Rodermel S, Haley J, Jiang C Z, Tsai C H, Bogorad L
Department of Botany, Iowa State University, Ames 50011, USA.
Proc Natl Acad Sci U S A. 1996 Apr 30;93(9):3881-5. doi: 10.1073/pnas.93.9.3881.
Multimeric protein complexes in chloroplasts and mitochondria are generally composed of products of both nuclear and organelle genes of the cell. A central problem of eukaryotic cell biology is to identify and understand the molecular mechanisms for integrating the production and accumulation of the products of the two separate genomes. Ribulose bisphosphate carboxylase (Rubisco) is localized in the chloroplasts of photosynthetic eukaryotic cells and is composed of small subunits (SS) and large subunits (LS) coded for by nuclear rbcS and chloroplast rbcL genes, respectively. Transgenic tobacco plants containing antisense rbcS DNA have reduced levels of rbcS mRNA, normal levels of rbcL mRNA, and coordinately reduced LS and SS proteins. Our previous experiments indicated that the rate of translation of rbcL mRNA might be reduced in some antisense plants; direct evidence is presented here. After a short-term pulse there is less labeled LS protein in the transgenic plants than in wild-type plants, indicating that LS accumulation is controlled in the mutants at the translational and/or posttranslational levels. Consistent with a primary restriction at translation, fewer rbcL mRNAs are associated with polysomes of normal size and more are free or are associated with only a few ribosomes in the antisense plants. Effects of the rbcS antisense mutation on mRNA and protein accumulation, as well as on the distribution of mRNAs on polysomes, appear to be minimal for other chloroplast and nuclear photosynthetic genes. Our results suggest that SS protein abundance specifically contributes to the regulation of LS protein accumulation at the level of rbcL translation initiation.
叶绿体和线粒体中的多聚体蛋白复合物通常由细胞的核基因和细胞器基因的产物组成。真核细胞生物学的一个核心问题是识别和理解整合两个独立基因组产物的产生和积累的分子机制。核酮糖二磷酸羧化酶(Rubisco)定位于光合真核细胞的叶绿体中,分别由核rbcS基因和叶绿体rbcL基因编码的小亚基(SS)和大亚基(LS)组成。含有反义rbcS DNA的转基因烟草植物rbcS mRNA水平降低,rbcL mRNA水平正常,LS和SS蛋白水平协同降低。我们之前的实验表明,在一些反义植物中rbcL mRNA的翻译速率可能降低;本文提供了直接证据。短期脉冲后,转基因植物中标记的LS蛋白比野生型植物少,这表明在突变体中LS的积累在翻译和/或翻译后水平受到控制。与翻译过程中的主要限制一致,在反义植物中,与正常大小多核糖体结合的rbcL mRNA较少,更多的rbcL mRNA是游离的或仅与少数核糖体结合。rbcS反义突变对mRNA和蛋白质积累以及mRNA在多核糖体上分布的影响,对于其他叶绿体和核光合基因似乎最小。我们的结果表明,SS蛋白丰度在rbcL翻译起始水平上对LS蛋白积累的调节有特异性贡献。