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Versatile approach for functional analysis of human proteins and efficient stable cell line generation using FLP-mediated recombination system

Deciphering a function of a given protein requires investigating various biological aspects. Usually, the protein of interest is expressed with a fusion tag that aids or allows subsequent analyses. Additionally, downregulation or inactivation of the studied gene enables functional studies. Developme...

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Autores principales: Szczesny, Roman J., Kowalska, Katarzyna, Klosowska-Kosicka, Kamila, Chlebowski, Aleksander, Owczarek, Ewelina P., Warkocki, Zbigniew, Kulinski, Tomasz M., Adamska, Dorota, Affek, Kamila, Jedroszkowiak, Agata, Kotrys, Anna V., Tomecki, Rafal, Krawczyk, Pawel S., Borowski, Lukasz S., Dziembowski, Andrzej
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5874048/
https://www.ncbi.nlm.nih.gov/pubmed/29590189
http://dx.doi.org/10.1371/journal.pone.0194887
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author Szczesny, Roman J.
Kowalska, Katarzyna
Klosowska-Kosicka, Kamila
Chlebowski, Aleksander
Owczarek, Ewelina P.
Warkocki, Zbigniew
Kulinski, Tomasz M.
Adamska, Dorota
Affek, Kamila
Jedroszkowiak, Agata
Kotrys, Anna V.
Tomecki, Rafal
Krawczyk, Pawel S.
Borowski, Lukasz S.
Dziembowski, Andrzej
author_facet Szczesny, Roman J.
Kowalska, Katarzyna
Klosowska-Kosicka, Kamila
Chlebowski, Aleksander
Owczarek, Ewelina P.
Warkocki, Zbigniew
Kulinski, Tomasz M.
Adamska, Dorota
Affek, Kamila
Jedroszkowiak, Agata
Kotrys, Anna V.
Tomecki, Rafal
Krawczyk, Pawel S.
Borowski, Lukasz S.
Dziembowski, Andrzej
author_sort Szczesny, Roman J.
collection PubMed
description Deciphering a function of a given protein requires investigating various biological aspects. Usually, the protein of interest is expressed with a fusion tag that aids or allows subsequent analyses. Additionally, downregulation or inactivation of the studied gene enables functional studies. Development of the CRISPR/Cas9 methodology opened many possibilities but in many cases it is restricted to non-essential genes. Recombinase-dependent gene integration methods, like the Flp-In system, are very good alternatives. The system is widely used in different research areas, which calls for the existence of compatible vectors and efficient protocols that ensure straightforward DNA cloning and generation of stable cell lines. We have created and validated a robust series of 52 vectors for streamlined generation of stable mammalian cell lines using the FLP recombinase-based methodology. Using the sequence-independent DNA cloning method all constructs for a given coding-sequence can be made with just three universal PCR primers. Our collection allows tetracycline-inducible expression of proteins with various tags suitable for protein localization, FRET, bimolecular fluorescence complementation (BiFC), protein dynamics studies (FRAP), co-immunoprecipitation, the RNA tethering assay and cell sorting. Some of the vectors contain a bidirectional promoter for concomitant expression of miRNA and mRNA, so that a gene can be silenced and its product replaced by a mutated miRNA-insensitive version. Our toolkit and protocols have allowed us to create more than 500 constructs with ease. We demonstrate the efficacy of our vectors by creating stable cell lines with various tagged proteins (numatrin, fibrillarin, coilin, centrin, THOC5, PCNA). We have analysed transgene expression over time to provide a guideline for future experiments and compared the effectiveness of commonly used inducers for tetracycline-responsive promoters. As proof of concept we examined the role of the exoribonuclease XRN2 in transcription termination by RNAseq.
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spelling pubmed-58740482018-04-06 Versatile approach for functional analysis of human proteins and efficient stable cell line generation using FLP-mediated recombination system Szczesny, Roman J. Kowalska, Katarzyna Klosowska-Kosicka, Kamila Chlebowski, Aleksander Owczarek, Ewelina P. Warkocki, Zbigniew Kulinski, Tomasz M. Adamska, Dorota Affek, Kamila Jedroszkowiak, Agata Kotrys, Anna V. Tomecki, Rafal Krawczyk, Pawel S. Borowski, Lukasz S. Dziembowski, Andrzej PLoS One Research Article Deciphering a function of a given protein requires investigating various biological aspects. Usually, the protein of interest is expressed with a fusion tag that aids or allows subsequent analyses. Additionally, downregulation or inactivation of the studied gene enables functional studies. Development of the CRISPR/Cas9 methodology opened many possibilities but in many cases it is restricted to non-essential genes. Recombinase-dependent gene integration methods, like the Flp-In system, are very good alternatives. The system is widely used in different research areas, which calls for the existence of compatible vectors and efficient protocols that ensure straightforward DNA cloning and generation of stable cell lines. We have created and validated a robust series of 52 vectors for streamlined generation of stable mammalian cell lines using the FLP recombinase-based methodology. Using the sequence-independent DNA cloning method all constructs for a given coding-sequence can be made with just three universal PCR primers. Our collection allows tetracycline-inducible expression of proteins with various tags suitable for protein localization, FRET, bimolecular fluorescence complementation (BiFC), protein dynamics studies (FRAP), co-immunoprecipitation, the RNA tethering assay and cell sorting. Some of the vectors contain a bidirectional promoter for concomitant expression of miRNA and mRNA, so that a gene can be silenced and its product replaced by a mutated miRNA-insensitive version. Our toolkit and protocols have allowed us to create more than 500 constructs with ease. We demonstrate the efficacy of our vectors by creating stable cell lines with various tagged proteins (numatrin, fibrillarin, coilin, centrin, THOC5, PCNA). We have analysed transgene expression over time to provide a guideline for future experiments and compared the effectiveness of commonly used inducers for tetracycline-responsive promoters. As proof of concept we examined the role of the exoribonuclease XRN2 in transcription termination by RNAseq. Public Library of Science 2018-03-28 /pmc/articles/PMC5874048/ /pubmed/29590189 http://dx.doi.org/10.1371/journal.pone.0194887 Text en © 2018 Szczesny et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Szczesny, Roman J.
Kowalska, Katarzyna
Klosowska-Kosicka, Kamila
Chlebowski, Aleksander
Owczarek, Ewelina P.
Warkocki, Zbigniew
Kulinski, Tomasz M.
Adamska, Dorota
Affek, Kamila
Jedroszkowiak, Agata
Kotrys, Anna V.
Tomecki, Rafal
Krawczyk, Pawel S.
Borowski, Lukasz S.
Dziembowski, Andrzej
Versatile approach for functional analysis of human proteins and efficient stable cell line generation using FLP-mediated recombination system
title Versatile approach for functional analysis of human proteins and efficient stable cell line generation using FLP-mediated recombination system
title_full Versatile approach for functional analysis of human proteins and efficient stable cell line generation using FLP-mediated recombination system
title_fullStr Versatile approach for functional analysis of human proteins and efficient stable cell line generation using FLP-mediated recombination system
title_full_unstemmed Versatile approach for functional analysis of human proteins and efficient stable cell line generation using FLP-mediated recombination system
title_short Versatile approach for functional analysis of human proteins and efficient stable cell line generation using FLP-mediated recombination system
title_sort versatile approach for functional analysis of human proteins and efficient stable cell line generation using flp-mediated recombination system
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5874048/
https://www.ncbi.nlm.nih.gov/pubmed/29590189
http://dx.doi.org/10.1371/journal.pone.0194887
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