Construction of T-vectors for the direct, unidirectional cloning, and analysis of PCR-amplified promoters

The amplification and cloning of promoters are regularly employed procedures to study the mechanism of gene regulation. In the present study we developed a method to construct T-vectors used for the direct and unidirectional cloning and analysis of promoters. These so-called T-vectors, pEGFP-T and p...

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Veröffentlicht in:Molecular biology (New York) 2007-08, Vol.41 (4), p.650-655
Hauptverfasser: Wang, B. L., Li, X. X., Zheng, F., Liu, R., Quan, J. X., Jia, H. W., Liang, H., Deng, T., Guo, S. Y., Guo, G., Zhang, J. Y., Qiu, M. C.
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Sprache:eng
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Zusammenfassung:The amplification and cloning of promoters are regularly employed procedures to study the mechanism of gene regulation. In the present study we developed a method to construct T-vectors used for the direct and unidirectional cloning and analysis of promoters. These so-called T-vectors, pEGFP-T and pGL3-T, were derived from their parent promoterless vectors pEGFP-1 and pGL3-basic, respectively. To construct the T-vectors, an AhdI recognition site within the Amp ^sup r^ gene in pGL3-basic was silently mutated using overlap extension PCR. Then, a specially designed AhdI cassette was cloned into the respective parent vectors. The procedures of the T-vector construction involved a strategy to minimize the background of nonrecombinant transformants and to eliminate reverse orientation of the PCR products into the T-vectors. The cloning efficiencies of the two T-vectors were both above 85% when tested with a PCR product amplified from a sequence that was preconfirmed to be able to initiate transcription, and, moreover, the constructs harbored the inserts in a desired orientation at a >90% rate. In transient transfection assays, we demonstrated these T-vectors are functional. Thus, the present study provides an easy method to construct a series of T-vectors used for promoter characterization.[PUBLICATION ABSTRACT]
ISSN:0026-8933
1608-3245
DOI:10.1134/S002689330704019X