Stengel Anna, Benz Philipp, Balsera Mónica, Soll Jürgen, Bölter Bettina
Munich Center for Integrated Protein Science CiPS, Ludwig-Maximilians-Universität München, Feodor-Lynen-Strasse 25, D-81377 Munich, Germany.
J Biol Chem. 2008 Mar 14;283(11):6656-67. doi: 10.1074/jbc.M706719200. Epub 2008 Jan 7.
The preprotein translocon at the inner envelope of chloroplasts (Tic complex) facilitates the import of nuclear-encoded preproteins into the organelle. Seven distinct subunits have been identified so far. For each of those, specific functions have been proposed based on structural prediction or experimental evidence. Three of those subunits possess modules that could act as redox-active regulatory components in the import process. To date, however, the mode of redox regulation of the import process remains enigmatic. To investigate how the chloroplast redox state influences translocon behavior and composition, we studied the Tic component and the putative redox sensor Tic62 in more detail. The experimental results provide evidence that Tic62 can act as a bona fide dehydrogenase in vitro, and that it changes its localization in the chloroplast dependent on the NADP+/NADPH ratio in the stroma. Moreover, the redox state influences the interactions of Tic62 with the translocon and the flavoenzyme ferredoxin-NADP+ oxidoreductase. Additionally, we give initial experimental insights into the Tic62 structure using circular dichroism measurements and demonstrate that the protein consists of two structurally different domains. Our results indicate that Tic62 possesses redox-dependent properties that would allow it to fulfill a role as redox sensor protein in the chloroplast.
叶绿体内膜上的前体蛋白转运体(Tic复合体)促进核编码的前体蛋白导入该细胞器。到目前为止,已鉴定出七个不同的亚基。对于其中每一个亚基,基于结构预测或实验证据提出了特定的功能。其中三个亚基具有可在导入过程中作为氧化还原活性调节成分的模块。然而,迄今为止,导入过程的氧化还原调节模式仍然是个谜。为了研究叶绿体氧化还原状态如何影响转运体的行为和组成,我们更详细地研究了Tic成分和假定的氧化还原传感器Tic62。实验结果提供了证据,表明Tic62在体外可作为一种真正的脱氢酶,并且它在叶绿体中的定位会根据基质中的NADP⁺/NADPH比率而改变。此外,氧化还原状态影响Tic62与转运体以及黄素酶铁氧还蛋白-NADP⁺氧化还原酶之间的相互作用。另外,我们使用圆二色性测量对Tic62结构进行了初步实验性深入研究,并证明该蛋白质由两个结构不同的结构域组成。我们的结果表明,Tic62具有氧化还原依赖性特性,使其能够在叶绿体中充当氧化还原传感器蛋白。