SELECTION FOR ACTIVE ESCHERICHIA-COLI TRANSFER RNA(PHE) VARIANTS FROM A RANDOMIZED LIBRARY USING 2 PROTEINS

被引:40
作者
PETERSON, ET [1 ]
BLANK, J [1 ]
SPRINZL, M [1 ]
UHLENBECK, OC [1 ]
机构
[1] UNIV BAYREUTH,LEHRSTUHL BIOCHEM,W-8580 BAYREUTH,GERMANY
关键词
AMINOACYL-TRANSFER RNA SYNTHETASE; ELONGATION FACTOR-TU; RECOGNITION; SELECTION; TRANSFER RNA;
D O I
10.1002/j.1460-2075.1993.tb05958.x
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
In vitro selection was used to isolate active Escherichia coli tRNA(Phe) variants from randomized libraries. Functional tRNAs were first selected by multiple rounds of binding to Escherichia coli phenylalanyl-tRNA synthetase. These variants were then aminoacylated and selected for affinity to elongation factor-Tu. By randomizing potential recognition nucleotides, the importance of residues U20, G34, A35, A36 and U59, previously identified to be required for specific recognition by E.coli phenylatanyl-tRNA synthetase (FRS), was confirmed. However, the sequences of several active variants imply that the wild-type tertiary interactions G10-C25-U45 and A26-G44 are not required for recognition, as previously suggested. Selection of functional tRNAs from a second library randomized at positions normally involved in conserved tertiary interactions revealed new combinations-of nucleotides at these positions, suggesting the presence of novel tertiary interactions. In both libraries, active sequences containing deletions were isolated. Taken together, it is clear that FRS is active with substrates having an unexpectedly broad sequence diversity. Finally, the potency of this method is illustrated by the identification of a second class of variants that was isolated by virtue of the presence of an impurity in the FRS preparation.
引用
收藏
页码:2959 / 2967
页数:9
相关论文
共 38 条
[1]   HIV-1 REV REGULATION INVOLVES RECOGNITION OF NON-WATSON-CRICK BASE-PAIRS IN VIRAL-RNA [J].
BARTEL, DP ;
ZAPP, ML ;
GREEN, MR ;
SZOSTAK, JW .
CELL, 1991, 67 (03) :529-536
[2]  
BARTMANN P, 1975, J BIOL CHEM, V250, P7668
[3]   EQUILIBRIUM ANALYSIS OF L-PHE-TRANSFER-RNAPHE COMPLEXES WITH L-PHENYLALANYL TRANSFER RIBONUCLEIC-ACID SYNTHETASE OF ESCHERICHIA-COLI K 10 [J].
BARTMANN, P ;
HANKE, T ;
HAMMERRA.B ;
HOLLER, E .
BIOCHEMISTRY, 1974, 13 (20) :4171-4175
[4]   LEAD-CATALYZED CLEAVAGE OF YEAST TRANSFER RNAPHE MUTANTS [J].
BEHLEN, LS ;
SAMPSON, JR ;
DIRENZO, AB ;
UHLENBECK, OC .
BIOCHEMISTRY, 1990, 29 (10) :2515-2523
[5]   ISOLATION OF TRANSFER-RNA ISOACCEPTORS BY AFFINITY-CHROMATOGRAPHY ON IMMOBILIZED BACTERIAL ELONGATION FACTOR-TU [J].
DERWENSKUS, KH ;
FISCHER, W ;
SPRINZL, M .
ANALYTICAL BIOCHEMISTRY, 1984, 136 (01) :161-167
[6]   REPLACEMENT OF RNA HAIRPINS BY INVITRO SELECTED TETRANUCLEOTIDES [J].
DICHTL, B ;
PAN, T ;
DIRENZO, AB ;
UHLENBECK, OC .
NUCLEIC ACIDS RESEARCH, 1993, 21 (03) :531-535
[7]  
FARRELLY JG, 1971, J BIOL CHEM, V246, P1266
[8]   KINETIC-ANALYSIS OF AN ESCHERICHIA-COLI PHENYLALANINE-TRANSFER-RNA SYNTHETASE MUTANT [J].
GOODMAN, R ;
SCHWARTZ, I .
NUCLEIC ACIDS RESEARCH, 1988, 16 (15) :7477-7486
[9]   RECOGNITION OF BASES IN ESCHERICHIA-COLI TRANSFER RNA(GLN) BY GLUTAMINYL-TRANSFER RNA-SYNTHETASE - A COMPLETE IDENTITY SET [J].
HAYASE, Y ;
JAHN, M ;
ROGERS, MJ ;
SYLVERS, LA ;
KOIZUMI, M ;
INOUE, H ;
OHTSUKA, E ;
SOLL, D .
EMBO JOURNAL, 1992, 11 (11) :4159-4165
[10]   FLUORESCENCE STUDY OF INTERACTIONS BETWEEN VALYL-TRNA SYNTHETASE AND VALINE-SPECIFIC TRNAS FROM ESCHERICHIA COLI [J].
HELENE, C ;
BRUN, F ;
YANIV, M .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1969, 37 (03) :393-&