BAC TransgeneOmics: a high-throughput method for exploration of protein function in mammals

I Poser, M Sarov, JRA Hutchins, JK Hériché… - Nature …, 2008 - nature.com
I Poser, M Sarov, JRA Hutchins, JK Hériché, Y Toyoda, A Pozniakovsky, D Weigl, A Nitzsche…
Nature methods, 2008nature.com
The interpretation of genome sequences requires reliable and standardized methods to
assess protein function at high throughput. Here we describe a fast and reliable pipeline to
study protein function in mammalian cells based on protein tagging in bacterial artificial
chromosomes (BACs). The large size of the BAC transgenes ensures the presence of most,
if not all, regulatory elements and results in expression that closely matches that of the
endogenous gene. We show that BAC transgenes can be rapidly and reliably generated …
Abstract
The interpretation of genome sequences requires reliable and standardized methods to assess protein function at high throughput. Here we describe a fast and reliable pipeline to study protein function in mammalian cells based on protein tagging in bacterial artificial chromosomes (BACs). The large size of the BAC transgenes ensures the presence of most, if not all, regulatory elements and results in expression that closely matches that of the endogenous gene. We show that BAC transgenes can be rapidly and reliably generated using 96-well-format recombineering. After stable transfection of these transgenes into human tissue culture cells or mouse embryonic stem cells, the localization, protein-protein and/or protein-DNA interactions of the tagged protein are studied using generic, tag-based assays. The same high-throughput approach will be generally applicable to other model systems.
NOTE: In the version of this article initially published online, the name of one individual was misspelled in the Acknowledgments. The second sentence of the Acknowledgments paragraph should read, “We thank I. Cheesman for helpful discussions.” The error has been corrected for all versions of the article.
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