Construction of α-amylase-producing strains not subject to carbon catabolite repression
The dyatic symmetric element (DSE) present in the α-amylase gene promoter region of the thermophilic Streptomyces strain sp. TO1, and the whole α-amylase gene ( amy TO1) with a 3-bp change in the DSE, were cloned in the high copy number replicative cloning vector pIJ702 giving pLM10 and pLM11 plasmi...
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Published in | FEMS microbiology letters Vol. 206; no. 2; pp. 157 - 162 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Oxford
Elsevier B.V
10.01.2002
Blackwell |
Subjects | |
Online Access | Get full text |
ISSN | 0378-1097 1574-6968 |
DOI | 10.1016/S0378-1097(01)00520-1 |
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Abstract | The dyatic symmetric element (DSE) present in the α-amylase gene promoter region of the thermophilic
Streptomyces strain sp. TO1, and the whole α-amylase gene (
amy TO1) with a 3-bp change in the DSE, were cloned in the high copy number replicative cloning vector pIJ702 giving pLM10 and pLM11 plasmids respectively. In TO1/pLM10 and
Streptomyces lividans TK24/pLM11 strains, the expression of α-amylase TO1 gene became insensible to the negative effect of glucose and glycerol. These results strongly suggest that, in a high copy number system, the negative transcriptional regulator was titrated out by the DSE and the repression of the expression of
amy TO1 gene is abolished. |
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AbstractList | The dyatic symmetric element (DSE) present in the alpha -amylase gene promoter region of the thermophilic Streptomyces strain sp. TO1, and the whole alpha -amylase gene (amy TO1) with a 3-bp change in the DSE, were cloned in the high copy number replicative cloning vector pIJ702 giving pLM10 and pLM11 plasmids respectively. In TO1 /pLM10 and Streptomyces lividans TK24/pLM11 strains, the expression of alpha -amylase TO1 gene became insensible to the negative effect of glucose and glycerol. These results strongly suggest that, in a high copy number system, the negative transcriptional regulator was titrated out by the DSE and the repression of the expression of amy TO1 gene is abolished. The dyatic symmetric element (DSE) present in the α-amylase gene promoter region of the thermophilic Streptomyces strain sp. TO1, and the whole α-amylase gene ( amy TO1) with a 3-bp change in the DSE, were cloned in the high copy number replicative cloning vector pIJ702 giving pLM10 and pLM11 plasmids respectively. In TO1/pLM10 and Streptomyces lividans TK24/pLM11 strains, the expression of α-amylase TO1 gene became insensible to the negative effect of glucose and glycerol. These results strongly suggest that, in a high copy number system, the negative transcriptional regulator was titrated out by the DSE and the repression of the expression of amy TO1 gene is abolished. |
Author | Bejar, Samir Karray-Rebai, Ines Mellouli, Lotfi |
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Keywords | Affinity α-Amylase Gene expression LacI-like regulator High copy number Streptomycetaceae Enzyme Copy number Glycerol Streptomyces Transcription repressor Glucose Dyatic symmetric element Actinomycetales Glycosidases Streptomyces lividans Bacteria Hydrolases Actinomycetes O-Glycosidases Vector Catabolic repression |
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Snippet | The dyatic symmetric element (DSE) present in the α-amylase gene promoter region of the thermophilic
Streptomyces strain sp. TO1, and the whole α-amylase gene... The dyatic symmetric element (DSE) present in the alpha-amylase gene promoter region of the thermophilic Streptomyces strain sp. TO1, and the whole... The dyatic symmetric element (DSE) present in the alpha -amylase gene promoter region of the thermophilic Streptomyces strain sp. TO1, and the whole alpha... |
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SubjectTerms | adverse effects Affinity alpha-amylase alpha-Amylases alpha-Amylases - biosynthesis alpha-Amylases - genetics Bacteriology Biological and medical sciences biosynthesis carbon Cloning, Molecular Enzyme Repression enzymology Fundamental and applied biological sciences. Psychology Gene Dosage Gene expression Gene Expression Regulation, Bacterial genes Genes, Bacterial Genetic Vectors Genetics glucose Glucose - pharmacology glycerol Glycerol - pharmacology High copy number LacI-like regulator Microbiology pharmacology plasmids promoter regions Promoter Regions, Genetic Streptomyces Streptomyces - enzymology Streptomyces - genetics Streptomyces lividans transcription factors α-Amylase |
Title | Construction of α-amylase-producing strains not subject to carbon catabolite repression |
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