Expression of mutant mRNA and protein in pancreatic cells derived from MODY3- iPS cells.

Maturity-onset diabetes of the young (MODY) is a heterozygous monogenic diabetes; more than 14 disease genes have been identified. However, the pathogenesis of MODY is not fully understood because the patients' pancreatic beta cells are inaccessible. To elucidate the pathology of MODY, we estab...

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Main Authors: Shigeharu G Yabe, Junko Nishida, Satsuki Fukuda, Fujie Takeda, Kiyoko Nasiro, Kazuki Yasuda, Naoko Iwasaki, Hitoshi Okochi
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2019-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0217110
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spelling doaj-7a4ce2c7caaa4c518abc84673088aaa02021-03-03T20:39:20ZengPublic Library of Science (PLoS)PLoS ONE1932-62032019-01-01145e021711010.1371/journal.pone.0217110Expression of mutant mRNA and protein in pancreatic cells derived from MODY3- iPS cells.Shigeharu G YabeJunko NishidaSatsuki FukudaFujie TakedaKiyoko NasiroKazuki YasudaNaoko IwasakiHitoshi OkochiMaturity-onset diabetes of the young (MODY) is a heterozygous monogenic diabetes; more than 14 disease genes have been identified. However, the pathogenesis of MODY is not fully understood because the patients' pancreatic beta cells are inaccessible. To elucidate the pathology of MODY, we established MODY3 patient-derived iPS (MODY3-iPS) cells using non-integrating Sendai virus (SeV) vector and examined the mutant mRNA and protein of HNF1A (Hepatocyte Nuclear factor 1A) after pancreatic lineage differentiation. Our patient had a cytosine insertion in the HNF1A gene (P291fsinsC) causing frameshift and making a premature termination codon (PTC). We confirmed these MODY3-iPS cells possessed the characteristics of pluripotent stem cells. After we differentiated them into pancreatic beta cells, transcripts of HNF1A gene were cloned and sequenced. We found that P291fsinsC mutant transcripts were much less frequent than wild ones, but they increased after adding cycloheximide (CHX) to the medium. These results suggested that mutant mRNA was destroyed by nonsense-mediated mRNA decay (NMD). Moreover, we were not able to detect any band of mutant proteins in pancreatic lineage cells which were differentiated from MODY3-iPSCs by western blot (WB) analysis. A scarcity of the truncated form of mutant protein may indicate that MODY3 might be caused by a haplo-insufficiency effect rather than a dominant negative manner.https://doi.org/10.1371/journal.pone.0217110
collection DOAJ
language English
format Article
sources DOAJ
author Shigeharu G Yabe
Junko Nishida
Satsuki Fukuda
Fujie Takeda
Kiyoko Nasiro
Kazuki Yasuda
Naoko Iwasaki
Hitoshi Okochi
spellingShingle Shigeharu G Yabe
Junko Nishida
Satsuki Fukuda
Fujie Takeda
Kiyoko Nasiro
Kazuki Yasuda
Naoko Iwasaki
Hitoshi Okochi
Expression of mutant mRNA and protein in pancreatic cells derived from MODY3- iPS cells.
PLoS ONE
author_facet Shigeharu G Yabe
Junko Nishida
Satsuki Fukuda
Fujie Takeda
Kiyoko Nasiro
Kazuki Yasuda
Naoko Iwasaki
Hitoshi Okochi
author_sort Shigeharu G Yabe
title Expression of mutant mRNA and protein in pancreatic cells derived from MODY3- iPS cells.
title_short Expression of mutant mRNA and protein in pancreatic cells derived from MODY3- iPS cells.
title_full Expression of mutant mRNA and protein in pancreatic cells derived from MODY3- iPS cells.
title_fullStr Expression of mutant mRNA and protein in pancreatic cells derived from MODY3- iPS cells.
title_full_unstemmed Expression of mutant mRNA and protein in pancreatic cells derived from MODY3- iPS cells.
title_sort expression of mutant mrna and protein in pancreatic cells derived from mody3- ips cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2019-01-01
description Maturity-onset diabetes of the young (MODY) is a heterozygous monogenic diabetes; more than 14 disease genes have been identified. However, the pathogenesis of MODY is not fully understood because the patients' pancreatic beta cells are inaccessible. To elucidate the pathology of MODY, we established MODY3 patient-derived iPS (MODY3-iPS) cells using non-integrating Sendai virus (SeV) vector and examined the mutant mRNA and protein of HNF1A (Hepatocyte Nuclear factor 1A) after pancreatic lineage differentiation. Our patient had a cytosine insertion in the HNF1A gene (P291fsinsC) causing frameshift and making a premature termination codon (PTC). We confirmed these MODY3-iPS cells possessed the characteristics of pluripotent stem cells. After we differentiated them into pancreatic beta cells, transcripts of HNF1A gene were cloned and sequenced. We found that P291fsinsC mutant transcripts were much less frequent than wild ones, but they increased after adding cycloheximide (CHX) to the medium. These results suggested that mutant mRNA was destroyed by nonsense-mediated mRNA decay (NMD). Moreover, we were not able to detect any band of mutant proteins in pancreatic lineage cells which were differentiated from MODY3-iPSCs by western blot (WB) analysis. A scarcity of the truncated form of mutant protein may indicate that MODY3 might be caused by a haplo-insufficiency effect rather than a dominant negative manner.
url https://doi.org/10.1371/journal.pone.0217110
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