Author:
Weissmann Florian,Petzold Georg,VanderLinden Ryan,Huis in 't Veld Pim J.,Brown Nicholas G.,Lampert Fabienne,Westermann Stefan,Stark Holger,Schulman Brenda A.,Peters Jan-Michael
Abstract
Analyses of protein complexes are facilitated by methods that enable the generation of recombinant complexes via coexpression of their subunits from multigene DNA constructs. However, low experimental throughput limits the generation of such constructs in parallel. Here we describe a method that allows up to 25 cDNAs to be assembled into a single baculoviral expression vector in only two steps. This method, called biGBac, uses computationally optimized DNA linker sequences that enable the efficient assembly of linear DNA fragments, using reactions developed by Gibson for the generation of synthetic genomes. The biGBac method uses a flexible and modular “mix and match” approach and enables the generation of baculoviruses from DNA constructs at any assembly stage. Importantly, it is simple, efficient, and fast enough to allow the manual generation of many multigene expression constructs in parallel. We have used this method to generate and characterize recombinant forms of the anaphase-promoting complex/cyclosome, cohesin, and kinetochore complexes.
Funder
Österreichische Forschungsförderungsgesellschaft
European Commission
Austrian Science Fund
Deutsche Forschungsgemeinschaft
Jane Coffin Childs Memorial Fund for Medical Research
Leukemia and Lymphoma Society
HHS | NIH | National Institute of General Medical Sciences
HHS | NIH | National Cancer Institute
Howard Hughes Medical Institute
Publisher
Proceedings of the National Academy of Sciences
Cited by
292 articles.
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