Cargando…

A Novel Dual-Color Reporter for Identifying Insulin-Producing Beta- Cells and Classifying Heterogeneity of Insulinoma Cell Lines

Many research studies use immortalized cell lines as surrogates for primary beta- cells. We describe the production and use of a novel “indirect" dual-fluorescent reporter system that leads to mutually exclusive expression of EGFP in insulin-producing (INS(+)) beta-cells or mCherry in non-beta-...

Descripción completa

Detalles Bibliográficos
Autores principales: Lee, Nan Sook, Rohan, Joyce G., Zitting, Madison, Kamath, Sonia, Weitz, Andrew, Sipos, Arnold, Salvaterra, Paul M., Hasegawa, Kouichi, Pera, Martin, Chow, Robert H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3329476/
https://www.ncbi.nlm.nih.gov/pubmed/22530041
http://dx.doi.org/10.1371/journal.pone.0035521
_version_ 1782229848666669056
author Lee, Nan Sook
Rohan, Joyce G.
Zitting, Madison
Kamath, Sonia
Weitz, Andrew
Sipos, Arnold
Salvaterra, Paul M.
Hasegawa, Kouichi
Pera, Martin
Chow, Robert H.
author_facet Lee, Nan Sook
Rohan, Joyce G.
Zitting, Madison
Kamath, Sonia
Weitz, Andrew
Sipos, Arnold
Salvaterra, Paul M.
Hasegawa, Kouichi
Pera, Martin
Chow, Robert H.
author_sort Lee, Nan Sook
collection PubMed
description Many research studies use immortalized cell lines as surrogates for primary beta- cells. We describe the production and use of a novel “indirect" dual-fluorescent reporter system that leads to mutually exclusive expression of EGFP in insulin-producing (INS(+)) beta-cells or mCherry in non-beta-cells. Our system uses the human insulin promoter to initiate a Cre-mediated shift in reporter color within a single transgene construct and is useful for FACS selection of cells from single cultures for further analysis. Application of our reporter to presumably clonal HIT-T15 insulinoma cells, as well as other presumably clonal lines, indicates that these cultures are in fact heterogeneous with respect to INS(+) phenotype. Our strategy could be easily applied to other cell- or tissue-specific promoters. We anticipate its utility for FACS purification of INS(+) and glucose-responsive beta-like-cells from primary human islet cell isolates or in vitro differentiated pluripotent stem cells.
format Online
Article
Text
id pubmed-3329476
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-33294762012-04-23 A Novel Dual-Color Reporter for Identifying Insulin-Producing Beta- Cells and Classifying Heterogeneity of Insulinoma Cell Lines Lee, Nan Sook Rohan, Joyce G. Zitting, Madison Kamath, Sonia Weitz, Andrew Sipos, Arnold Salvaterra, Paul M. Hasegawa, Kouichi Pera, Martin Chow, Robert H. PLoS One Research Article Many research studies use immortalized cell lines as surrogates for primary beta- cells. We describe the production and use of a novel “indirect" dual-fluorescent reporter system that leads to mutually exclusive expression of EGFP in insulin-producing (INS(+)) beta-cells or mCherry in non-beta-cells. Our system uses the human insulin promoter to initiate a Cre-mediated shift in reporter color within a single transgene construct and is useful for FACS selection of cells from single cultures for further analysis. Application of our reporter to presumably clonal HIT-T15 insulinoma cells, as well as other presumably clonal lines, indicates that these cultures are in fact heterogeneous with respect to INS(+) phenotype. Our strategy could be easily applied to other cell- or tissue-specific promoters. We anticipate its utility for FACS purification of INS(+) and glucose-responsive beta-like-cells from primary human islet cell isolates or in vitro differentiated pluripotent stem cells. Public Library of Science 2012-04-18 /pmc/articles/PMC3329476/ /pubmed/22530041 http://dx.doi.org/10.1371/journal.pone.0035521 Text en Lee 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Lee, Nan Sook
Rohan, Joyce G.
Zitting, Madison
Kamath, Sonia
Weitz, Andrew
Sipos, Arnold
Salvaterra, Paul M.
Hasegawa, Kouichi
Pera, Martin
Chow, Robert H.
A Novel Dual-Color Reporter for Identifying Insulin-Producing Beta- Cells and Classifying Heterogeneity of Insulinoma Cell Lines
title A Novel Dual-Color Reporter for Identifying Insulin-Producing Beta- Cells and Classifying Heterogeneity of Insulinoma Cell Lines
title_full A Novel Dual-Color Reporter for Identifying Insulin-Producing Beta- Cells and Classifying Heterogeneity of Insulinoma Cell Lines
title_fullStr A Novel Dual-Color Reporter for Identifying Insulin-Producing Beta- Cells and Classifying Heterogeneity of Insulinoma Cell Lines
title_full_unstemmed A Novel Dual-Color Reporter for Identifying Insulin-Producing Beta- Cells and Classifying Heterogeneity of Insulinoma Cell Lines
title_short A Novel Dual-Color Reporter for Identifying Insulin-Producing Beta- Cells and Classifying Heterogeneity of Insulinoma Cell Lines
title_sort novel dual-color reporter for identifying insulin-producing beta- cells and classifying heterogeneity of insulinoma cell lines
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3329476/
https://www.ncbi.nlm.nih.gov/pubmed/22530041
http://dx.doi.org/10.1371/journal.pone.0035521
work_keys_str_mv AT leenansook anoveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT rohanjoyceg anoveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT zittingmadison anoveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT kamathsonia anoveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT weitzandrew anoveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT siposarnold anoveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT salvaterrapaulm anoveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT hasegawakouichi anoveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT peramartin anoveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT chowroberth anoveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT leenansook noveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT rohanjoyceg noveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT zittingmadison noveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT kamathsonia noveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT weitzandrew noveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT siposarnold noveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT salvaterrapaulm noveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT hasegawakouichi noveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT peramartin noveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines
AT chowroberth noveldualcolorreporterforidentifyinginsulinproducingbetacellsandclassifyingheterogeneityofinsulinomacelllines