类囊体
生物
叶绿体
氧化还原酶
拟南芥
铁氧还蛋白
易位
生物化学
基质
电子传输链
拟南芥
氧化还原
生物物理学
光合作用
叶绿体基质
膜蛋白
基因
膜
酶
突变体
化学
有机化学
免疫学
免疫组织化学
作者
J. Philipp Benz,Anna Stengel,Minna Lintala,Y.-H. Lee,Andreas P.M. Weber,Katrin Philippar,Irene L. Gügel,Shuji Kaieda,Takahisa Ikegami,Paula Mulo,J. Soll,Bettina Bölter
出处
期刊:The Plant Cell
[Oxford University Press]
日期:2009-12-01
卷期号:21 (12): 3965-3983
被引量:116
标识
DOI:10.1105/tpc.109.069815
摘要
Abstract Translocation of nuclear-encoded preproteins across the inner envelope of chloroplasts is catalyzed by the Tic translocon, consisting of Tic110, Tic40, Tic62, Tic55, Tic32, Tic20, and Tic22. Tic62 was proposed to act as a redox sensor of the complex because of its redox-dependent shuttling between envelope and stroma and its specific interaction with the photosynthetic protein ferredoxin-NADP(H) oxidoreductase (FNR). However, the nature of this close relationship so far remained enigmatic. A putative additional localization of Tic62 at the thylakoids mandated further studies examining how this feature might be involved in the respective redox sensing pathway and the interaction with its partner protein. Therefore, both the association with FNR and the physiological role of the third, thylakoid-bound pool of Tic62 were investigated in detail. Coexpression analysis indicates that Tic62 has similar expression patterns as genes involved in photosynthetic functions and protein turnover. At the thylakoids, Tic62 and FNR form high molecular weight complexes that are not involved in photosynthetic electron transfer but are dynamically regulated by light signals and the stromal pH. Structural analyses reveal that Tic62 binds to FNR in a novel binding mode for flavoproteins, with a major contribution from hydrophobic interactions. Moreover, in absence of Tic62, membrane binding and stability of FNR are drastically reduced. We conclude that Tic62 represents a major FNR interaction partner not only at the envelope and in the stroma, but also at the thylakoids of Arabidopsis thaliana and perhaps all flowering plants. Association with Tic62 stabilizes FNR and is involved in its dynamic and light-dependent membrane tethering.
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