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ID 64243
フルテキストURL
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著者
Nakajima, Yoshiki Research Institute for Interdisciplinary Science, Okayama University ORCID Kaken ID
Ugai-Amo, Natsumi Graduate School of Natural Science and Technology, Okayama University
Tone, Naoki Graduate School of Natural Science and Technology, Okayama University
Nakagawa, Akiko Proteo-Science Research Center, Ehime University
Iwai, Masako Graduate School and College of Arts and Sciences, The University of Tokyo
Ikeuchi, Masahiko Graduate School and College of Arts and Sciences, The University of Tokyo
Sugiura, Miwa Proteo-Science Research Center, Ehime University
Suga, Michihiro Research Institute for Interdisciplinary Science, Okayama University ORCID Kaken ID researchmap
Jian-Ren, Shen Research Institute for Interdisciplinary Science, Okayama University
抄録
Three psbA genes (psbA1, psbA2, and psbA3) encoding the D1 subunit of photosystem II (PSII) are present in the ther-mophilic cyanobacterium Thermosynechococcus elongatus and are expressed differently in response to changes in the growth environment. To clarify the functional differences of the D1 protein expressed from these psbA genes, PSII dimers from two strains, each expressing only one psbA gene (psbA2 or psbA3), were crystallized, and we analyzed their structures at resolu-tions comparable to previously studied PsbA1-PSII. Our results showed that the hydrogen bond between pheophytin/D1 (PheoD1) and D1-130 became stronger in PsbA2-and PsbA3-PSII due to change of Gln to Glu, which partially explains the increase in the redox potential of PheoD1 observed in PsbA3. In PsbA2, one hydrogen bond was lost in PheoD1 due to the change of D1-Y147F, which may explain the decrease in stability of PheoD1 in PsbA2. Two water molecules in the Cl-1 channel were lost in PsbA2 due to the change of D1-P173M, leading to the narrowing of the channel, which may explain the lower efficiency of the S-state transition beyond S2 in PsbA2-PSII. In PsbA3-PSII, a hydrogen bond between D1-Ser270 and a sulfoquinovosyl-diacylglycerol molecule near QB dis-appeared due to the change of D1-Ser270 in PsbA1 and PsbA2 to D1-Ala270. This may result in an easier exchange of bound QB with free plastoquinone, hence an enhancement of oxygen evolution in PsbA3-PSII due to its high QB exchange efficiency. These results provide a structural basis for further functional examination of the three PsbA variants.
発行日
2022-12
出版物タイトル
Journal Of Biological Chemistry
298巻
12号
出版者
Elsevier
開始ページ
102668
ISSN
1083-351X
資料タイプ
学術雑誌論文
言語
英語
OAI-PMH Set
岡山大学
著作権者
© 2022 THE AUTHORS.
論文のバージョン
publisher
PubMed ID
DOI
Web of Science KeyUT
関連URL
isVersionOf https://doi.org/10.1016/j.jbc.2022.102668
ライセンス
http://creativecommons.org/licenses/by/4.0/
助成機関名
Japan Society for the Promotion of Science
助成番号
JP17H064351
JP21H02447
JP20H05446
JP22H04754
JP20H03226
JP17H06434
JP22H04916