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Immortalized prairie vole-derived fibroblasts (VMF-K4DTs) can be transformed into pluripotent stem cells and provide a useful tool with which to determine optimal reprogramming conditions

The cellular conditions required to establish induced pluripotent stem cells (iPSCs), such as the number of reprogramming factors and/or promoter selection, differ among species. The establishment of iPSCs derived from cells of previously unstudied species therefore requires the extensive optimizati...

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Autores principales: KATAYAMA, Masafumi, HIRAYAMA, Takashi, KIYONO, Tohru, ONUMA, Manabu, TANI, Tetsuya, TAKEDA, Satoru, NISHIMORI, Katsuhiko, FUKUDA, Tomokazu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Society for Reproduction and Development 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5481634/
https://www.ncbi.nlm.nih.gov/pubmed/28331164
http://dx.doi.org/10.1262/jrd.2016-164
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author KATAYAMA, Masafumi
HIRAYAMA, Takashi
KIYONO, Tohru
ONUMA, Manabu
TANI, Tetsuya
TAKEDA, Satoru
NISHIMORI, Katsuhiko
FUKUDA, Tomokazu
author_facet KATAYAMA, Masafumi
HIRAYAMA, Takashi
KIYONO, Tohru
ONUMA, Manabu
TANI, Tetsuya
TAKEDA, Satoru
NISHIMORI, Katsuhiko
FUKUDA, Tomokazu
author_sort KATAYAMA, Masafumi
collection PubMed
description The cellular conditions required to establish induced pluripotent stem cells (iPSCs), such as the number of reprogramming factors and/or promoter selection, differ among species. The establishment of iPSCs derived from cells of previously unstudied species therefore requires the extensive optimization of programming conditions, including promoter selection and the optimal number of reprogramming factors, through a trial-and-error approach. While the four Yamanaka factors Oct3/4, Sox2, Klf4, and c-Myc are sufficient for iPSC establishment in mice, we reported previously that six reprogramming factors were necessary for the creation of iPSCs from primary prairie vole-derived cells. Further to this study, we now show detailed data describing the optimization protocol we developed in order to obtain iPSCs from immortalized prairie vole-derived fibroblasts. Immortalized cells can be very useful tools in the optimization of cellular reprogramming conditions, as cellular senescence is known to dramatically decrease the efficiency of iPSC establishment. The immortalized prairie vole cells used in this optimization were designated K4DT cells as they contained mutant forms of CDK4, cyclin D, and telomerase reverse transcriptase (TERT). We show that iPSCs derived from these immortalized cells exhibit the transcriptional silencing of exogenous reprogramming factors while maintaining pluripotent cell morphology. There were no observed differences between the iPSCs derived from primary and immortalized prairie vole fibroblasts. Our data suggest that cells that are immortalized with mutant CDK4, cyclin D, and TERT provide a useful tool for the determination of the optimal conditions for iPSC establishment.
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spelling pubmed-54816342017-06-27 Immortalized prairie vole-derived fibroblasts (VMF-K4DTs) can be transformed into pluripotent stem cells and provide a useful tool with which to determine optimal reprogramming conditions KATAYAMA, Masafumi HIRAYAMA, Takashi KIYONO, Tohru ONUMA, Manabu TANI, Tetsuya TAKEDA, Satoru NISHIMORI, Katsuhiko FUKUDA, Tomokazu J Reprod Dev Original Article The cellular conditions required to establish induced pluripotent stem cells (iPSCs), such as the number of reprogramming factors and/or promoter selection, differ among species. The establishment of iPSCs derived from cells of previously unstudied species therefore requires the extensive optimization of programming conditions, including promoter selection and the optimal number of reprogramming factors, through a trial-and-error approach. While the four Yamanaka factors Oct3/4, Sox2, Klf4, and c-Myc are sufficient for iPSC establishment in mice, we reported previously that six reprogramming factors were necessary for the creation of iPSCs from primary prairie vole-derived cells. Further to this study, we now show detailed data describing the optimization protocol we developed in order to obtain iPSCs from immortalized prairie vole-derived fibroblasts. Immortalized cells can be very useful tools in the optimization of cellular reprogramming conditions, as cellular senescence is known to dramatically decrease the efficiency of iPSC establishment. The immortalized prairie vole cells used in this optimization were designated K4DT cells as they contained mutant forms of CDK4, cyclin D, and telomerase reverse transcriptase (TERT). We show that iPSCs derived from these immortalized cells exhibit the transcriptional silencing of exogenous reprogramming factors while maintaining pluripotent cell morphology. There were no observed differences between the iPSCs derived from primary and immortalized prairie vole fibroblasts. Our data suggest that cells that are immortalized with mutant CDK4, cyclin D, and TERT provide a useful tool for the determination of the optimal conditions for iPSC establishment. The Society for Reproduction and Development 2017-03-23 2017-06 /pmc/articles/PMC5481634/ /pubmed/28331164 http://dx.doi.org/10.1262/jrd.2016-164 Text en ©2017 Society for Reproduction and Development This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial No Derivatives (by-nc-nd) License. (CC-BY-NC-ND 4.0: https://creativecommons.org/licenses/by-nc-nd/4.0/)
spellingShingle Original Article
KATAYAMA, Masafumi
HIRAYAMA, Takashi
KIYONO, Tohru
ONUMA, Manabu
TANI, Tetsuya
TAKEDA, Satoru
NISHIMORI, Katsuhiko
FUKUDA, Tomokazu
Immortalized prairie vole-derived fibroblasts (VMF-K4DTs) can be transformed into pluripotent stem cells and provide a useful tool with which to determine optimal reprogramming conditions
title Immortalized prairie vole-derived fibroblasts (VMF-K4DTs) can be transformed into pluripotent stem cells and provide a useful tool with which to determine optimal reprogramming conditions
title_full Immortalized prairie vole-derived fibroblasts (VMF-K4DTs) can be transformed into pluripotent stem cells and provide a useful tool with which to determine optimal reprogramming conditions
title_fullStr Immortalized prairie vole-derived fibroblasts (VMF-K4DTs) can be transformed into pluripotent stem cells and provide a useful tool with which to determine optimal reprogramming conditions
title_full_unstemmed Immortalized prairie vole-derived fibroblasts (VMF-K4DTs) can be transformed into pluripotent stem cells and provide a useful tool with which to determine optimal reprogramming conditions
title_short Immortalized prairie vole-derived fibroblasts (VMF-K4DTs) can be transformed into pluripotent stem cells and provide a useful tool with which to determine optimal reprogramming conditions
title_sort immortalized prairie vole-derived fibroblasts (vmf-k4dts) can be transformed into pluripotent stem cells and provide a useful tool with which to determine optimal reprogramming conditions
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5481634/
https://www.ncbi.nlm.nih.gov/pubmed/28331164
http://dx.doi.org/10.1262/jrd.2016-164
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