MUTATIONAL ANALYSIS OF THE ESCHERICHIA-COLI-SERB PROMOTER REGION REVEALS TRANSCRIPTIONAL LINKAGE TO A DOWNSTREAM GENE

被引:19
作者
NEUWALD, AF
BERG, DE
STAUFFER, GV
机构
[1] UNIV IOWA, DEPT MICROBIOL, IOWA CITY, IA 52242 USA
[2] WASHINGTON UNIV, SCH MED, DEPT MOLEC MICROBIOL & IMMUNOL, ST LOUIS, MO 63110 USA
关键词
RECOMBINANT DNA; SERB-SMS OPERON; PROMOTER MUTATIONS; SMS'-LACZ FUSION; SERB'-LACZ FUSION; MINICELLS; SERINE BIOSYNTHESIS;
D O I
10.1016/0378-1119(92)90002-7
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Genes encoding proteins with unrelated functions can be cotranscribed, and this may be used by cells to coordinate different metabolic pathways during growth. We describe a gene, designated sms, which is downstream from the serine biosynthetic gene serB in Escherichia coli but does not appear to be involved in amino acid (aa) biosynthesis. The sms gene is 1380 bp long. The Sms product migrates at 55 kDa on sodium dodecyl sulfate(SDS)-polyacrylamide gels and has a M(r) of 49472 (460 aa residues) calculated from the nucleotide sequence. The deduced Sms aa sequence shares regions of similarity with two ATP-dependent proteases, Lon and RecA, and contains two motifs: a C-x(2)-C-x(n)-C-x(2)-C motif, which is found in some nucleic acid binding proteins, and an ATP/GTP binding site motif. Insertional inactivation of sms led to increased sensitivity to the alkylating agent methylmethane sulfonate, but not to a requirement for serine or other metabolites. Several promoter mutations were isolated and characterized, which suggest that serB has a typical promoter recognized by sigma70. After the serB coding sequence there is a 48-bp region with no obvious promoter sequence preceding the sms translation start codon. Analyses using sms'-lacZ fusions cloned downstream from wild-type and mutant serB promoters showed that sms is cotranscribed with serB.
引用
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页码:1 / 9
页数:9
相关论文
共 38 条
[1]   NON-ENZYMATIC METHYLATION OF DNA BY S-ADENOSYLMETHIONINE INVITRO [J].
BARROWS, LR ;
MAGEE, PN .
CARCINOGENESIS, 1982, 3 (03) :349-351
[2]   POTENTIAL METAL-BINDING DOMAINS IN NUCLEIC-ACID BINDING-PROTEINS [J].
BERG, JM .
SCIENCE, 1986, 232 (4749) :485-487
[3]   INVITRO GENE FUSIONS THAT JOIN AN ENZYMATICALLY ACTIVE BETA-GALACTOSIDASE SEGMENT TO AMINO-TERMINAL FRAGMENTS OF EXOGENOUS PROTEINS - ESCHERICHIA-COLI PLASMID VECTORS FOR THE DETECTION AND CLONING OF TRANSLATIONAL INITIATION SIGNALS [J].
CASADABAN, MJ ;
CHOU, J ;
COHEN, SN .
JOURNAL OF BACTERIOLOGY, 1980, 143 (02) :971-980
[4]  
CHIN DT, 1988, J BIOL CHEM, V263, P11718
[5]   THE SERC-AROA OPERON OF ESCHERICHIA-COLI - A MIXED-FUNCTION OPERON ENCODING ENZYMES FROM 2 DIFFERENT AMINO-ACID BIOSYNTHETIC PATHWAYS [J].
DUNCAN, K ;
COGGINS, JR .
BIOCHEMICAL JOURNAL, 1986, 234 (01) :49-57
[6]   NUCLEOTIDE-SEQUENCE AND EXPRESSION IN ESCHERICHIA-COLI OF THE RECA GENE OF NEISSERIA-GONORRHOEAE [J].
FYFE, JAM ;
DAVIES, JK .
GENE, 1990, 93 (01) :151-156
[7]   CONSTRUCTION AND ANALYSIS OF PLASMIDS CONTAINING THE ESCHERICHIA-COLI SERB GENE [J].
GARNANT, MK ;
STAUFFER, GV .
MOLECULAR & GENERAL GENETICS, 1984, 193 (01) :72-75
[8]  
GEIER GE, 1979, J BIOL CHEM, V254, P1408
[9]   GENETICS OF PROTEOLYSIS IN ESCHERICHIA-COLI [J].
GOTTESMAN, S .
ANNUAL REVIEW OF GENETICS, 1989, 23 :163-198
[10]   ESCHERICHIA-COLI MUTANTS DEFICIENT IN 3-METHYLADENINE-DNA GLYCOSYLASE [J].
KARRAN, P ;
LINDAHL, T ;
OFSTENG, I ;
EVENSEN, GB ;
SEEBERG, E .
JOURNAL OF MOLECULAR BIOLOGY, 1980, 140 (01) :101-127