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A Novel Pathway of Cytochrome c Biogenesis Is Involved in the Assembly of the Cytochrome b6f Complex in Arabidopsis Chloroplasts*S⃞

机译:细胞色素c生物发生的新途径涉及 细胞色素b6f复合体的组装 拟南芥 叶绿体*S⃞

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摘要

We recently characterized a novel heme biogenesis pathway required for heme ci′ covalent binding to cytochrome b6 in Chlamydomonas named system IV or CCB (cofactor assembly, complex C (b6f), subunit B (PetB)). To find out whether this CCB pathway also operates in higher plants and extend the knowledge of the c-type cytochrome biogenesis, we studied Arabidopsis insertion mutants in the orthologs of the CCB genes. The ccb1, ccb2, and ccb4 mutants show a phenotype characterized by a deficiency in the accumulation of the subunits of the cytochrome b6f complex and lack covalent heme binding to cytochrome b6. These mutants were functionally complemented with the corresponding wild type cDNAs. Using fluorescent protein reporters, we demonstrated that the CCB1, CCB2, CCB3, and CCB4 proteins are targeted to the chloroplast compartment of Arabidopsis. We have extended our study to the YGGT family, to which CCB3 belongs, by studying insertion mutants of two additional members of this family for which no mutants were previously characterized, and we showed that they are not functionally involved in the CCB system. Thus, we demonstrate the ubiquity of the CCB proteins in chloroplast heme ci′ binding.
机译:我们最近表征了血红素ci'共价结合到衣藻中细胞色素b6所需的新型血红素生物发生途径,命名为系统IV或CCB(辅因子装配,复合物C(b6f),亚基B(PetB))。为了找出这种CCB途径是否也在高等植物中起作用并扩展c型细胞色素生物发生的知识,我们研究了CCB基因直系同源基因中的拟南芥插入突变体。 ccb1,ccb2和ccb4突变体表现出一种表型,其特征在于细胞色素b6f复合物的亚基积累不足,并且缺乏与细胞色素b6的共价血红素结合。这些突变体在功能上与相应的野生型cDNA互补。使用荧光蛋白报道基因,我们证明了CCB1,CCB2,CCB3和CCB4蛋白靶向拟南芥的叶绿体区室。通过研究该家族另外两个成员的插入突变体,我们以前的研究扩展到了CCB3所属的YGGT家族,而以前没有针对这些突变体进行过鉴定,我们证明了它们在功能上不参与CCB系统。因此,我们证明了CCB蛋白在叶绿体血红素ci'结合中的普遍存在。

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