr has the ability to phot...

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Autores principales: Sum, Jia-Siang, Yamazaki, Yoichi, Yoshida, Keito, Yonezawa, Kento, Hayashi, Yugo, Kataoka, Mikio, Kamikubo, Hironari
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Biophysical Society of Japan 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7610063/
https://www.ncbi.nlm.nih.gov/pubmed/33194513
http://dx.doi.org/10.2142/biophysico.BSJ-2020015
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author Sum, Jia-Siang
Yamazaki, Yoichi
Yoshida, Keito
Yonezawa, Kento
Hayashi, Yugo
Kataoka, Mikio
Kamikubo, Hironari
author_facet Sum, Jia-Siang
Yamazaki, Yoichi
Yoshida, Keito
Yonezawa, Kento
Hayashi, Yugo
Kataoka, Mikio
Kamikubo, Hironari
author_sort Sum, Jia-Siang
collection PubMed
description PYP-phytochrome related (Ppr) protein contains the two light sensor domains, photoactive yellow protein (PYP) and bacteriophytochrome (Bph), which mainly absorb blue and red light by the chromophores of p-coumaric acid (pCA) and biliverdin (BV), respectively. As a result, Ppr has the ability to photoactivate both domains together or separately. We investigated the photoreaction of each photosensor domain under different light irradiation conditions and clarified the inter-dependency between these domains. Within the first 10 s of blue light illumination, Ppr (Holo-Holo-Ppr) accompanied by both pCA and BV demonstrated spectrum changes reflecting PYP(L) accumulation, which can also be observed in Ppr containing only pCA (Holo-Apo-Ppr), and a fragment of Ppr lacking the C-terminal Bph domain. Although Holo-Apo-Ppr showed PYP(L) as a major photoproduct under blue light, as seen in the Bph-truncated Ppr, the equilibrium in the Holo-Holo-Ppr was shifted from PYP(L) to PYP(M) as the reaction progresses under blue light. Concomitantly, the spectrum of Bph exhibited subtle but distinguishable alteration. Together with the fact, it can be proposed that Bph with BV influences the photoreaction of PYP in Ppr, and vice versa. SAXS measurements revealed substantial tertiary structure changes in Holo-Holo-Ppr under continuous blue light irradiation within the first 5 min time domain. Interestingly, the changes in tertiary structure were partially suppressed by photoactivation of the Bph domain. These observations indicate that the photoreactions of the PYP and Bph domains are coupled with each other, and that the interplay realizes the structural switch, which might be involved in downstream signal transduction.
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spelling pubmed-76100632020-11-13 Spectroscopic and structural characteristics of a dual-light sensor protein, PYP-phytochrome related protein Sum, Jia-Siang Yamazaki, Yoichi Yoshida, Keito Yonezawa, Kento Hayashi, Yugo Kataoka, Mikio Kamikubo, Hironari Biophys Physicobiol Regular Article PYP-phytochrome related (Ppr) protein contains the two light sensor domains, photoactive yellow protein (PYP) and bacteriophytochrome (Bph), which mainly absorb blue and red light by the chromophores of p-coumaric acid (pCA) and biliverdin (BV), respectively. As a result, Ppr has the ability to photoactivate both domains together or separately. We investigated the photoreaction of each photosensor domain under different light irradiation conditions and clarified the inter-dependency between these domains. Within the first 10 s of blue light illumination, Ppr (Holo-Holo-Ppr) accompanied by both pCA and BV demonstrated spectrum changes reflecting PYP(L) accumulation, which can also be observed in Ppr containing only pCA (Holo-Apo-Ppr), and a fragment of Ppr lacking the C-terminal Bph domain. Although Holo-Apo-Ppr showed PYP(L) as a major photoproduct under blue light, as seen in the Bph-truncated Ppr, the equilibrium in the Holo-Holo-Ppr was shifted from PYP(L) to PYP(M) as the reaction progresses under blue light. Concomitantly, the spectrum of Bph exhibited subtle but distinguishable alteration. Together with the fact, it can be proposed that Bph with BV influences the photoreaction of PYP in Ppr, and vice versa. SAXS measurements revealed substantial tertiary structure changes in Holo-Holo-Ppr under continuous blue light irradiation within the first 5 min time domain. Interestingly, the changes in tertiary structure were partially suppressed by photoactivation of the Bph domain. These observations indicate that the photoreactions of the PYP and Bph domains are coupled with each other, and that the interplay realizes the structural switch, which might be involved in downstream signal transduction. The Biophysical Society of Japan 2020-09-01 /pmc/articles/PMC7610063/ /pubmed/33194513 http://dx.doi.org/10.2142/biophysico.BSJ-2020015 Text en 2020 THE BIOPHYSICAL SOCIETY OF JAPAN https://creativecommons.org/licenses/by-nc-sa/4.0/This article is licensed under the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 Inter­national License. To view a copy of this license, visit 
https://creativecommons.org/licenses/by-nc-sa/4.0/.
spellingShingle Regular Article
Sum, Jia-Siang
Yamazaki, Yoichi
Yoshida, Keito
Yonezawa, Kento
Hayashi, Yugo
Kataoka, Mikio
Kamikubo, Hironari
Spectroscopic and structural characteristics of a dual-light sensor protein, PYP-phytochrome related protein
title Spectroscopic and structural characteristics of a dual-light sensor protein, PYP-phytochrome related protein
title_full Spectroscopic and structural characteristics of a dual-light sensor protein, PYP-phytochrome related protein
title_fullStr Spectroscopic and structural characteristics of a dual-light sensor protein, PYP-phytochrome related protein
title_full_unstemmed Spectroscopic and structural characteristics of a dual-light sensor protein, PYP-phytochrome related protein
title_short Spectroscopic and structural characteristics of a dual-light sensor protein, PYP-phytochrome related protein
title_sort spectroscopic and structural characteristics of a dual-light sensor protein, pyp-phytochrome related protein
topic Regular Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7610063/
https://www.ncbi.nlm.nih.gov/pubmed/33194513
http://dx.doi.org/10.2142/biophysico.BSJ-2020015
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