Schmitz U K, Lonsdale D M
Molecular Genetics Department, Institute of Plant Science Research, Trumpington, Cambridge, United Kingdom.
Plant Cell. 1989 Aug;1(8):783-91. doi: 10.1105/tpc.1.8.783.
To date, the presequence of the mitochondrial beta-subunit of ATPase from tobacco is the only signal sequence that has been shown to target a foreign protein into plant mitochondria in vivo. Here we report that the presequence of a yeast mitochondrial protein directs bacterial beta-glucuronidase (GUS) specifically into the mitochondrial compartment of transgenic tobacco plants. Fusions between the presequence of the mitochondrial tryptophanyl-tRNA-synthetase gene from yeast and the GUS gene have been introduced into tobacco plants and yeast cells. In both systems, proteins containing the complete yeast mitochondrial presequence are efficiently imported in the mitochondria. Measurements of GUS activity in different subcellular fractions indicate that there is no substantial misrouting of the chimeric proteins in plant cells. In vitro synthesized GUS fusion proteins have a higher molecular weight than those found inside yeast and tobacco mitochondria, suggesting a processing of the precursors during import. Interestingly, fusion proteins translocated across the mitochondrial membranes of tobacco have the same size as those that are imported into yeast mitochondria. We conclude that the processing enzyme in plant mitochondria may recognize a proximate or even the same cleavage site within the mitochondrial tryptophanyl-tRNA-synthetase presequence as the matrix protease from yeast.
迄今为止,烟草ATP酶线粒体β亚基的前导序列是唯一已被证明能在体内将外源蛋白靶向导入植物线粒体的信号序列。在此我们报告,一种酵母线粒体蛋白的前导序列可将细菌β-葡萄糖醛酸酶(GUS)特异性导入转基因烟草植株的线粒体区室。来自酵母的线粒体色氨酰-tRNA合成酶基因的前导序列与GUS基因之间的融合体已被导入烟草植株和酵母细胞。在这两个系统中,含有完整酵母线粒体前导序列的蛋白质都能有效地导入线粒体。对不同亚细胞组分中GUS活性的测定表明,在植物细胞中嵌合蛋白没有大量的错误定位。体外合成的GUS融合蛋白的分子量比在酵母和烟草线粒体中发现的蛋白分子量要高,这表明在前体导入过程中发生了加工。有趣的是,转运穿过烟草线粒体膜的融合蛋白与导入酵母线粒体的融合蛋白大小相同。我们得出结论,植物线粒体中的加工酶可能识别线粒体色氨酰-tRNA合成酶前导序列内与酵母基质蛋白酶相近甚至相同的切割位点。