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EpiCRISPR targeted methylation of Arx gene initiates transient switch of mouse pancreatic alpha to insulin-producing cells

INTRODUCTION: Beta cell dysfunction by loss of beta cell identity, dedifferentiation, and the presence of polyhormonal cells are main characteristics of diabetes. The straightforward strategy for curing diabetes implies reestablishment of pancreatic beta cell function by beta cell replacement therap...

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Autores principales: Đorđević, Marija, Stepper, Peter, Feuerstein-Akgoz, Clarissa, Gerhauser, Clarissa, Paunović, Verica, Tolić, Anja, Rajić, Jovana, Dinić, Svetlana, Uskoković, Aleksandra, Grdović, Nevena, Mihailović, Mirjana, Jurkowska, Renata Z., Jurkowski, Tomasz P., Jovanović, Jelena Arambašić, Vidaković, Melita
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10063207/
https://www.ncbi.nlm.nih.gov/pubmed/37008919
http://dx.doi.org/10.3389/fendo.2023.1134478
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author Đorđević, Marija
Stepper, Peter
Feuerstein-Akgoz, Clarissa
Gerhauser, Clarissa
Paunović, Verica
Tolić, Anja
Rajić, Jovana
Dinić, Svetlana
Uskoković, Aleksandra
Grdović, Nevena
Mihailović, Mirjana
Jurkowska, Renata Z.
Jurkowski, Tomasz P.
Jovanović, Jelena Arambašić
Vidaković, Melita
author_facet Đorđević, Marija
Stepper, Peter
Feuerstein-Akgoz, Clarissa
Gerhauser, Clarissa
Paunović, Verica
Tolić, Anja
Rajić, Jovana
Dinić, Svetlana
Uskoković, Aleksandra
Grdović, Nevena
Mihailović, Mirjana
Jurkowska, Renata Z.
Jurkowski, Tomasz P.
Jovanović, Jelena Arambašić
Vidaković, Melita
author_sort Đorđević, Marija
collection PubMed
description INTRODUCTION: Beta cell dysfunction by loss of beta cell identity, dedifferentiation, and the presence of polyhormonal cells are main characteristics of diabetes. The straightforward strategy for curing diabetes implies reestablishment of pancreatic beta cell function by beta cell replacement therapy. Aristaless-related homeobox (Arx) gene encodes protein which plays an important role in the development of pancreatic alpha cells and is a main target for changing alpha cell identity. RESULTS: In this study we used CRISPR/dCas9-based epigenetic tools for targeted hypermethylation of Arx gene promoter and its subsequent suppression in mouse pancreatic αTC1-6 cell line. Bisulfite sequencing and methylation profiling revealed that the dCas9-Dnmt3a3L-KRAB single chain fusion constructs (EpiCRISPR) was the most efficient. Epigenetic silencing of Arx expression was accompanied by an increase in transcription of the insulin gene (Ins2) mRNA on 5(th) and 7(th) post-transfection day, quantified by both RT-qPCR and RNA-seq. Insulin production and secretion was determined by immunocytochemistry and ELISA assay, respectively. Eventually, we were able to induce switch of approximately 1% of transiently transfected cells which were able to produce 35% more insulin than Mock transfected alpha cells. CONCLUSION: In conclusion, we successfully triggered a direct, transient switch of pancreatic alpha to insulin-producing cells opening a future research on promising therapeutic avenue for diabetes management.
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spelling pubmed-100632072023-03-31 EpiCRISPR targeted methylation of Arx gene initiates transient switch of mouse pancreatic alpha to insulin-producing cells Đorđević, Marija Stepper, Peter Feuerstein-Akgoz, Clarissa Gerhauser, Clarissa Paunović, Verica Tolić, Anja Rajić, Jovana Dinić, Svetlana Uskoković, Aleksandra Grdović, Nevena Mihailović, Mirjana Jurkowska, Renata Z. Jurkowski, Tomasz P. Jovanović, Jelena Arambašić Vidaković, Melita Front Endocrinol (Lausanne) Endocrinology INTRODUCTION: Beta cell dysfunction by loss of beta cell identity, dedifferentiation, and the presence of polyhormonal cells are main characteristics of diabetes. The straightforward strategy for curing diabetes implies reestablishment of pancreatic beta cell function by beta cell replacement therapy. Aristaless-related homeobox (Arx) gene encodes protein which plays an important role in the development of pancreatic alpha cells and is a main target for changing alpha cell identity. RESULTS: In this study we used CRISPR/dCas9-based epigenetic tools for targeted hypermethylation of Arx gene promoter and its subsequent suppression in mouse pancreatic αTC1-6 cell line. Bisulfite sequencing and methylation profiling revealed that the dCas9-Dnmt3a3L-KRAB single chain fusion constructs (EpiCRISPR) was the most efficient. Epigenetic silencing of Arx expression was accompanied by an increase in transcription of the insulin gene (Ins2) mRNA on 5(th) and 7(th) post-transfection day, quantified by both RT-qPCR and RNA-seq. Insulin production and secretion was determined by immunocytochemistry and ELISA assay, respectively. Eventually, we were able to induce switch of approximately 1% of transiently transfected cells which were able to produce 35% more insulin than Mock transfected alpha cells. CONCLUSION: In conclusion, we successfully triggered a direct, transient switch of pancreatic alpha to insulin-producing cells opening a future research on promising therapeutic avenue for diabetes management. Frontiers Media S.A. 2023-03-16 /pmc/articles/PMC10063207/ /pubmed/37008919 http://dx.doi.org/10.3389/fendo.2023.1134478 Text en Copyright © 2023 Đorđević, Stepper, Feuerstein-Akgoz, Gerhauser, Paunović, Tolić, Rajić, Dinić, Uskoković, Grdović, Mihailović, Jurkowska, Jurkowski, Jovanović and Vidaković https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Endocrinology
Đorđević, Marija
Stepper, Peter
Feuerstein-Akgoz, Clarissa
Gerhauser, Clarissa
Paunović, Verica
Tolić, Anja
Rajić, Jovana
Dinić, Svetlana
Uskoković, Aleksandra
Grdović, Nevena
Mihailović, Mirjana
Jurkowska, Renata Z.
Jurkowski, Tomasz P.
Jovanović, Jelena Arambašić
Vidaković, Melita
EpiCRISPR targeted methylation of Arx gene initiates transient switch of mouse pancreatic alpha to insulin-producing cells
title EpiCRISPR targeted methylation of Arx gene initiates transient switch of mouse pancreatic alpha to insulin-producing cells
title_full EpiCRISPR targeted methylation of Arx gene initiates transient switch of mouse pancreatic alpha to insulin-producing cells
title_fullStr EpiCRISPR targeted methylation of Arx gene initiates transient switch of mouse pancreatic alpha to insulin-producing cells
title_full_unstemmed EpiCRISPR targeted methylation of Arx gene initiates transient switch of mouse pancreatic alpha to insulin-producing cells
title_short EpiCRISPR targeted methylation of Arx gene initiates transient switch of mouse pancreatic alpha to insulin-producing cells
title_sort epicrispr targeted methylation of arx gene initiates transient switch of mouse pancreatic alpha to insulin-producing cells
topic Endocrinology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10063207/
https://www.ncbi.nlm.nih.gov/pubmed/37008919
http://dx.doi.org/10.3389/fendo.2023.1134478
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