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Expression of Protein Complexes and Individual Proteins Upon Transition of Etioplasts to Chloroplasts in Pea (Pisum sativum)

机译:豌豆叶绿体向叶绿体转变过程中蛋白复合物和单个蛋白的表达

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The protein complexes of pea (Pisum sativum L.) etioplasts, etio-chloroplasts and chloroplasts were examined using 2D Blue Native/SDS–PAGE. The most prominent protein complexes in etioplasts were the ATPase and the Clp and FtsH protease complexes which probably have a crucial role in the biogenesis of etioplasts and chloroplasts. Also the cytochrome b6f (Cyt b6f) complex was assembled in the etioplast membrane, as well as Rubisco, at least partially, in the stroma. These complexes are composed of proteins encoded by both the plastid and nuclear genomes, indicating that a functional cross-talk exists between pea etioplasts and the nucleus. In contrast, the proteins and protein complexes that bind chlorophyll, with the PetD subunit and the entire Cyt b6f complex as an exception, did not accumulate in etioplasts. Nevertheless, some PSII core components such as PsbE and the luminal oxygen-evolvong complex (OEC) proteins PsbO and PsbP accumulated efficiently in etioplasts. After 6 h de-etiolation, a complete PSII core complex appeared with 40% of the maximal photochemical efficiency, but a fully functional PSII was recorded only after 24 h illumination. Similarly, the core complex of PSI was assembled after 6 h illumination, whereas the PSI–light-harvesting complex I was stably assembled only in chloroplasts illuminated for 24 h. Moreover, a battery of proteins responsible for defense against oxidative stress accumulated particularly in etioplasts, including the stromal and thylakoidal forms of ascorbate peroxidase, glutathione reductase and PsbS.
机译:使用2D Blue Native / SDS-PAGE检查了豌豆(Pisum sativum L.)的质体,叶绿体和叶绿体的蛋白质复合物。质体中最突出的蛋白质复合物是ATPase,Clp和FtsH蛋白酶复合物,它们可能在质体和叶绿体的生物发生中起关键作用。细胞色素b 6 f(Cyt b 6 f)复合物也被组装在质膜中,至少部分地被组装在基质中。这些复合物由质体和核基因组编码的蛋白质组成,表明豌豆质体和细胞核之间存在功能性串扰。相反,结合叶绿素的蛋白质和蛋白质复合物,除了PetD亚基和整个Cyt b 6 f复合物,都不在质体中积累。然而,一些PSII核心成分,例如PsbE和腔内氧进化复合物(OEC)蛋白PsbO和PsbP有效地积累在质体中。脱蜡6小时后,出现了具有最大光化学效率40%的完整PSII核心复合物,但仅在光照24小时后才记录了功能齐全的PSII。同样,PSI的核心复合物在光照6小时后组装,而PSI–集光复合物I仅在光照24 h的叶绿体中稳定地组装。此外,负责防御氧化应激的蛋白质特别是在质体中积累了一系列蛋白质,包括抗坏血酸过氧化物酶,谷胱甘肽还原酶和PsbS的基质和类囊体形式。

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