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Bifunctional lacZα-ccdB Genes for Selective Cloning of PCR Products
Author(s) -
Philippe Gabant,
Pierre-Luc Drèze,
Thierry Van Reeth,
Josiane Szpirer,
Claude Szpirer
Publication year - 1997
Publication title -
biotechniques
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.617
H-Index - 131
eISSN - 1940-9818
pISSN - 0736-6205
DOI - 10.2144/97235pf01
Subject(s) - cloning (programming) , biology , bifunctional , gene , genetics , lac operon , molecular cloning , polymerase chain reaction , computational biology , microbiology and biotechnology , recombinant dna , biochemistry , gene expression , computer science , programming language , catalysis
The use of PCR-amplified DNA-fragments is a classical approach to generate recombinant DNA. To facilitate the cloning of PCR products, we have constructed two new pKIL vectors that allow selection of recombinants. The multiple cloning sites (MCS) of these plasmids contain two adjacent Aspel sites and a unique HindII site. Cleavage of these vectors with Aspel produce linearized molecules with a single thymidine nucleotide at the 3' ends allowing TA cloning of Taq-amplified fragments. On the other hand, cleavage with HindII can be used for the cloning of blunt-ended PCR products generated by other DNA polymerases. The LacZ alpha-CcdB fusion protein produced by these plasmids has retained both the CcdB killer activity and the ability to alpha-complement the truncated LacZ delta M15. This bifunctionality allowed us to show that small PCR products (< 1000 bp) that do not disrupt lacZ alpha efficiently do inactivate CcdB, which demonstrates that the CcdB-based selection is well adapted for cloning of PCR products, especially for small size fragments.

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