LHCBM1 and LHCBM2/7 Polypeptides, Components of Major LHCII Complex, Have Distinct Functional Roles in Photosynthetic Antenna System of Chlamydomonas reinhardtii

被引:69
作者
Ferrante, Paola [2 ]
Ballottari, Matteo [1 ]
Bonente, Giulia [1 ]
Giuliano, Giovanni [2 ]
Bassi, Roberto [1 ,3 ]
机构
[1] Univ Verona, Dept Biotechnol, I-37134 Verona, Italy
[2] Casaccia Res Ctr, ENEA Italian Natl Agcy New Technol Energy & Susta, I-00123 Rome, Italy
[3] ICG3 Juelich Res Ctr, D-52425 Julich, Germany
关键词
LIGHT-HARVESTING COMPLEX; PROTEIN-KINASE STT7; PHOTOSYSTEM-II; CHLOROPHYLL ANTENNA; STATE TRANSITIONS; HIGHER-PLANTS; HYDROGEN-PRODUCTION; MOLECULAR-HYDROGEN; GRANA MEMBRANES; CARBON-DIOXIDE;
D O I
10.1074/jbc.M111.316729
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The photosystem II antenna of Chlamydomonas reinhardtii is composed of monomeric and trimeric complexes, the latter encoded by LHCBM genes. We employed artificial microRNA technology to specifically silence the LHCBM2 and LHCBM7 genes, encoding identical mature polypeptides, and the LHCBM1 gene. As a control, we studied the npq5 mutant, deficient in the LHCBM1 protein. The organization of LHCII complexes, functional antenna size, capacity for photoprotection, thermal energy dissipation and state transitions, and resistance to reactive oxygen species was studied in the various genotypes. Silencing of the LHCBM2/7 genes resulted in a decrease of an LHCII protein with an apparent molecular mass of 22 kDa, whereas silencing/lack of LHCBM1 caused the decrease/disappearance of a 23-kDa protein. A decrease in the abundance of trimeric LHCII complexes and in functional antenna size was observed in bothLHCBM2/7andLHCBM1knockouts. In agreement with previous data, depletion of LHCBM1 decreased the capacity for excess energy dissipation but not the ability to perform state transitions. The opposite was true for LHCBM2/7, implying that this polypeptide has a different functional role from LHCBM1. The abundance of LHCBM1 and LHCBM2/7 is in both cases correlated with resistance to superoxide anion, whereas only LHCBM1 is also involved in singlet oxygen scavenging. These results suggest that different LHCBM components have well defined, non-redundant functions despite their high homology, implying that engineering of LHCBM proteins can be an effective strategy for manipulating the light harvesting system of Chlamydomonas reinhardtii.
引用
收藏
页码:16276 / 16288
页数:13
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