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Conversion of Mature Human β-Cells Into Glucagon-Producing α-Cells

Conversion of one terminally differentiated cell type into another (or transdifferentiation) usually requires the forced expression of key transcription factors. We examined the plasticity of human insulin-producing β-cells in a model of islet cell aggregate formation. Here, we show that primary hum...

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Autores principales: Spijker, H. Siebe, Ravelli, Raimond B.G., Mommaas-Kienhuis, A. Mieke, van Apeldoorn, Aart A., Engelse, Marten A., Zaldumbide, Arnaud, Bonner-Weir, Susan, Rabelink, Ton J., Hoeben, Rob C., Clevers, Hans, Mummery, Christine L., Carlotti, Françoise, de Koning, Eelco J.P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3712074/
https://www.ncbi.nlm.nih.gov/pubmed/23569174
http://dx.doi.org/10.2337/db12-1001
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author Spijker, H. Siebe
Ravelli, Raimond B.G.
Mommaas-Kienhuis, A. Mieke
van Apeldoorn, Aart A.
Engelse, Marten A.
Zaldumbide, Arnaud
Bonner-Weir, Susan
Rabelink, Ton J.
Hoeben, Rob C.
Clevers, Hans
Mummery, Christine L.
Carlotti, Françoise
de Koning, Eelco J.P.
author_facet Spijker, H. Siebe
Ravelli, Raimond B.G.
Mommaas-Kienhuis, A. Mieke
van Apeldoorn, Aart A.
Engelse, Marten A.
Zaldumbide, Arnaud
Bonner-Weir, Susan
Rabelink, Ton J.
Hoeben, Rob C.
Clevers, Hans
Mummery, Christine L.
Carlotti, Françoise
de Koning, Eelco J.P.
author_sort Spijker, H. Siebe
collection PubMed
description Conversion of one terminally differentiated cell type into another (or transdifferentiation) usually requires the forced expression of key transcription factors. We examined the plasticity of human insulin-producing β-cells in a model of islet cell aggregate formation. Here, we show that primary human β-cells can undergo a conversion into glucagon-producing α-cells without introduction of any genetic modification. The process occurs within days as revealed by lentivirus-mediated β-cell lineage tracing. Converted cells are indistinguishable from native α-cells based on ultrastructural morphology and maintain their α-cell phenotype after transplantation in vivo. Transition of β-cells into α-cells occurs after β-cell degranulation and is characterized by the presence of β-cell–specific transcription factors Pdx1 and Nkx6.1 in glucagon(+) cells. Finally, we show that lentivirus-mediated knockdown of Arx, a determinant of the α-cell lineage, inhibits the conversion. Our findings reveal an unknown plasticity of human adult endocrine cells that can be modulated. This endocrine cell plasticity could have implications for islet development, (patho)physiology, and regeneration.
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spelling pubmed-37120742014-07-01 Conversion of Mature Human β-Cells Into Glucagon-Producing α-Cells Spijker, H. Siebe Ravelli, Raimond B.G. Mommaas-Kienhuis, A. Mieke van Apeldoorn, Aart A. Engelse, Marten A. Zaldumbide, Arnaud Bonner-Weir, Susan Rabelink, Ton J. Hoeben, Rob C. Clevers, Hans Mummery, Christine L. Carlotti, Françoise de Koning, Eelco J.P. Diabetes Original Research Conversion of one terminally differentiated cell type into another (or transdifferentiation) usually requires the forced expression of key transcription factors. We examined the plasticity of human insulin-producing β-cells in a model of islet cell aggregate formation. Here, we show that primary human β-cells can undergo a conversion into glucagon-producing α-cells without introduction of any genetic modification. The process occurs within days as revealed by lentivirus-mediated β-cell lineage tracing. Converted cells are indistinguishable from native α-cells based on ultrastructural morphology and maintain their α-cell phenotype after transplantation in vivo. Transition of β-cells into α-cells occurs after β-cell degranulation and is characterized by the presence of β-cell–specific transcription factors Pdx1 and Nkx6.1 in glucagon(+) cells. Finally, we show that lentivirus-mediated knockdown of Arx, a determinant of the α-cell lineage, inhibits the conversion. Our findings reveal an unknown plasticity of human adult endocrine cells that can be modulated. This endocrine cell plasticity could have implications for islet development, (patho)physiology, and regeneration. American Diabetes Association 2013-07 2013-06-14 /pmc/articles/PMC3712074/ /pubmed/23569174 http://dx.doi.org/10.2337/db12-1001 Text en © 2013 by the American Diabetes Association. Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. See http://creativecommons.org/licenses/by-nc-nd/3.0/ for details.
spellingShingle Original Research
Spijker, H. Siebe
Ravelli, Raimond B.G.
Mommaas-Kienhuis, A. Mieke
van Apeldoorn, Aart A.
Engelse, Marten A.
Zaldumbide, Arnaud
Bonner-Weir, Susan
Rabelink, Ton J.
Hoeben, Rob C.
Clevers, Hans
Mummery, Christine L.
Carlotti, Françoise
de Koning, Eelco J.P.
Conversion of Mature Human β-Cells Into Glucagon-Producing α-Cells
title Conversion of Mature Human β-Cells Into Glucagon-Producing α-Cells
title_full Conversion of Mature Human β-Cells Into Glucagon-Producing α-Cells
title_fullStr Conversion of Mature Human β-Cells Into Glucagon-Producing α-Cells
title_full_unstemmed Conversion of Mature Human β-Cells Into Glucagon-Producing α-Cells
title_short Conversion of Mature Human β-Cells Into Glucagon-Producing α-Cells
title_sort conversion of mature human β-cells into glucagon-producing α-cells
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3712074/
https://www.ncbi.nlm.nih.gov/pubmed/23569174
http://dx.doi.org/10.2337/db12-1001
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