A bacteriophage T7 RNA polymerase/promoter system for controlled exclusive expression of specific genes.

Система РНК-полимеразы/промотора бактериофага T7 для контролируемой эксклюзивной экспрессии специфических генов
Stanley Tabor, C C Richardson
1985-02-01

T7 RNA polymerase/promoter systemT7 gene 5 proteincontrolled gene expressionlambda PL promoterrifampicin inhibition
The RNA polymerase gene of bacteriophage T7 has been cloned into the plasmid pBR322 under the inducible control of the lambda PL promoter. After induction, T7 RNA polymerase constitutes 20% of the soluble protein of Escherichia coli, a 200-fold increase over levels found in T7-infected cells. The overproduced enzyme has been purified to homogeneity. During extraction the enzyme is sensitive to a specific proteolysis, a reaction that can be prevented by a modification of lysis conditions. The specificity of T7 RNA polymerase for its own promoters, combined with the ability to inhibit selectively the host RNA polymerase with rifampicin, permits the exclusive expression of genes under the control of a T7 RNA polymerase promoter. We describe such a coupled system and its use to express high levels of phage T7 gene 5 protein, a subunit of T7 DNA polymerase.
1
Combining T7 promoter specificity with rifampicin inhibition of host RNA polymerase enabled exclusive expression of selected genes.
2
The T7 RNA polymerase gene was cloned into pBR322 under inducible lambda PL promoter control.
3
The coupled system produced high levels of bacteriophage T7 gene 5 protein, a subunit of T7 DNA polymerase.
4
The overproduced polymerase was purified to homogeneity, and extraction-related specific proteolysis was prevented by modifying lysis conditions.
5
Upon induction, T7 RNA polymerase reached 20% of soluble Escherichia coli protein, a 200-fold increase over T7-infected cells.

The coupled bacteriophage T7 RNA polymerase/promoter expression system in Escherichia coli

Controlled exclusive and high-level expression of specific genes, exemplified by phage T7 gene 5, through promoter specificity and selective inhibition of host RNA polymerase

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1985-02-01
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Stanley Tabor
C C Richardson
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