Evidence of the supercomplex organization of photosystem II and light-harvesting complexes in Nannochloropsis granulata

被引:0
作者
Ikumi Umetani
Motoshi Kunugi
Makio Yokono
Atsushi Takabayashi
Ayumi Tanaka
机构
[1] Hokkaido University,Institute of Low Temperature Science
[2] University College of Southeast Norway,Department of Natural Sciences and Environmental Health
来源
Photosynthesis Research | 2018年 / 136卷
关键词
Light-harvesting complex; Photosystem II; CN–PAGE;
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摘要
Diverse light-harvesting complexes (LHCs) have been found in photosynthetic microalgae that originated from secondary endosymbiosis involving primary red algae. However, the associations between LHCs and photosystem I (PSI) and photosystem II (PSII) in these microalgae are not fully understood. Eustigmatophyta is a red algal lineage that appears to have a unique organization in its photosynthetic machinery, consisting of only chlorophyll a and carotenoids that are atypical compared with other closely related groups. In this study, the supramolecular organization of pigment–protein complexes in the eustigmatophyte alga, Nannochloropsis granulata was investigated using Clear Native (CN) PAGE coupled with two-dimensional (2D) SDS-PAGE. Our results showed two slowly migrating green bands that corresponded to PSII supercomplexes, which consisted of reaction centers and LHCs. These green bands were also characterized as PSII complexes by their low temperature fluorescence emission spectra. The protein subunits of the PSII–LHC resolved by 2D CN/SDS-PAGE were analyzed by mass spectrometry, and four different LHC proteins were identified. Phylogenetic analysis of the identified LHC protein sequences revealed that they belonged to four different Lhc groups; (1) stress-related Lhcx proteins, (2) fucoxanthin chlorophyll a/c-binding Lhcf proteins, (3) red-shifted Chromera light-harvesting proteins (Red-CLH), and (4) Lhcr proteins, which are commonly found in organisms possessing red algal plastids. This is the first report showing evidence of a pigment–protein supercomplex consisting of PSII and LHCs, and to identify PSII-associated LHC proteins in Nannochloropsis.
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页码:49 / 61
页数:12
相关论文
共 292 条
[1]  
Adl SM(2012)The revised classification of eukaryotes J Eukaryot Microbiol 59 429-493
[2]  
Simpson AG(2017)Conservation of core complex subunits shaped the structure and function of photosystem I in the secondary endosymbiont alga. New Phytol 213 714-726
[3]  
Lane CE(2014)Characterization of the photosynthetic apparatus of the Eustigmatophycean Biochim Biophys Acta 1837 306-314
[4]  
Lukes J(2014): evidence of convergent evolution in the supramolecular organization of photosystem I Biochim Biophys Acta 1837 802-810
[5]  
Bass D(2017)Novel type of red-shifted chlorophyll Photosynth Res 131 255-266
[6]  
Bowser SS(2015) antenna complex from J Plant Physiol 172 62-75
[7]  
Brown MW(2013): II. Biochemistry and spectroscopy FEBS Lett 587 1310-1315
[8]  
Burki F(2014)Modular antenna of photosystem I in secondary plastids of red algal origin: a Biochim Biophys Acta 1837 1235-1246
[9]  
Dunthorn M(2014) case study Biochim Biophys Acta 1837 899-907
[10]  
Hampl V(2014)Evolution and function of light harvesting proteins Mol Plant 7 323-335