Takahashi Y, Rahire M, Breyton C, Popot J L, Joliot P, Rochaix J D
Department of Biology, Faculty of Science, Okayama University, Japan.
EMBO J. 1996 Jul 15;15(14):3498-506.
The small chloroplast open reading frame ORF43 (ycf7) of the green unicellular alga Chlamydomonas reinhardtii is cotranscribed with the psaC gene and ORF58. While ORF58 has been found only in the chloroplast genome of C.reinhardtii, ycf7 has been conserved in land plants and its sequence suggests that its product is a hydrophobic protein with a single transmembrane alpha helix. We have disrupted ORF58 and ycf7 with the aadA expression cassette by particle-gun mediated chloroplast transformation. While the ORF58::aadA transformants are indistinguishable from wild type, photoautotrophic growth of the ycf7::aadA transformants is considerably impaired. In these mutant cells, the amount of cytochrome b6f complex is reduced to 25-50% of wild-type level in mid-exponential phase, and the rate of transmembrane electron transfer per b6f complex measured in vivo under saturating light is three to four times slower than in wild type. Under subsaturating light conditions, the rate of the electron transfer reactions within the b6f complex is reduced more strongly in the mutant than in the wild type by the proton electrochemical gradient. The ycf7 product (Ycf7) is absent in mutants deficient in cytochrome b6f complex and present in highly purified b6f complex from the wild-type strain. Ycf7-less complexes appear more fragile than wild-type complexes and selectively lose the Rieske iron-sulfur protein during purification. These observations indicate that Ycf7 is an authentic subunit of the cytochrome b6f complex, which is required for its stability, accumulation and optimal efficiency. We therefore propose to rename the ycf7 gene petL.
绿色单细胞藻类莱茵衣藻的小叶绿体开放阅读框ORF43(ycf7)与psaC基因和ORF58共转录。虽然ORF58仅在莱茵衣藻的叶绿体基因组中发现,但ycf7在陆地植物中保守,其序列表明其产物是一种具有单个跨膜α螺旋的疏水蛋白。我们通过粒子枪介导的叶绿体转化用aadA表达盒破坏了ORF58和ycf7。虽然ORF58::aadA转化体与野生型没有区别,但ycf7::aadA转化体的光合自养生长受到严重损害。在这些突变细胞中,细胞色素b6f复合体的量在指数中期降至野生型水平的25-50%,并且在饱和光下体内测量的每个b6f复合体的跨膜电子传递速率比野生型慢三到四倍。在亚饱和光条件下,质子电化学梯度使突变体中b6f复合体内电子传递反应的速率比野生型降低得更强烈。细胞色素b6f复合体缺陷的突变体中不存在ycf7产物(Ycf7),而野生型菌株高度纯化的b6f复合体中存在该产物。缺乏Ycf7的复合体似乎比野生型复合体更脆弱,并且在纯化过程中选择性地丢失了Rieske铁硫蛋白。这些观察结果表明,Ycf7是细胞色素b6f复合体的一个真实亚基,其稳定性、积累和最佳效率都需要它。因此,我们建议将ycf7基因重新命名为petL。