Cargando…

Modeling HNF1B-associated monogenic diabetes using human iPSCs reveals an early stage impairment of the pancreatic developmental program

Heterozygous mutations in HNF1B in humans result in a multisystem disorder, including pancreatic hypoplasia and diabetes mellitus. Here we used a well-controlled human induced pluripotent stem cell pancreatic differentiation model to elucidate the molecular mechanisms underlying HNF1B-associated dia...

Descripción completa

Detalles Bibliográficos
Autores principales: El-Khairi, Ranna, Olszanowski, Evelyn, Muraro, Daniele, Madrigal, Pedro, Tilgner, Katarzyna, Chhatriwala, Mariya, Vyas, Sapna, Chia, Crystal Y., Vallier, Ludovic, Rodríguez-Seguí, Santiago A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8452540/
https://www.ncbi.nlm.nih.gov/pubmed/34450036
http://dx.doi.org/10.1016/j.stemcr.2021.07.018
_version_ 1784570092324913152
author El-Khairi, Ranna
Olszanowski, Evelyn
Muraro, Daniele
Madrigal, Pedro
Tilgner, Katarzyna
Chhatriwala, Mariya
Vyas, Sapna
Chia, Crystal Y.
Vallier, Ludovic
Rodríguez-Seguí, Santiago A.
author_facet El-Khairi, Ranna
Olszanowski, Evelyn
Muraro, Daniele
Madrigal, Pedro
Tilgner, Katarzyna
Chhatriwala, Mariya
Vyas, Sapna
Chia, Crystal Y.
Vallier, Ludovic
Rodríguez-Seguí, Santiago A.
author_sort El-Khairi, Ranna
collection PubMed
description Heterozygous mutations in HNF1B in humans result in a multisystem disorder, including pancreatic hypoplasia and diabetes mellitus. Here we used a well-controlled human induced pluripotent stem cell pancreatic differentiation model to elucidate the molecular mechanisms underlying HNF1B-associated diabetes. Our results show that lack of HNF1B blocks specification of pancreatic fate from the foregut progenitor (FP) stage, but HNF1B haploinsufficiency allows differentiation of multipotent pancreatic progenitor cells (MPCs) and insulin-secreting β-like cells. We show that HNF1B haploinsufficiency impairs cell proliferation in FPs and MPCs. This could be attributed to impaired induction of key pancreatic developmental genes, including SOX11, ROBO2, and additional TEAD1 target genes whose function is associated with MPC self-renewal. In this work we uncover an exhaustive list of potential HNF1B gene targets during human pancreas organogenesis whose downregulation might underlie HNF1B-associated diabetes onset in humans, thus providing an important resource to understand the pathogenesis of this disease.
format Online
Article
Text
id pubmed-8452540
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-84525402021-09-27 Modeling HNF1B-associated monogenic diabetes using human iPSCs reveals an early stage impairment of the pancreatic developmental program El-Khairi, Ranna Olszanowski, Evelyn Muraro, Daniele Madrigal, Pedro Tilgner, Katarzyna Chhatriwala, Mariya Vyas, Sapna Chia, Crystal Y. Vallier, Ludovic Rodríguez-Seguí, Santiago A. Stem Cell Reports Article Heterozygous mutations in HNF1B in humans result in a multisystem disorder, including pancreatic hypoplasia and diabetes mellitus. Here we used a well-controlled human induced pluripotent stem cell pancreatic differentiation model to elucidate the molecular mechanisms underlying HNF1B-associated diabetes. Our results show that lack of HNF1B blocks specification of pancreatic fate from the foregut progenitor (FP) stage, but HNF1B haploinsufficiency allows differentiation of multipotent pancreatic progenitor cells (MPCs) and insulin-secreting β-like cells. We show that HNF1B haploinsufficiency impairs cell proliferation in FPs and MPCs. This could be attributed to impaired induction of key pancreatic developmental genes, including SOX11, ROBO2, and additional TEAD1 target genes whose function is associated with MPC self-renewal. In this work we uncover an exhaustive list of potential HNF1B gene targets during human pancreas organogenesis whose downregulation might underlie HNF1B-associated diabetes onset in humans, thus providing an important resource to understand the pathogenesis of this disease. Elsevier 2021-08-26 /pmc/articles/PMC8452540/ /pubmed/34450036 http://dx.doi.org/10.1016/j.stemcr.2021.07.018 Text en © 2021 The Authors https://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
El-Khairi, Ranna
Olszanowski, Evelyn
Muraro, Daniele
Madrigal, Pedro
Tilgner, Katarzyna
Chhatriwala, Mariya
Vyas, Sapna
Chia, Crystal Y.
Vallier, Ludovic
Rodríguez-Seguí, Santiago A.
Modeling HNF1B-associated monogenic diabetes using human iPSCs reveals an early stage impairment of the pancreatic developmental program
title Modeling HNF1B-associated monogenic diabetes using human iPSCs reveals an early stage impairment of the pancreatic developmental program
title_full Modeling HNF1B-associated monogenic diabetes using human iPSCs reveals an early stage impairment of the pancreatic developmental program
title_fullStr Modeling HNF1B-associated monogenic diabetes using human iPSCs reveals an early stage impairment of the pancreatic developmental program
title_full_unstemmed Modeling HNF1B-associated monogenic diabetes using human iPSCs reveals an early stage impairment of the pancreatic developmental program
title_short Modeling HNF1B-associated monogenic diabetes using human iPSCs reveals an early stage impairment of the pancreatic developmental program
title_sort modeling hnf1b-associated monogenic diabetes using human ipscs reveals an early stage impairment of the pancreatic developmental program
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8452540/
https://www.ncbi.nlm.nih.gov/pubmed/34450036
http://dx.doi.org/10.1016/j.stemcr.2021.07.018
work_keys_str_mv AT elkhairiranna modelinghnf1bassociatedmonogenicdiabetesusinghumanipscsrevealsanearlystageimpairmentofthepancreaticdevelopmentalprogram
AT olszanowskievelyn modelinghnf1bassociatedmonogenicdiabetesusinghumanipscsrevealsanearlystageimpairmentofthepancreaticdevelopmentalprogram
AT murarodaniele modelinghnf1bassociatedmonogenicdiabetesusinghumanipscsrevealsanearlystageimpairmentofthepancreaticdevelopmentalprogram
AT madrigalpedro modelinghnf1bassociatedmonogenicdiabetesusinghumanipscsrevealsanearlystageimpairmentofthepancreaticdevelopmentalprogram
AT tilgnerkatarzyna modelinghnf1bassociatedmonogenicdiabetesusinghumanipscsrevealsanearlystageimpairmentofthepancreaticdevelopmentalprogram
AT chhatriwalamariya modelinghnf1bassociatedmonogenicdiabetesusinghumanipscsrevealsanearlystageimpairmentofthepancreaticdevelopmentalprogram
AT vyassapna modelinghnf1bassociatedmonogenicdiabetesusinghumanipscsrevealsanearlystageimpairmentofthepancreaticdevelopmentalprogram
AT chiacrystaly modelinghnf1bassociatedmonogenicdiabetesusinghumanipscsrevealsanearlystageimpairmentofthepancreaticdevelopmentalprogram
AT vallierludovic modelinghnf1bassociatedmonogenicdiabetesusinghumanipscsrevealsanearlystageimpairmentofthepancreaticdevelopmentalprogram
AT rodriguezseguisantiagoa modelinghnf1bassociatedmonogenicdiabetesusinghumanipscsrevealsanearlystageimpairmentofthepancreaticdevelopmentalprogram