High-efficiency transformation of mammalian cells by plasmid DNA.
Высокоэффективная трансформация клеток млекопитающих плазмидной ДНК
1987-08-01
SCID: 54.1/xwks2ted
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cDNA expression librariescalcium phosphate transfectionmammalian cell transformationneo marker vectorsplasmid DNA
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Abstract (AI)
We describe a simple calcium phosphate transfection protocol and neo marker vectors that achieve highly efficient transformation of mammalian cells. In this protocol, the calcium phosphate-DNA complex is formed gradually in the medium during incubation with cells and precipitates on the cells. The crucial factors for obtaining efficient transformation are the pH (6.95) of the buffer used for the calcium phosphate precipitation, the CO2 level (3%) during the incubation of the DNA with the cells, and the amount (20 to 30 micrograms) and the form (circular) of DNA. In sharp contrast to the results with circular DNA, linear DNA is almost inactive. Under these conditions, 50% of mouse L(A9) cells can be stably transformed with pcDneo, a simian virus 40-based neo (neomycin resistance) marker vector. The NIH3T3, C127, CV1, BHK, CHO, and HeLa cell lines were transformed at efficiencies of 10 to 50% with this vector and the neo marker-incorporated pcD vectors that were used for the construction and transduction of cDNA expression libraries as well as for the expression of cloned cDNA in mammalian cells.
Key Findings
1
A simple calcium phosphate transfection protocol achieves highly efficient stable transformation of mammalian cells using neo marker vectors.
2
Circular DNA is highly effective, whereas linear DNA is almost inactive under the described conditions.
3
Efficient transformation depends critically on buffer pH 6.95, 3% CO2 during DNA incubation, and 20–30 micrograms of circular DNA.
4
The pcDneo and related pcD vectors transformed NIH3T3, C127, CV1, BHK, CHO, and HeLa cells at efficiencies of 10–50%.
5
The pcDneo vector stably transformed 50% of mouse L(A9) cells.
Research Object
mammalian cells transformed with plasmid DNA using calcium phosphate-mediated transfection
Research Subject
transformation efficiency and the effects of DNA form, amount, buffer pH, and CO2 conditions on stable neo-marker incorporation
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1987-08-01
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