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首页> 外文期刊>Plant Molecular Biology >PECULIAR PROPERTIES OF THE PSAF PHOTOSYSTEM I PROTEIN FROM THE GREEN ALGA CHLAMYDOMONAS REINHARDTII - PRESEQUENCE INDEPENDENT IMPORT OF THE PSAF PROTEIN INTO BOTH CHLOROPLASTS AND MITOCHONDRIA
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PECULIAR PROPERTIES OF THE PSAF PHOTOSYSTEM I PROTEIN FROM THE GREEN ALGA CHLAMYDOMONAS REINHARDTII - PRESEQUENCE INDEPENDENT IMPORT OF THE PSAF PROTEIN INTO BOTH CHLOROPLASTS AND MITOCHONDRIA

机译:绿藻衣原体的PSAF光系统I蛋白质的特殊性质-PSAF蛋白质预先独立引入叶绿体和线粒体中的重要性。

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It has previously been shown that presequences of nuclear-encoded chloroplast proteins from the green alga Chlamydomonas reinhardtii contain a region that may form an amphiphilic alpha-helix, a structure characteristic of mitochondrial presequences. We have tested two precursors of chloroplast proteins (the PsaF and PsaK photosystem I subunits) from C. reinhardtii for the ability to be imported into spinach leaf mitochondria in vitro. Both precursors bound to spinach mitochondria. The PsaF protein was converted into a protease-protected form with high efficiency in a membrane potential-dependent manner, indicating that the protein had been imported, whereas the PsaK protein was not protease protected. The protease protection of PsaF was not inhibited by a synthetic peptide derived from the presequence of the N. plumbaginifolia mitochondrial F-1 beta subunit. Furthermore, if the presequence of PsaF was truncated or deleted by in vitro mutagenesis, the protein was still protease-protected with approximately the same efficiency as the full-length precursor. These results indicate that PsaF can be imported by spinach mitochondria in a presequence-independent manner. However, even in the absence of the presequence, this process was membrane potential-dependent. Interestingly, the presequence-truncated PsaF proteins were also protease-protected upon incubation with C. reinhardtii chloroplasts. Our results indicate that the C. reinhardtii chloroplast PsaF protein has peculiar properties and may be imported not only into chloroplasts but also into higher-plant mitochondria. This finding indicates that additional control mechanisms in the cytosol that are independent of the presequence are required to achieve sorting between chloroplasts and mitochondria in vivo. [References: 29]
机译:先前已经显示,来自绿藻莱茵衣藻的核编码叶绿体蛋白的预先序列包含可能形成两亲性α-螺旋的区域,该结构是线粒体预先序列的特征结构。我们已经测试了来自莱茵衣藻的叶绿体蛋白的两个前体(PsaF和PsaK光系统I亚基)在体外被导入菠菜叶线粒体的能力。两种前体均与菠菜线粒体结合。 PsaF蛋白以膜电位依赖性方式高效转化为蛋白酶保护的形式,表明该蛋白已被导入,而PsaK蛋白则不受蛋白酶保护。 PsaF的蛋白酶保护不受合成肽的抑制,该肽源于李氏烟草线粒体F-1β亚基的序列。此外,如果通过体外诱变将PsaF的前序列截短或删除,则该蛋白仍会被蛋白酶保护,其效率与全长前体相同。这些结果表明,PsaF可以通过菠菜线粒体以不依赖于序列的方式导入。然而,即使没有先后顺序,该过程也是膜电位依赖性的。有趣的是,预先截短的PsaF蛋白在与莱茵衣藻叶绿体孵育后也被蛋白酶保护。我们的结果表明,莱茵衣藻叶绿体PsaF蛋白具有独特的特性,不仅可以输入到叶绿体中,而且可以输入到高等植物线粒体中。该发现表明,胞浆中不依赖于前序的其他控制机制是实现体内叶绿体和线粒体之间分选所必需的。 [参考:29]

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