ISOLATION AND CHARACTERIZATION OF THE ESCHERICHIA-COLI MSBB GENE, A MULTICOPY SUPPRESSOR OF NULL MUTATIONS IN THE HIGH-TEMPERATURE REQUIREMENT GENE HTRB

被引:99
作者
KAROW, M
GEORGOPOULOS, C
机构
[1] Department of Cellular, Viral and Molecular Biology, School of Medicine/Univ of UT, Salt Lake City
关键词
D O I
10.1128/jb.174.3.702-710.1992
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Previous work established that the htrB gene of Escherichia coli is required for growth in rich media at temperatures above 32.5-degrees-C but not at lower temperatures. In an effort to determine the functional role of the htrB gene product, we have isolated a multicopy suppressor of htrB, called msbB. The msbB gene has been mapped to 40.5 min on the E. coli genetic map, in a 12- to 15-kb gap of the genomic library made by Kohara et al. (Y. Kohara, K. Akiyama, and K. Isono, Cell 50:495-508, 1987). Mapping data show that the order of genes in the region is eda-edd-zwf-pykA-msbB. The msbB gene codes for a protein of 37,410 Da whose amino acid sequences is similar to that of HtrB and, like HtrB, the protein is very basic in nature. The similarity of the HtrB and MsbB proteins could indicate that they play functionally similar roles. Mutational analysis of msbB shows that the gene is not essential for E. coli growth; however, the htrB msbB double mutant exhibits a unique morphological phenotype at 30-degrees-C not seen with either of the single mutants. Analysis of both msbB and htrB mutants shows that these bacteria are resistant to four times more deoxycholate than wild-type bacteria but not to other hydrophobic substances. The addition of quaternary ammonium compounds rescues the temperature-sensitive phenotype of htrB bacteria, and this rescue is abolished by the simultaneous addition of Mg2+ or Ca2+. These results suggest that MsbB and HtrB play an important role in outer membrane structure and/or function.
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页码:702 / 710
页数:9
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共 38 条
[11]  
FRAENKEL DG, 1987, ESCHERICHIA COLI SAL, P142
[12]   COMPILATION AND ANALYSIS OF ESCHERICHIA-COLI PROMOTER DNA-SEQUENCES [J].
HAWLEY, DK ;
MCCLURE, WR .
NUCLEIC ACIDS RESEARCH, 1983, 11 (08) :2237-2255
[13]   THE MOLECULAR-ORGANIZATION OF THE LYSOSTAPHIN GENE AND ITS SEQUENCES REPEATED IN TANDEM [J].
HEINRICH, P ;
ROSENSTEIN, R ;
BOHMER, M ;
SONNER, P ;
GOTZ, F .
MOLECULAR AND GENERAL GENETICS, 1987, 209 (03) :563-569
[14]   A SYSTEMATIC DNA SEQUENCING STRATEGY [J].
HONG, GF .
JOURNAL OF MOLECULAR BIOLOGY, 1982, 158 (03) :539-549
[15]  
Innis M., 1990, PCR PROTOCOLS GUIDE, P3
[16]   PEPTIDOGLYCAN SYNTHETIC ENZYME-ACTIVITIES OF HIGHLY PURIFIED PENICILLIN-BINDING PROTEIN-3 IN ESCHERICHIA-COLI - A SEPTUM-FORMING REACTION SEQUENCE [J].
ISHINO, F ;
MATSUHASHI, M .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1981, 101 (03) :905-911
[17]   SEQUENCING, MUTATIONAL ANALYSIS, AND TRANSCRIPTIONAL REGULATION OF THE ESCHERICHIA-COLI HTRB GENE [J].
KAROW, M ;
GEORGOPOULOS, C .
MOLECULAR MICROBIOLOGY, 1991, 5 (09) :2285-2292
[18]   ISOLATION AND CHARACTERIZATION OF THE ESCHERICHIA-COLI HTRB GENE, WHOSE PRODUCT IS ESSENTIAL FOR BACTERIAL VIABILITY ABOVE 33-DEGREES-C IN RICH MEDIA [J].
KAROW, M ;
FAYET, O ;
CEGIELSKA, A ;
ZIEGELHOFFER, T ;
GEORGOPOULOS, C .
JOURNAL OF BACTERIOLOGY, 1991, 173 (02) :741-750
[19]   COMPLETION OF THE DETAILED RESTRICTION MAP OF THE ESCHERICHIA-COLI GENOME BY THE ISOLATION OF OVERLAPPING COSMID CLONES [J].
KNOTT, V ;
BLAKE, DJ ;
BROWNLEE, GG .
NUCLEIC ACIDS RESEARCH, 1989, 17 (15) :5901-5912
[20]   THE PHYSICAL MAP OF THE WHOLE ESCHERICHIA-COLI CHROMOSOME - APPLICATION OF A NEW STRATEGY FOR RAPID ANALYSIS AND SORTING OF A LARGE GENOMIC LIBRARY [J].
KOHARA, Y ;
AKIYAMA, K ;
ISONO, K .
CELL, 1987, 50 (03) :495-508