CHARACTERIZATION OF SOME MAJOR IDENTITY ELEMENTS IN PLANT ALANINE AND PHENYLALANINE TRANSFER-RNAS

被引:33
作者
CARNEIRO, VTC
DIETRICH, A
MARECHALDROUARD, L
COSSET, A
PELLETIER, G
SMALL, I
机构
[1] INRA, CTR VERSAILLES, GENET & AMELIORAT PLANTES STN, F-78026 VERSAILLES, FRANCE
[2] UNIV STRASBOURG 1, CNRS, INST BIOL MOLEC PLANTES, F-67084 STRASBOURG, FRANCE
关键词
AMINOACYLATION; IDENTITY ELEMENT; PLANT; SUPPRESSION; TRANSFER RNA; TRANSIENT EXPRESSION;
D O I
10.1007/BF00019497
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Alanine and phenylalanine tRNA sequences were amplified by PCR from Arabidopsis thaliana nuclear DNA using degenerate oligonucleotides which introduced specific mutations into the acceptor stem. The aminoacylation of T7 RNA polymerase transcripts of these sequences was investigated in vitro using partially purified bean. alanyl- or phenylalanyl-tRNA synthetase. In parallel, the in vivo activity of amber suppressor derivatives of these tRNAs was investigated in transient expression assays in tobacco protoplasts using a beta-glucuronidase (GUS) reporter gene containing a premature amber stop codon. The results show that mutation of the G(3):U-70 base pair to G(3):C-70 blocks aminoacylation of plant alanine tRNA, whilst conversion of the G(3):C-70 pair normally found in plant tRNA(Phe) to G(3):U-70 enables the mutated tRNA(Phe) to be a good substrate for alanyl-tRNA synthetase and impairs its aminoacylation with phenylalanine. In addition, the amber suppressor derivative of wild-type tRNA(Phe) showed very little suppressor activity in vivo, and was poorly aminoacylated with phenylalanine in vitro, suggesting that the anticodon is a major identity determinant for tRNA(Phe) in plant cells.
引用
收藏
页码:1843 / 1853
页数:11
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