Escalante C, Qasba P K, Yang D C
Department of Chemistry, Georgetown University, Washington, DC 20057.
Mol Cell Biochem. 1994 Nov 9;140(1):55-63. doi: 10.1007/BF00928366.
Mammalian aspartyl-tRNA synthetase (DRS) occurs in a multi-enzyme complex of aminoacyl-tRNA synthetases, while DRS exists as free soluble enzymes in bacteria and yeast. The properties of human DRS transient expressed in COS cells were examined. After transfection of COS cells with the recombinant plasmids pSVL-63 that contained hDRS cDNA coding and non-coding sequences, and pSV-hDRS where the non-coding sequences were deleted, DRS in the transfected COS cells significantly increased compared to mock transfected cells. COS cells transfected with pSV-hDRS delta 32 that contained N-terminal 32 residue-coding sequence deleted hDRS cDNA showed no increase in DRS activity. Northern blot analysis showed that concentrations of corresponding mRNAs of hDRS and hDRS delta 32 were greatly enhanced in transfected cells. The increases in the level of the transcripts were much higher than those of the corresponding proteins. Gel filtration analysis showed that hDRS in pSV-hDRS transfected cells expressed as a low molecular weight form of hDRS and pSV-hDRS delta 32 transfected cells did not. Epitope tagging and indirect immunofluorescence microscopy was used to localize hDRS. Both hDRSmyc and hDRS delta 32myc were localized in the cytoplasm and showed diffused patterns. These results showed that hDRS has little tendency to aggregate in vivo and suggested that the N-terminal extension in hDRS was not involved in the expression and sub-cellular localization of hDRS, but may play a role in the maintenance of enzymatic activity of hDRS in COS cells.
哺乳动物天冬氨酰 - tRNA合成酶(DRS)存在于氨酰 - tRNA合成酶的多酶复合物中,而DRS在细菌和酵母中以游离可溶性酶的形式存在。我们检测了在COS细胞中瞬时表达的人DRS的特性。用包含hDRS cDNA编码和非编码序列的重组质粒pSVL - 63以及缺失非编码序列的pSV - hDRS转染COS细胞后,与mock转染细胞相比,转染的COS细胞中的DRS显著增加。用包含缺失N端32个残基编码序列的hDRS cDNA的pSV - hDRS delta 32转染的COS细胞,其DRS活性没有增加。Northern印迹分析表明,转染细胞中hDRS和hDRS delta 32相应mRNA的浓度大大提高。转录本水平的增加远高于相应蛋白质的增加。凝胶过滤分析表明,pSV - hDRS转染细胞中的hDRS以低分子量形式表达,而pSV - hDRS delta 32转染细胞则不是。采用表位标签和间接免疫荧光显微镜对hDRS进行定位。hDRSmyc和hDRS delta 32myc都定位于细胞质中,呈弥散分布模式。这些结果表明,hDRS在体内几乎没有聚集倾向,提示hDRS的N端延伸不参与hDRS的表达和亚细胞定位,但可能在维持COS细胞中hDRS的酶活性方面发挥作用。