Tuite M F, McLaughlin C S
Mol Cell Biol. 1982 May;2(5):490-7. doi: 10.1128/mcb.2.5.490-497.1982.
Globin mRNA, translated in a Saccharomyces cerevisiae cell-free protein synthesizing system prepared from a [psi+ rho+] strain, primarily directed the synthesis of alpha- and beta-globin. A third globin mRNA-specific polypeptide was also synthesized, representing approximately 10% of the total translation products. This polypeptide (beta') was synthesized by translational read-through of the beta- globin mRNA UGA terminator and was mediated primarily by an endogenous tRNA coded for by the mitochondria. This mitochondrial tRNA, when charged, could be preferentially bound, in high salt, to benzoylated DEAE-cellulose, a characteristic of a tRNATrp. The synthesis of beta- mediated by this mitochondrial tRNATrp was significantly reduced when the translation system was prepared from an isogenic [psi-] strain. Evidence for a nuclear-coded tRNA, also able to suppress the beta-globin mRNA UGA terminator in [psi+] but not [psi-] lysates, was also obtained. The presence of these endogenous UGA suppressor activities in the yeast cell-free system should allow successful in vitro translation of mitochondrial mRNAs.
在由[psi+ rho+]菌株制备的酿酒酵母无细胞蛋白质合成系统中翻译的珠蛋白mRNA,主要指导α-珠蛋白和β-珠蛋白的合成。还合成了第三种珠蛋白mRNA特异性多肽,约占总翻译产物的10%。这种多肽(β')是通过β-珠蛋白mRNA UGA终止密码子的翻译通读合成的,主要由线粒体编码的一种内源性tRNA介导。这种线粒体tRNA在被充电后,在高盐条件下可以优先与苯甲酰化DEAE-纤维素结合,这是色氨酸tRNA的一个特征。当从同基因的[psi-]菌株制备翻译系统时,由这种线粒体色氨酸tRNA介导的β-珠蛋白的合成显著减少。还获得了一种核编码tRNA的证据,该tRNA也能够在[psi+]但不在[psi-]裂解物中抑制β-珠蛋白mRNA的UGA终止密码子。酵母无细胞系统中这些内源性UGA抑制活性的存在应该能够成功地体外翻译线粒体mRNA。