Rapid conditional knock-down-knock-in system for mammalian cells |
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Authors: | Hölzel Michael Rohrmoser Michaela Orban Mathias Hömig Cornelia Harasim Thomas Malamoussi Anastassia Gruber-Eber Anita Heissmeyer Vigo Bornkamm Georg Eick Dirk |
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Affiliation: | Institute of Clinical Molecular Biology and Tumour Genetics, GSF Research Center, Marchioninistrasse 25, 81377 Munich, Germany. hoelzel@gsf.de |
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Abstract: | RNA interference (RNAi) is a powerful tool to analyze gene function in mammalian cells. However, the interpretation of RNAi knock-down phenotypes can be hampered by off-target effects or compound phenotypes, as many proteins combine multiple functions within one molecule and coordinate the assembly of multimolecular complexes. Replacing the endogenous protein with ectopic wild-type or mutant forms can exclude off-target effects, preserve complexes and unravel specific roles of domains or modifications. Therefore, we developed a rapid-knock-down-knock-in system for mammalian cells. Stable polyclonal cell lines were generated within 2 weeks by simultaneous selection of two episomal vectors. Together these vectors mediated reconstitution and knock-down in a doxycycline-dependent manner to allow the analysis of essential genes. Depletion was achieved by an artificial miRNA-embedded siRNA targeting the untranslated region of the endogenous, but not the ectopic mRNA. To prove effectiveness, we tested 17 mutants of WDR12, a factor essential for ribosome biogenesis and cell proliferation. Loss-off function phenotypes were rescued by the wild-type and six mutant forms, but not by the remaining mutants. Thus, our system is suitable to exclude off-target effects and to functionally analyze mutants in cells depleted for the endogenous protein. |
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