Deletion of PsbM in tobacco alters the QB site properties and the electron flow within photosystem II

被引:35
作者
Umate, Pavan
Schwenkert, Serena
Karbat, Izhar
Dal Bosco, Cristina
Mlcochova, Lada
Volz, Stefanie
Zer, Hagit
Herrmann, Reinhold G.
Ohad, Itzhak
Meurer, Joerg
机构
[1] Univ Munich, Dept Biol 1, D-80638 Munich, Germany
[2] Tel Aviv Univ, Dept Plant Sci, George S Wise Fac Life Sci, IL-69978 Tel Aviv, Israel
[3] Hebrew Univ Jerusalem, Even Ari Ctr Photosynthesis Res, IL-91904 Jerusalem, Israel
[4] Hebrew Univ Jerusalem, Dept Biol Chem, Silberman Inst Life Sci, IL-91904 Jerusalem, Israel
关键词
D O I
10.1074/jbc.M608117200
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
Photosystem II, the oxygen-evolving complex of photosynthetic organisms, includes an intriguingly large number of low molecular weight polypeptides, including PsbM. Here we describe the first knock-out of psbM using a transplastomic, reverse genetics approach in a higher plant. Homoplastomic Delta psbM plants exhibit photoautotrophic growth. Biochemical, biophysical, and immunological analyses demonstrate that PsbM is not required for biogenesis of higher order photosystem 11 complexes. However, photosystem 11 is highly light-sensitive, and its activity is significantly decreased in ApsbM, whereas kinetics of plastid protein synthesis, reassembly of photosystem 11, and recovery of its activity are comparable with the wild type. Unlike wild type, phosphorylation of the reaction center proteins D1 and D2 is severely reduced, whereas the redox-controlled phosphorylation of photosystem 11 light-harvesting complex is reversely regulated in ApsbM plants because of accumulation of reduced plastoquinone in the dark and a limited photosystem II-mediated electron transport in the light. Charge recombination in ApsbM measured by thermoluminescence oscillations significantly differs from the 2/6 patterns in the wild type. A simulation program of thermoluminescence oscillations indicates a higher Q(B)/Q(B)(-) ratio in dark-adapted mutant thylakoids relative to the wild type. The interaction of the Q(A)/Q(B) sites estimated by shifts in the maximal thermoluminescence emission temperature of the Q band, induced by binding of different herbicides to the Q(B) site, is changed indicating alteration of the activation energy for back electron flow. We conclude that PsbM is primarily involved in the interaction of the redox components important for the electron flow within, outward, and backward to photosystem II.
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页码:9758 / 9767
页数:10
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  • [61] Light affects the accessibility of the thylakoid light harvesting complex II (LHCII) phosphorylation site to the membrane protein kinase(s)
    Zer, H
    Vink, M
    Shochat, S
    Herrmann, RG
    Andersson, B
    Ohad, I
    [J]. BIOCHEMISTRY, 2003, 42 (03) : 728 - 738