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Transient Acquisition of Pluripotency During Somatic Cell Transdifferentiation with iPSC Reprogramming Factors

Somatic cells can be transdifferentiated to other cell types without passing through a pluripotent state by ectopic expression of appropriate transcription factors(1,2). Recent reports have proposed an alternative transdifferentiation method in which fibroblasts are directly converted to various mat...

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Autores principales: Maza, Itay, Caspi, Inbal, Zviran, Asaf, Chomsky, Elad, Rais, Yoach, Viukov, Sergey, Geula, Shay, Buenrostro, Jason D., Weinberger, Leehee, Krupalnik, Vladislav, Hanna, Suhair, Zerbib, Mirie, Dutton, James R., Greenleaf, William J., Massarwa, Rada, Novershtern, Noa, Hanna, Jacob H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4500825/
https://www.ncbi.nlm.nih.gov/pubmed/26098448
http://dx.doi.org/10.1038/nbt.3270
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author Maza, Itay
Caspi, Inbal
Zviran, Asaf
Chomsky, Elad
Rais, Yoach
Viukov, Sergey
Geula, Shay
Buenrostro, Jason D.
Weinberger, Leehee
Krupalnik, Vladislav
Hanna, Suhair
Zerbib, Mirie
Dutton, James R.
Greenleaf, William J.
Massarwa, Rada
Novershtern, Noa
Hanna, Jacob H.
author_facet Maza, Itay
Caspi, Inbal
Zviran, Asaf
Chomsky, Elad
Rais, Yoach
Viukov, Sergey
Geula, Shay
Buenrostro, Jason D.
Weinberger, Leehee
Krupalnik, Vladislav
Hanna, Suhair
Zerbib, Mirie
Dutton, James R.
Greenleaf, William J.
Massarwa, Rada
Novershtern, Noa
Hanna, Jacob H.
author_sort Maza, Itay
collection PubMed
description Somatic cells can be transdifferentiated to other cell types without passing through a pluripotent state by ectopic expression of appropriate transcription factors(1,2). Recent reports have proposed an alternative transdifferentiation method in which fibroblasts are directly converted to various mature somatic cell types by brief expression of the induced pluripotent stem cell (iPSC) reprogramming factors Oct4, Sox2, Klf4 and c-Myc (OSKM) followed by cell expansion in media that promote lineage differentiation(3–6). Here we test this method using genetic lineage tracing for expression of endogenous Nanog and Oct4 and for X chromosome reactivation, as these events mark acquisition of pluripotency. We show that the vast majority of reprogrammed cardiomyocytes or neural stem cells obtained from mouse fibroblasts by OSKM-induced transdifferentiation pass through a transient pluripotent state, and that their derivation is molecularly coupled to iPSC formation mechanisms. Our findings underscore the importance of defining trajectories during cell reprogramming by different methods.
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spelling pubmed-45008252016-01-01 Transient Acquisition of Pluripotency During Somatic Cell Transdifferentiation with iPSC Reprogramming Factors Maza, Itay Caspi, Inbal Zviran, Asaf Chomsky, Elad Rais, Yoach Viukov, Sergey Geula, Shay Buenrostro, Jason D. Weinberger, Leehee Krupalnik, Vladislav Hanna, Suhair Zerbib, Mirie Dutton, James R. Greenleaf, William J. Massarwa, Rada Novershtern, Noa Hanna, Jacob H. Nat Biotechnol Article Somatic cells can be transdifferentiated to other cell types without passing through a pluripotent state by ectopic expression of appropriate transcription factors(1,2). Recent reports have proposed an alternative transdifferentiation method in which fibroblasts are directly converted to various mature somatic cell types by brief expression of the induced pluripotent stem cell (iPSC) reprogramming factors Oct4, Sox2, Klf4 and c-Myc (OSKM) followed by cell expansion in media that promote lineage differentiation(3–6). Here we test this method using genetic lineage tracing for expression of endogenous Nanog and Oct4 and for X chromosome reactivation, as these events mark acquisition of pluripotency. We show that the vast majority of reprogrammed cardiomyocytes or neural stem cells obtained from mouse fibroblasts by OSKM-induced transdifferentiation pass through a transient pluripotent state, and that their derivation is molecularly coupled to iPSC formation mechanisms. Our findings underscore the importance of defining trajectories during cell reprogramming by different methods. 2015-06-22 2015-07 /pmc/articles/PMC4500825/ /pubmed/26098448 http://dx.doi.org/10.1038/nbt.3270 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Maza, Itay
Caspi, Inbal
Zviran, Asaf
Chomsky, Elad
Rais, Yoach
Viukov, Sergey
Geula, Shay
Buenrostro, Jason D.
Weinberger, Leehee
Krupalnik, Vladislav
Hanna, Suhair
Zerbib, Mirie
Dutton, James R.
Greenleaf, William J.
Massarwa, Rada
Novershtern, Noa
Hanna, Jacob H.
Transient Acquisition of Pluripotency During Somatic Cell Transdifferentiation with iPSC Reprogramming Factors
title Transient Acquisition of Pluripotency During Somatic Cell Transdifferentiation with iPSC Reprogramming Factors
title_full Transient Acquisition of Pluripotency During Somatic Cell Transdifferentiation with iPSC Reprogramming Factors
title_fullStr Transient Acquisition of Pluripotency During Somatic Cell Transdifferentiation with iPSC Reprogramming Factors
title_full_unstemmed Transient Acquisition of Pluripotency During Somatic Cell Transdifferentiation with iPSC Reprogramming Factors
title_short Transient Acquisition of Pluripotency During Somatic Cell Transdifferentiation with iPSC Reprogramming Factors
title_sort transient acquisition of pluripotency during somatic cell transdifferentiation with ipsc reprogramming factors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4500825/
https://www.ncbi.nlm.nih.gov/pubmed/26098448
http://dx.doi.org/10.1038/nbt.3270
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