Light stability of the isolated CP43 studied by infrared and terahertz spectroscopy

Here, the light-induced changes of the core antenna complex chlorophyll protein 43 (CP43) isolated from PSII of spinach were assessed using infrared and terahertz (THz) spectroscopy. We found that the collective vibrational modes at low frequencies and the secondary structures of CP43 were altered u...

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Main Authors: Y.G. QU, X.L. WANG, T.Y. KUANG
Format: Article
Language:English
Published: Academy of Sciences of the Czech Republic, Institute of Experimental Botany 2020-06-01
Series:Photosynthetica
Subjects:
Online Access:https://ps.ueb.cas.cz/artkey/phs-202003-0009_light-stability-of-the-isolated-cp43-studied-by-infrared-and-terahertz-spectroscopy.php
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author Y.G. QU
X.L. WANG
T.Y. KUANG
author_facet Y.G. QU
X.L. WANG
T.Y. KUANG
author_sort Y.G. QU
collection DOAJ
description Here, the light-induced changes of the core antenna complex chlorophyll protein 43 (CP43) isolated from PSII of spinach were assessed using infrared and terahertz (THz) spectroscopy. We found that the collective vibrational modes at low frequencies and the secondary structures of CP43 were altered upon illumination. The helix changed more than any other secondary structure. CP43 is more easily damaged by illumination than PSII. Infrared and THz spectroscopy have different functions in protein studies. THz spectroscopy has potential in evaluating the stability of proteins.
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spelling doaj.art-6b9576ec78ef475f8704070878dc8db52022-12-22T01:17:42ZengAcademy of Sciences of the Czech Republic, Institute of Experimental BotanyPhotosynthetica0300-36041573-90582020-06-0158375576110.32615/ps.2020.019phs-202003-0009Light stability of the isolated CP43 studied by infrared and terahertz spectroscopyY.G. QU0X.L. WANG1T.Y. KUANG2College of Life Sciences, Linyi University, 276000 Linyi, ChinaCollege of Life Sciences, Shandong Agricultural University, 271018 Taian, ChinaKey Laboratory of Photobiology, Institute of Botany, Chinese Academy of Sciences, 100093 Beijing, ChinaHere, the light-induced changes of the core antenna complex chlorophyll protein 43 (CP43) isolated from PSII of spinach were assessed using infrared and terahertz (THz) spectroscopy. We found that the collective vibrational modes at low frequencies and the secondary structures of CP43 were altered upon illumination. The helix changed more than any other secondary structure. CP43 is more easily damaged by illumination than PSII. Infrared and THz spectroscopy have different functions in protein studies. THz spectroscopy has potential in evaluating the stability of proteins.https://ps.ueb.cas.cz/artkey/phs-202003-0009_light-stability-of-the-isolated-cp43-studied-by-infrared-and-terahertz-spectroscopy.phpamide i bandconformationdegradationphotoinhibition
spellingShingle Y.G. QU
X.L. WANG
T.Y. KUANG
Light stability of the isolated CP43 studied by infrared and terahertz spectroscopy
Photosynthetica
amide i band
conformation
degradation
photoinhibition
title Light stability of the isolated CP43 studied by infrared and terahertz spectroscopy
title_full Light stability of the isolated CP43 studied by infrared and terahertz spectroscopy
title_fullStr Light stability of the isolated CP43 studied by infrared and terahertz spectroscopy
title_full_unstemmed Light stability of the isolated CP43 studied by infrared and terahertz spectroscopy
title_short Light stability of the isolated CP43 studied by infrared and terahertz spectroscopy
title_sort light stability of the isolated cp43 studied by infrared and terahertz spectroscopy
topic amide i band
conformation
degradation
photoinhibition
url https://ps.ueb.cas.cz/artkey/phs-202003-0009_light-stability-of-the-isolated-cp43-studied-by-infrared-and-terahertz-spectroscopy.php
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AT xlwang lightstabilityoftheisolatedcp43studiedbyinfraredandterahertzspectroscopy
AT tykuang lightstabilityoftheisolatedcp43studiedbyinfraredandterahertzspectroscopy