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3JBB

Characterization of red-shifted phycobiliprotein complexes isolated from the chlorophyll f-containing cyanobacterium Halomicronema hongdechloris

3JBB の概要
エントリーDOI10.2210/pdb3jbb/pdb
EMDBエントリー6430
分子名称allophycocyanin subunit alpha-B, allophycocyanin beta chain, PHYCOCYANOBILIN, ... (5 entities in total)
機能のキーワードalpha-helical phycobiliprotein, light harvesting, phycocyano methylation on asn71 in apcb subunit, phycobilisome, photosynthesis
由来する生物種Halomicronema hongdechloris
詳細
タンパク質・核酸の鎖数12
化学式量合計227188.39
構造登録者
Li, Y.,Lin, Y.,Garvey, C.,Birch, D.,Corkery, R.W.,Loughlin, P.C.,Scheer, H.,Willows, R.D.,Chen, M. (登録日: 2015-08-26, 公開日: 2015-11-11, 最終更新日: 2025-03-26)
主引用文献Li, Y.,Lin, Y.,Garvey, C.J.,Birch, D.,Corkery, R.W.,Loughlin, P.C.,Scheer, H.,Willows, R.D.,Chen, M.
Characterization of red-shifted phycobilisomes isolated from the chlorophyll f-containing cyanobacterium Halomicronema hongdechloris.
Biochim.Biophys.Acta, 1857:107-114, 2015
Cited by
PubMed Abstract: Phycobilisomes are the main light-harvesting protein complexes in cyanobacteria and some algae. It is commonly accepted that these complexes only absorb green and orange light, complementing chlorophyll absorbance. Here, we present a new phycobilisome derived complex that consists only of allophycocyanin core subunits, having red-shifted absorption peaks of 653 and 712 nm. These red-shifted phycobiliprotein complexes were isolated from the chlorophyll f-containing cyanobacterium, Halomicronema hongdechloris, grown under monochromatic 730 nm-wavelength (far-red) light. The 3D model obtained from single particle analysis reveals a double disk assembly of 120-145 Å with two α/β allophycocyanin trimers fitting into the two separated disks. They are significantly smaller than typical phycobilisomes formed from allophycocyanin subunits and core-membrane linker proteins, which fit well with a reduced distance between thylakoid membranes observed from cells grown under far-red light. Spectral analysis of the dissociated and denatured phycobiliprotein complexes grown under both these light conditions shows that the same bilin chromophore, phycocyanobilin, is exclusively used. Our findings show that red-shifted phycobilisomes are required for assisting efficient far-red light harvesting. Their discovery provides new insights into the molecular mechanisms of light harvesting under extreme conditions for photosynthesis, as well as the strategies involved in flexible chromatic acclimation to diverse light conditions.
PubMed: 26514405
DOI: 10.1016/j.bbabio.2015.10.009
主引用文献が同じPDBエントリー
実験手法
ELECTRON MICROSCOPY (26 Å)
構造検証レポート
Validation report summary of 3jbb
検証レポート(詳細版)ダウンロードをダウンロード

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件を2026-03-04に公開中

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