Department of Botany, Duke University, 27706, Durham, NC, USA.
Plant Mol Biol. 1989 Apr;12(4):385-94. doi: 10.1007/BF00017578.
Two mutants of the green alga Chlamydomonas reinhardtii, one deficient in the small subunit of the chloroplast ribosome and the other having chloroplast ribosomes with reduced function under certain conditions, show a characteristic syndrome of photosynthetic defects resulting from reduced chloroplast protein synthesis. These include subnormal levels of ribulose 1,5-bisphosphate carboxylase (Rubisco), reduced Hill reaction activity, diminished capacity to fix CO2, and abnormal thylakoid stacking. However, these mutants accumulate normal appearing chloroplast ribosome monomers or large subunits containing normal ribosomal protein components. In this paper, we demonstrate that pulse-labeled cells of these mutants synthesize two large subunit chloroplast ribosomal proteins at about 60% of the wild-type rate, whereas Rubisco large subunit (LSU) and the alpha subunit of CF1 are made at only 4 to 8% of the wild-type rate. No difference in the rate of turnover between ribosomal proteins and Rubisco LSU in mutant and wild-type cells was observed during a subsequent 60 min chase. Differences between the mutants and wild-type cells in the relative synthesis rates of these proteins were not reflected in the relative levels of mRNA (either hybridizable or in vitro translatable). In aggregate, these data suggest that C. reinhardtii preferentially translates chloroplast ribosomal protein mRNAs under conditions of reduced total chloroplast protein synthesis.
两种突变体的绿藻衣藻 Reinhardtii ,一个缺乏叶绿体核糖体的小亚基和其他在某些条件下叶绿体核糖体的功能降低,表现出从减少叶绿体蛋白质合成的光合作用缺陷的特征综合征。这些包括核酮糖 1,5-二磷酸羧化酶(Rubisco)的亚正常水平,降低的希尔反应活性,减少的 CO2 固定能力,和异常类囊体堆叠。然而,这些突变体积累正常出现的叶绿体核糖体单体或含有正常核糖体蛋白成分的大亚基。在本文中,我们证明脉冲标记这些突变体的细胞合成两种大亚基叶绿体核糖体蛋白在约 60%的野生型的速度,而 Rubisco 大亚基(LSU)和 CF1 的α亚基仅为野生型的 4 到 8%的速度。在随后的 60 分钟追踪过程中,在突变体和野生型细胞之间没有观察到核糖体蛋白和 Rubisco LSU 之间周转率的差异。在这些蛋白质的相对合成速率之间的突变体和野生型细胞之间的差异并没有反映在相对水平的 mRNA(无论是杂交或体外可转译)。总之,这些数据表明,在减少总叶绿体蛋白质合成的条件下,衣藻 Reinhardtii 优先翻译叶绿体核糖体蛋白 mRNA。