Huang J, Hack E, Thornburg R W, Myers A M
Department of Genetics, Iowa State University, Ames 50011.
Plant Cell. 1990 Dec;2(12):1249-60. doi: 10.1105/tpc.2.12.1249.
A fusion protein was expressed in transgenic tobacco and yeast cells to examine the functional conservation of mechanisms for importing precursor proteins from the cytosol into mitochondria and chloroplasts. The test protein consisted of the mitochondrial leader peptide from the yeast precursor to cytochrome oxidase subunit Va (prC5) fused to the reporter protein chloramphenicol acetyltransferase. This protein, denoted prC5/CAT, was transported into the mitochondrial interior in yeast and tobacco cells. In both organisms, the mitochondrial form of prC5/CAT was smaller than the primary translation product, suggesting that proteolytic processing occurred during the transport process. prC5/CAT also was translocated into chloroplasts in vivo, accumulating to approximately the same levels as in plant mitochondria. However, accumulation of prC5/CAT in chloroplasts relative to mitochondria varied with the conditions under which plants were grown. The chloroplast form of prC5/CAT also appeared to have been proteolytically processed, yielding a mature protein of the same apparent size as that seen in mitochondria of either tobacco or yeast. Chloramphenicol acetyltransferase lacking a mitochondrial targeting peptide did not associate with either chloroplasts or mitochondria. The results demonstrated that in plant cells a single leader peptide can interact functionally with the protein translocation systems of both chloroplasts and mitochondria, and raised the possibility that certain native proteins might be shared between these two organelles.
在转基因烟草和酵母细胞中表达了一种融合蛋白,以检验将前体蛋白从细胞质转运到线粒体和叶绿体的机制的功能保守性。测试蛋白由酵母细胞色素氧化酶亚基Va前体(prC5)的线粒体前导肽与报告蛋白氯霉素乙酰转移酶融合而成。这种蛋白,称为prC5/CAT,在酵母和烟草细胞中被转运到线粒体内。在这两种生物体中,prC5/CAT的线粒体形式比初级翻译产物小,这表明在转运过程中发生了蛋白水解加工。prC5/CAT在体内也被转运到叶绿体中,积累水平与植物线粒体中的大致相同。然而,prC5/CAT在叶绿体中相对于线粒体的积累量随植物生长条件的不同而变化。prC5/CAT的叶绿体形式似乎也经过了蛋白水解加工,产生了一种与烟草或酵母线粒体中所见的成熟蛋白大小相同的蛋白。缺乏线粒体靶向肽的氯霉素乙酰转移酶与叶绿体或线粒体均无关联。结果表明,在植物细胞中,单个前导肽可以在功能上与叶绿体和线粒体的蛋白质转运系统相互作用,并增加了这两个细胞器之间可能共享某些天然蛋白的可能性。