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首页> 外文期刊>The Plant Cell >PSBP-DOMAIN PROTEIN1, a nuclear-encoded thylakoid lumenal protein, is Essential for photosystem I assembly in Arabidopsis.
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PSBP-DOMAIN PROTEIN1, a nuclear-encoded thylakoid lumenal protein, is Essential for photosystem I assembly in Arabidopsis.

机译:PSBP-DOMAIN PROTEIN1是核编码类囊体腔蛋白,对于拟南芥中的光系统I组装至关重要。

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摘要

To gain insights into the molecular details of photosystem I (PSI) biogenesis, we characterized the PsbP-domain protein1 (ppd1) mutant of Arabidopsis thaliana that specifically lacks PSI activity. Deletion of PPD1 results in an inability of the mutant to grow photoautotrophically and a specific loss of the stable PSI complex. Unaltered transcription and translation of plastid-encoded PSI genes indicate that PPD1 acts at the posttranslational level. In vivo protein labeling experiments reveal that the rate of synthesis of PSI reaction center proteins PsaA/B in ppd1 is comparable to that of wild-type plants, whereas the rate of turnover of PsaA/B proteins is higher in ppd1 than in wild-type plants. With increasing leaf age, PPD1 content decreases considerably, while PSI content remains constant. PPD1 is a nuclear-encoded thylakoid lumenal protein and is associated with PSI but is not an integral subunit of PSI. Biochemical and molecular analyses reveal that PPD1 interacts directly and specifically with PsaB and PsaA. Yeast two-hybrid experiments show that PPD1 interacts with some lumenal loops of PsaB and PsaA. Our results suggest that PPD1 is a PSI assembly factor that assists the proper folding and integration of PsaB and PsaA into the thylakoid membrane.
机译:为了深入了解光系统I(PSI)生物发生的分子细节,我们鉴定了拟南芥(Arabidopsis thaliana)的PsbP域蛋白1(ppd1)突变体,该突变体特别缺乏PSI活性。 PPD1的缺失导致突变体无法自养生长,并且稳定PSI复合物特异丢失。质体编码的PSI基因的转录和翻译未改变,表明PPD1在翻译后水平上起作用。体内蛋白质标记实验表明,ppd1中PSI反应中心蛋白PsaA / B的合成速率与野生型植物相当,而ppd1中PsaA / B蛋白的周转率高于野生型植物。植物。随着叶龄的增长,PPD1含量显着降低,而PSI含量保持恒定。 PPD1是核编码类囊体腔蛋白,与PSI相关,但不是PSI不可或缺的亚基。生化和分子分析表明,PPD1直接且特异性地与PsaB和PsaA相互作用。酵母两杂交实验表明,PPD1与PsaB和PsaA的一些腔环相互作用。我们的结果表明,PPD1是PSI组装因子,可帮助PsaB和PsaA正确折叠和整合到类囊体膜中。

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