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A chromodomain protein encoded by the arabidopsis CAO gene is a plant-specific component of the chloroplast signal recognition particle pathway that is involved in LHCP targeting.

机译:由拟南芥CAO基因编码的色域蛋白是叶绿体信号识别颗粒途径的植物特异性成分,参与LHCP靶向。

摘要

A recessive mutation in Arabidopsis, named chaos (for chlorophyll a/b binding protein harvesting-organelle specific; designated gene symbol CAO), was isolated by using transposon tagging. Characterization of the phenotype of the chaos mutant revealed a specific reduction of pigment binding antenna proteins in the thylakoid membrane. These nuclear-encoded proteins utilize a chloroplast signal recognition particle (cpSRP) system to reach the thylakoid membrane. Both prokaryotes and eukaryotes possess a cytoplasmic SRP containing a 54-kD protein (SRP54) and an RNA. In chloroplasts, the homolog of SRP54 was found to bind a 43-kD protein (cpSRP43) rather than to an RNA. We cloned the CAO gene, which encodes a protein identified as Arabidopsis cpSRP43. The product of the CAO gene does not resemble any protein in the databases, although it contains motifs that are known to mediate protein-protein interactions. These motifs include ankyrin repeats and chromodomains. Therefore, CAO encodes an SRP component that is unique to plants. Surprisingly, the phenotype of the cpSRP43 mutant (i.e., chaos) differs from that of the Arabidopsis cpSRP54 mutant, suggesting that the functions of the two proteins do not strictly overlap. This difference also suggests that the function of cpSRP43 is most likely restricted to protein targeting into the thylakoid membrane, whereas cpSRP54 may be involved in an additional process(es), such as chloroplast biogenesis, perhaps through chloroplast-ribosomal association with chloroplast ribosomes.
机译:通过使用转座子标签分离了拟南芥中的一种隐性突变,该突变称为混沌(针对叶绿素a / b结合蛋白收获细胞器特异性;指定为基因符号CAO)。混沌突变体表型的表征表明类囊体膜中色素结合天线蛋白的特异性减少。这些核编码蛋白利用叶绿体信号识别颗粒(cpSRP)系统到达类囊体膜。原核生物和真核生物都具有胞质SRP,其中含有54 kD蛋白(SRP54)和RNA。在叶绿体中,发现SRP54的同源物与43-kD蛋白(cpSRP43)结合,而不与RNA结合。我们克隆了CAO基因,该基因编码一种被鉴定为拟南芥cpSRP43的蛋白质。 CAO基因的产物与数据库中的任何蛋白质都不相似,尽管它包含已知介导蛋白质与蛋白质相互作用的基序。这些基序包括锚蛋白重复序列​​和色域。因此,CAO编码植物特有的SRP成分。令人惊讶地,cpSRP43突变体的表型(即混沌)与拟南芥cpSRP54突变体的表型不同,表明这两种蛋白的功能并不严格重叠。这种差异还表明cpSRP43的功能很可能仅限于蛋白质靶向类囊体膜,而cpSRP54可能参与了其他过程,例如叶绿体生物发生,可能是通过叶绿体-核糖体与叶绿体核糖体的结合。

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