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不同生长速率下大肠杆菌中tRNA丰度与密码子使用的共变关系。

Co-variation of tRNA abundance and codon usage in Escherichia coli at different growth rates.

作者信息

Dong H, Nilsson L, Kurland C G

机构信息

Department of Molecular Biology, Biomedical Centre, Uppsala, Sweden.

出版信息

J Mol Biol. 1996 Aug 2;260(5):649-63. doi: 10.1006/jmbi.1996.0428.

Abstract

We have used two-dimensional polyacrylamide gel electrophoresis to fractionate tRNAs from Escherichia coli. A sufficiently high degree of resolution was obtained for 44 out of 46 tRNA species in E. coli to be resolved into individual electrophoretic components. These isolated components were identified by hybridization to tRNA-specific oligonucleotide probes. Systematic measurements of the abundance of each individual tRNA isoacceptor in E. coli, grown at rates varying from 0.4 to 2.5 doublings per hour, were made with the aid of this electrophoretic protocol. We find that there is a biased distribution of the tRNA abundance at all growth rates, and that this can be roughly correlated with the values of codon frequencies in the mRNA pools calculated for bacteria growing at different rates. The tRNA species cognate to abundant codons increase in concentration as the growth rate increases but not as dramatically as might be anticipated. The levels of most of the tRNA isoacceptors cognate to less abundant codons remain unchanged with increasing growth rates. The result of these changes in tRNA abundance is that the relative increase in the amounts of major tRNA species in the bacteria growing at the fastest growth rates is more modest than previous estimates from this laboratory suggested. Furthermore, a systematic error in previous estimates of ribosomal RNA content of the bacteria has been detected. This will account for the quantitative discrepancies between the previous and the present data for tRNA abundance.

摘要

我们利用二维聚丙烯酰胺凝胶电泳对大肠杆菌的转运RNA(tRNA)进行了分级分离。大肠杆菌中46种tRNA中的44种获得了足够高的分辨率,从而能够分离成单独的电泳组分。通过与tRNA特异性寡核苷酸探针杂交对这些分离出的组分进行了鉴定。借助这种电泳方法,对生长速率在每小时0.4至2.5代之间变化的大肠杆菌中每种tRNA同工受体的丰度进行了系统测量。我们发现,在所有生长速率下tRNA丰度都存在偏向性分布,并且这大致可以与针对以不同速率生长的细菌计算出的mRNA库中的密码子频率值相关联。与丰富密码子对应的tRNA种类的浓度随着生长速率的增加而增加,但增幅不像预期的那么显著。与不太丰富的密码子对应的大多数tRNA同工受体的水平随着生长速率的增加保持不变。tRNA丰度的这些变化导致的结果是,生长速率最快的细菌中主要tRNA种类数量的相对增加比本实验室先前的估计更为适度。此外,还检测到了先前对细菌核糖体RNA含量估计中的一个系统误差。这将解释先前和当前tRNA丰度数据之间的定量差异。

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