Kuras R, Wollman F A
Service de Photosynthèse, Institut de Biologie Physico-Chimique, Paris, France.
EMBO J. 1994 Mar 1;13(5):1019-27. doi: 10.1002/j.1460-2075.1994.tb06350.x.
As an approach to the study of the biogenesis of the cytochrome b6/f complex, we characterized the behaviour of its constitutive subunits in mutant strains of Chlamydomonas reinhardtii bearing well-defined mutations. To this end, we have constructed three deletion mutant strains, each lacking one of the major chloroplast pet genes: the delta petA, delta petB and delta petD strains were unable to synthesize cyt f, cyt b6 and subunit IV (suIV) respectively. Western blotting analysis, pulse-labelling and pulse-chase experiments allowed us to compare the cellular accumulation, the rates of synthesis and the turnover of the cyt b6/f subunits remaining in the various strains. We show that the rates of synthesis of cyt b6 and suIV are independent of the presence of the other subunits of the complex but that their stabilization in the thylakoid membranes is a concerted process, with a marked dependence of suIV stability on the presence of cyt b6. In contrast, mature cyt f was stable in the absence of either suIV or cyt b6 but its rate of synthesis was severely decreased in these conditions. We conclude that the stoichiometric accumulation of the chloroplast-encoded subunits of the cyt b6/f complex results from two regulation processes: a post-translational regulation leading to the proteolytic disposal of unassembled cyt b6 and suIV and a co-translational (or early post-translational) regulation which ensures the production of cyt f next to its site of assembly.
作为研究细胞色素b6/f复合体生物发生的一种方法,我们对莱茵衣藻(Chlamydomonas reinhardtii)具有明确突变的突变株中该复合体组成亚基的行为进行了表征。为此,我们构建了三个缺失突变株,每个突变株分别缺失一个主要的叶绿体pet基因:ΔpetA、ΔpetB和ΔpetD菌株分别无法合成细胞色素f(cyt f)、细胞色素b6(cyt b6)和亚基IV(suIV)。蛋白质免疫印迹分析、脉冲标记和脉冲追踪实验使我们能够比较不同菌株中剩余的细胞色素b6/f亚基的细胞积累量、合成速率和周转率。我们发现,细胞色素b6和亚基IV的合成速率与该复合体其他亚基的存在无关,但它们在类囊体膜中的稳定是一个协同过程,亚基IV的稳定性显著依赖于细胞色素b6的存在。相比之下,成熟的细胞色素f在没有亚基IV或细胞色素b6的情况下是稳定的,但在这些条件下其合成速率会严重降低。我们得出结论,细胞色素b6/f复合体叶绿体编码亚基的化学计量积累源于两个调控过程:一个是翻译后调控,导致未组装的细胞色素b6和亚基IV被蛋白水解处理;另一个是共翻译(或早期翻译后)调控,确保细胞色素f在其组装位点附近产生。