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拟南芥psae1-1突变体中稳定的LHCII-PSI聚集体及光合状态转换的抑制

A stable LHCII-PSI aggregate and suppression of photosynthetic state transitions in the psae1-1 mutant of Arabidopsis thaliana.

作者信息

Pesaresi Paolo, Lunde Christina, Jahns Peter, Tarantino Delia, Meurer Jörg, Varotto Claudio, Hirtz Rolf-Dieter, Soave Carlo, Scheller Henrik Vibe, Salamini Francesco, Leister Dario

机构信息

Zentrum zur Identifikation von Genfunktionen durch Insertionsmutagenese bei Arabidopsis thaliana (ZIGIA), Max-Planck-Institut für Züchtungsforschung, Carl-von-Linné-Weg 10, 50829 Köln, Germany.

出版信息

Planta. 2002 Oct;215(6):940-8. doi: 10.1007/s00425-002-0835-0. Epub 2002 Aug 9.

Abstract

During photosynthetic state transitions, a fraction of the major light-harvesting complex (LHCII) shuttles between photosystems II (PSII) and I (PSI), depending on whether or not it is phosphorylated. Its phosphorylation state in turn depends on the relative activity of the two photosystems, which is a function of redox state and illumination parameters. In the psae1-1 mutant of Arabidopsis thaliana (L.) Heynh., amounts of the PSI subunits E, C, D, H and L are decreased. A fraction of LHCII is stably associated with PSI when plants are exposed to low light conditions, giving rise to a high-molecular-mass protein-pigment complex detectable in native protein gels. The formation of this abnormal LHCII-PSI complex is associated with an almost complete suppression of state transitions, a drastic increase in the levels of phosphorylated LHCII under all light regimes tested, and a permanent reduction in PSII antenna size. All these observations suggest that the altered polypeptide composition of PSI perturbs the docking of phosphorylated LHCII, making psae1-1 a unique mutant for the study of PSI-LHCII interactions and additional effects of the mutation, such as a decrease in grana stacking and increased adenylate kinase activity.

摘要

在光合状态转换过程中,一部分主要捕光复合体(LHCII)在光系统II(PSII)和光系统I(PSI)之间穿梭,这取决于它是否被磷酸化。其磷酸化状态又取决于两个光系统的相对活性,而这是氧化还原状态和光照参数的函数。在拟南芥(L.)海因茨的psae1 - 1突变体中,PSI亚基E、C、D、H和L的含量减少。当植物暴露在弱光条件下时,一部分LHCII与PSI稳定结合,在天然蛋白质凝胶中可检测到一种高分子质量的蛋白质 - 色素复合体。这种异常的LHCII - PSI复合体的形成与状态转换几乎完全被抑制、在所有测试光照条件下磷酸化LHCII水平急剧增加以及PSII天线大小永久减小有关。所有这些观察结果表明,PSI改变的多肽组成扰乱了磷酸化LHCII的对接,使psae1 - 1成为研究PSI - LHCII相互作用以及该突变的其他影响(如基粒堆积减少和腺苷酸激酶活性增加)的独特突变体。

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