T7 PROMOTER CONTACTS ESSENTIAL FOR PROMOTER ACTIVITY INVIVO

被引:52
作者
IKEDA, RA
LIGMAN, CM
WARSHAMANA, S
机构
[1] School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta
关键词
D O I
10.1093/nar/20.10.2517
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
T7 RNA polymerase promoters consist of a highly conserved 23 base-pair sequence that spans the site of the initiation of transcription (+ 1) and extends from - 17 to + 6. To determine the bases within the T7 consensus promoter that are essential for promoter function a library of mutant T7 promoters was constructed, and the in vivo activity of the mutant promoters was correlated to their sequence. The library of mutant promoters was created by randomly mutagenizing the T7 phi-10 promoter between positions - 22 and + 6 during the synthesis of oligonucleotides containing the phi-10 promoter. The mutagenized oligonucleotides were then ligated to a promoterless chloramphenicol acetyl transferase gene creating a plasmid (pCM-X #) that can potentially express chloramphenicol acetyl transferase in the presence of T7 RNA polymerase. E. coli containing pCM-X # and a second compatible plasmid carrying T7 gene 1 (T7 RNA polymerase) were screened for chloramphenicol resistance or chloramphenicol sensitivity. The point mutations that were found to inactivate a T7 promoter are a C to A or G substitution at - 7, a T to A substitution at - 8, a C to A, T, or G substitution at - 9, and a G to T substitution at - 11.
引用
收藏
页码:2517 / 2524
页数:8
相关论文
共 31 条
[1]   SPECIFIC BINDING OF MONOMERIC BACTERIOPHAGE-T3 AND BACTERIOPHAGE-T7 RNA-POLYMERASES TO THEIR RESPECTIVE COGNATE PROMOTERS REQUIRES THE INITIATING RIBONUCLEOSIDE TRIPHOSPHATE (GTP) [J].
BASU, S ;
MAITRA, U .
JOURNAL OF MOLECULAR BIOLOGY, 1986, 190 (03) :425-437
[2]  
BROSIUS J, 1987, METHOD ENZYMOL, V153, P54
[3]   REGULATION OF RIBOSOMAL-RNA PROMOTERS WITH A SYNTHETIC LAC OPERATOR [J].
BROSIUS, J ;
HOLY, A .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA-BIOLOGICAL SCIENCES, 1984, 81 (22) :6929-6933
[4]  
BRUTLAG D, 1972, J BIOL CHEM, V247, P241
[5]   NEW RNA POLYMERASE FROM ESCHERICHIA-COLI INFECTED WITH BACTERIOPHAGE-T7 [J].
CHAMBERL.M ;
MCGRATH, J ;
WASKELL, L .
NATURE, 1970, 228 (5268) :227-&
[6]   CONSTRUCTION AND CHARACTERIZATION OF AMPLIFIABLE MULTICOPY DNA CLONING VEHICLES DERIVED FROM P15A CRYPTIC MINIPLASMID [J].
CHANG, ACY ;
COHEN, SN .
JOURNAL OF BACTERIOLOGY, 1978, 134 (03) :1141-1156
[7]   BACTERIOPHAGE-T7 LATE PROMOTERS - CONSTRUCTION AND INVITRO TRANSCRIPTION PROPERTIES OF DELETION MUTANTS [J].
CHAPMAN, KA ;
WELLS, RD .
NUCLEIC ACIDS RESEARCH, 1982, 10 (20) :6331-6340
[8]   CONSTRUCTION OF BACTERIOPHAGE-T7 LATE PROMOTERS WITH POINT MUTATIONS AND CHARACTERIZATION BY INVITRO TRANSCRIPTION PROPERTIES [J].
CHAPMAN, KA ;
BURGESS, RR .
NUCLEIC ACIDS RESEARCH, 1987, 15 (13) :5413-5432
[9]   BACTERIOPHAGE-T7 LATE PROMOTERS WITH POINT MUTATIONS - QUANTITATIVE FOOTPRINTING AND INVIVO EXPRESSION [J].
CHAPMAN, KA ;
GUNDERSON, SI ;
ANELLO, M ;
WELLS, RD ;
BURGESS, RR .
NUCLEIC ACIDS RESEARCH, 1988, 16 (10) :4511-4524
[10]   COMPLETE NUCLEOTIDE-SEQUENCE OF BACTERIOPHAGE-T7 DNA AND THE LOCATIONS OF T7 GENETIC ELEMENTS [J].
DUNN, JJ ;
STUDIER, FW .
JOURNAL OF MOLECULAR BIOLOGY, 1983, 166 (04) :477-535