Cargando…

A Network of microRNAs Acts to Promote Cell Cycle Exit and Differentiation of Human Pancreatic Endocrine Cells

Pancreatic endocrine cell differentiation is orchestrated by the action of transcription factors that operate in a gene regulatory network to activate endocrine lineage genes and repress lineage-inappropriate genes. MicroRNAs (miRNAs) are important modulators of gene expression, yet their role in en...

Descripción completa

Detalles Bibliográficos
Autores principales: Jin, Wen, Mulas, Francesca, Gaertner, Bjoern, Sui, Yinghui, Wang, Jinzhao, Matta, Ileana, Zeng, Chun, Vinckier, Nicholas, Wang, Allen, Nguyen-Ngoc, Kim-Vy, Chiou, Joshua, Kaestner, Klaus H., Frazer, Kelly A., Carrano, Andrea C., Shih, Hung-Ping, Sander, Maike
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6889369/
https://www.ncbi.nlm.nih.gov/pubmed/31733514
http://dx.doi.org/10.1016/j.isci.2019.10.063
_version_ 1783475402353672192
author Jin, Wen
Mulas, Francesca
Gaertner, Bjoern
Sui, Yinghui
Wang, Jinzhao
Matta, Ileana
Zeng, Chun
Vinckier, Nicholas
Wang, Allen
Nguyen-Ngoc, Kim-Vy
Chiou, Joshua
Kaestner, Klaus H.
Frazer, Kelly A.
Carrano, Andrea C.
Shih, Hung-Ping
Sander, Maike
author_facet Jin, Wen
Mulas, Francesca
Gaertner, Bjoern
Sui, Yinghui
Wang, Jinzhao
Matta, Ileana
Zeng, Chun
Vinckier, Nicholas
Wang, Allen
Nguyen-Ngoc, Kim-Vy
Chiou, Joshua
Kaestner, Klaus H.
Frazer, Kelly A.
Carrano, Andrea C.
Shih, Hung-Ping
Sander, Maike
author_sort Jin, Wen
collection PubMed
description Pancreatic endocrine cell differentiation is orchestrated by the action of transcription factors that operate in a gene regulatory network to activate endocrine lineage genes and repress lineage-inappropriate genes. MicroRNAs (miRNAs) are important modulators of gene expression, yet their role in endocrine cell differentiation has not been systematically explored. Here we characterize miRNA-regulatory networks active in human endocrine cell differentiation by combining small RNA sequencing, miRNA over-expression, and network modeling approaches. Our analysis identified Let-7g, Let-7a, miR-200a, miR-127, and miR-375 as endocrine-enriched miRNAs that drive endocrine cell differentiation-associated gene expression changes. These miRNAs are predicted to target different transcription factors, which converge on genes involved in cell cycle regulation. When expressed in human embryonic stem cell-derived pancreatic progenitors, these miRNAs induce cell cycle exit and promote endocrine cell differentiation. Our study delineates the role of miRNAs in human endocrine cell differentiation and identifies miRNAs that could facilitate endocrine cell reprogramming.
format Online
Article
Text
id pubmed-6889369
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-68893692019-12-11 A Network of microRNAs Acts to Promote Cell Cycle Exit and Differentiation of Human Pancreatic Endocrine Cells Jin, Wen Mulas, Francesca Gaertner, Bjoern Sui, Yinghui Wang, Jinzhao Matta, Ileana Zeng, Chun Vinckier, Nicholas Wang, Allen Nguyen-Ngoc, Kim-Vy Chiou, Joshua Kaestner, Klaus H. Frazer, Kelly A. Carrano, Andrea C. Shih, Hung-Ping Sander, Maike iScience Article Pancreatic endocrine cell differentiation is orchestrated by the action of transcription factors that operate in a gene regulatory network to activate endocrine lineage genes and repress lineage-inappropriate genes. MicroRNAs (miRNAs) are important modulators of gene expression, yet their role in endocrine cell differentiation has not been systematically explored. Here we characterize miRNA-regulatory networks active in human endocrine cell differentiation by combining small RNA sequencing, miRNA over-expression, and network modeling approaches. Our analysis identified Let-7g, Let-7a, miR-200a, miR-127, and miR-375 as endocrine-enriched miRNAs that drive endocrine cell differentiation-associated gene expression changes. These miRNAs are predicted to target different transcription factors, which converge on genes involved in cell cycle regulation. When expressed in human embryonic stem cell-derived pancreatic progenitors, these miRNAs induce cell cycle exit and promote endocrine cell differentiation. Our study delineates the role of miRNAs in human endocrine cell differentiation and identifies miRNAs that could facilitate endocrine cell reprogramming. Elsevier 2019-11-01 /pmc/articles/PMC6889369/ /pubmed/31733514 http://dx.doi.org/10.1016/j.isci.2019.10.063 Text en © 2019 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jin, Wen
Mulas, Francesca
Gaertner, Bjoern
Sui, Yinghui
Wang, Jinzhao
Matta, Ileana
Zeng, Chun
Vinckier, Nicholas
Wang, Allen
Nguyen-Ngoc, Kim-Vy
Chiou, Joshua
Kaestner, Klaus H.
Frazer, Kelly A.
Carrano, Andrea C.
Shih, Hung-Ping
Sander, Maike
A Network of microRNAs Acts to Promote Cell Cycle Exit and Differentiation of Human Pancreatic Endocrine Cells
title A Network of microRNAs Acts to Promote Cell Cycle Exit and Differentiation of Human Pancreatic Endocrine Cells
title_full A Network of microRNAs Acts to Promote Cell Cycle Exit and Differentiation of Human Pancreatic Endocrine Cells
title_fullStr A Network of microRNAs Acts to Promote Cell Cycle Exit and Differentiation of Human Pancreatic Endocrine Cells
title_full_unstemmed A Network of microRNAs Acts to Promote Cell Cycle Exit and Differentiation of Human Pancreatic Endocrine Cells
title_short A Network of microRNAs Acts to Promote Cell Cycle Exit and Differentiation of Human Pancreatic Endocrine Cells
title_sort network of micrornas acts to promote cell cycle exit and differentiation of human pancreatic endocrine cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6889369/
https://www.ncbi.nlm.nih.gov/pubmed/31733514
http://dx.doi.org/10.1016/j.isci.2019.10.063
work_keys_str_mv AT jinwen anetworkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT mulasfrancesca anetworkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT gaertnerbjoern anetworkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT suiyinghui anetworkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT wangjinzhao anetworkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT mattaileana anetworkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT zengchun anetworkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT vinckiernicholas anetworkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT wangallen anetworkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT nguyenngockimvy anetworkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT chioujoshua anetworkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT kaestnerklaush anetworkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT frazerkellya anetworkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT carranoandreac anetworkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT shihhungping anetworkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT sandermaike anetworkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT jinwen networkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT mulasfrancesca networkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT gaertnerbjoern networkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT suiyinghui networkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT wangjinzhao networkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT mattaileana networkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT zengchun networkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT vinckiernicholas networkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT wangallen networkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT nguyenngockimvy networkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT chioujoshua networkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT kaestnerklaush networkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT frazerkellya networkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT carranoandreac networkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT shihhungping networkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells
AT sandermaike networkofmicrornasactstopromotecellcycleexitanddifferentiationofhumanpancreaticendocrinecells