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 inFEMS microbiology letters Vol. 206; no. 2; pp. 157 - 162
Main Authors Mellouli, Lotfi, Karray-Rebai, Ines, Bejar, Samir
Format Journal Article
LanguageEnglish
Published Oxford Elsevier B.V 10.01.2002
Blackwell
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ISSN0378-1097
1574-6968
DOI10.1016/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.
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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Issue 2
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
Language English
License CC BY 4.0
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Blackwell
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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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