TY - JOUR
T1 - Characterization of the Rate-Limiting Steps in the Dark-To-Light Transitions of Closed Photosystem II
T2 - Temperature Dependence and Invariance of Waiting Times during Multiple Light Reactions
AU - Magyar, Melinda
AU - Sipka, Gábor
AU - Han, Wenhui
AU - Li, Xingyue
AU - Han, Guangye
AU - Shen, Jian Ren
AU - Lambrev, Petar H.
AU - Garab, Győző
N1 - Funding Information:
The authors acknowledge the support from the Hungarian Ministry of Innovation and Technology, National Research, Development and Innovation Fund (OTKA grants K-128679 to G.G.; PD-138498 to G.S.). P.H.L. used support from the grant 2018-1.2.1-NKP-2018-00009. G.G. also acknowledges the support from the Czech Science Foundation (GA ČR 19-13637S), and the Eötvös Loránd Research Network (ELKH KÖ-36/2021). Studies in the Chinese group are supported from a National Key R&D Program of China (2022YFA0911900, 2022YFC1803400), CAS Project for Young Scientists in Basic Research (YSBR-004), a Strategic Priority Research Program of the Chinese Academy of Sciences (XDA26050402) and a National Natural Science Foundation of China (31470339).
Publisher Copyright:
© 2022 by the authors.
PY - 2023/1
Y1 - 2023/1
N2 - Rate-limiting steps in the dark-to-light transition of Photosystem II (PSII) were discovered by measuring the variable chlorophyll-a fluorescence transients elicited by single-turnover saturating flashes (STSFs). It was shown that in diuron-treated samples: (i) the first STSF, despite fully reducing the QA quinone acceptor molecule, generated only an F1(<Fm) fluorescence level; (ii) to produce the maximum (Fm) level, additional excitations were required, which, however, (iii) were effective only with sufficiently long Δτ waiting times between consecutive STSFs. Detailed studies revealed the gradual formation of the light-adapted charge-separated state, PSIIL. The data presented here substantiate this assignment: (i) the Δτ1/2 half-increment rise (or half-waiting) times of the diuron-treated isolated PSII core complexes (CCs) of Thermostichus vulcanus and spinach thylakoid membranes displayed similar temperature dependences between 5 and –80 °C, with substantially increased values at low temperatures; (ii) the Δτ1/2 values in PSII CC were essentially invariant on the Fk−to-Fk+1 (k = 1–4) increments both at 5 and at −80 °C, indicating the involvement of the same physical mechanism during the light-adaptation process of PSIIL. These data are in harmony with the earlier proposed role of dielectric relaxation processes in the formation of the light-adapted charge-separated state and in the variable chlorophyll-a fluorescence of PSII.
AB - Rate-limiting steps in the dark-to-light transition of Photosystem II (PSII) were discovered by measuring the variable chlorophyll-a fluorescence transients elicited by single-turnover saturating flashes (STSFs). It was shown that in diuron-treated samples: (i) the first STSF, despite fully reducing the QA quinone acceptor molecule, generated only an F1(<Fm) fluorescence level; (ii) to produce the maximum (Fm) level, additional excitations were required, which, however, (iii) were effective only with sufficiently long Δτ waiting times between consecutive STSFs. Detailed studies revealed the gradual formation of the light-adapted charge-separated state, PSIIL. The data presented here substantiate this assignment: (i) the Δτ1/2 half-increment rise (or half-waiting) times of the diuron-treated isolated PSII core complexes (CCs) of Thermostichus vulcanus and spinach thylakoid membranes displayed similar temperature dependences between 5 and –80 °C, with substantially increased values at low temperatures; (ii) the Δτ1/2 values in PSII CC were essentially invariant on the Fk−to-Fk+1 (k = 1–4) increments both at 5 and at −80 °C, indicating the involvement of the same physical mechanism during the light-adaptation process of PSIIL. These data are in harmony with the earlier proposed role of dielectric relaxation processes in the formation of the light-adapted charge-separated state and in the variable chlorophyll-a fluorescence of PSII.
KW - chlorophyll-a fluorescence
KW - conformational changes
KW - dielectric relaxation
KW - light-adapted charge-separated state of PSII
KW - rate-limitation
KW - temperature-dependence
KW - waiting time
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U2 - 10.3390/ijms24010094
DO - 10.3390/ijms24010094
M3 - Article
AN - SCOPUS:85146024555
SN - 1661-6596
VL - 24
JO - International Journal of Molecular Sciences
JF - International Journal of Molecular Sciences
IS - 1
M1 - 94
ER -