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STAT3 modulates reprogramming efficiency of human somatic cells; insights from autosomal dominant Hyper IgE syndrome caused by STAT3 mutations

Human induced pluripotent stem cell (iPSC) technology has opened exciting opportunities for stem-cell-based therapy. However, its wide adoption is precluded by several challenges including low reprogramming efficiency and potential for malignant transformation. Better understanding of the molecular...

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Autores principales: Yu, Zhen, Dmitrieva, Natalia I., Walts, Avram D., Jin, Hui, Liu, Yangtengyu, Ping, Xianfeng, Ferrante, Elisa A., Qiu, Lugui, Holland, Steven M., Freeman, Alexandra F., Chen, Guibin, Boehm, Manfred
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7502598/
https://www.ncbi.nlm.nih.gov/pubmed/32580970
http://dx.doi.org/10.1242/bio.052662
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author Yu, Zhen
Dmitrieva, Natalia I.
Walts, Avram D.
Jin, Hui
Liu, Yangtengyu
Ping, Xianfeng
Ferrante, Elisa A.
Qiu, Lugui
Holland, Steven M.
Freeman, Alexandra F.
Chen, Guibin
Boehm, Manfred
author_facet Yu, Zhen
Dmitrieva, Natalia I.
Walts, Avram D.
Jin, Hui
Liu, Yangtengyu
Ping, Xianfeng
Ferrante, Elisa A.
Qiu, Lugui
Holland, Steven M.
Freeman, Alexandra F.
Chen, Guibin
Boehm, Manfred
author_sort Yu, Zhen
collection PubMed
description Human induced pluripotent stem cell (iPSC) technology has opened exciting opportunities for stem-cell-based therapy. However, its wide adoption is precluded by several challenges including low reprogramming efficiency and potential for malignant transformation. Better understanding of the molecular mechanisms of the changes that cells undergo during reprograming is needed to improve iPSCs generation efficiency and to increase confidence for their clinical use safety. Here, we find that dominant negative mutations in STAT3 in patients with autosomal-dominant hyper IgE (Job's) syndrome (AD-HIES) result in greatly reduced reprograming efficiency of primary skin fibroblasts derived from skin biopsies. Analysis of normal skin fibroblasts revealed upregulation and phosphorylation of endogenous signal transducer and activator of transcription 3 (STAT3) and its binding to the NANOG promoter following transduction with OKSM factors. This coincided with upregulation of NANOG and appearance of cells expressing pluripotency markers. Upregulation of NANOG and number of pluripotent cells were greatly reduced throughout the reprograming process of AD-HIES fibroblasts that was restored by over-expression of functional STAT3. NANOGP8, the human-specific NANOG retrogene that is often expressed in human cancers, was also induced during reprogramming, to very low but detectable levels, in a STAT3-dependent manner. Our study revealed the critical role of endogenous STAT3 in facilitating reprogramming of human somatic cells.
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spelling pubmed-75025982020-09-21 STAT3 modulates reprogramming efficiency of human somatic cells; insights from autosomal dominant Hyper IgE syndrome caused by STAT3 mutations Yu, Zhen Dmitrieva, Natalia I. Walts, Avram D. Jin, Hui Liu, Yangtengyu Ping, Xianfeng Ferrante, Elisa A. Qiu, Lugui Holland, Steven M. Freeman, Alexandra F. Chen, Guibin Boehm, Manfred Biol Open Research Article Human induced pluripotent stem cell (iPSC) technology has opened exciting opportunities for stem-cell-based therapy. However, its wide adoption is precluded by several challenges including low reprogramming efficiency and potential for malignant transformation. Better understanding of the molecular mechanisms of the changes that cells undergo during reprograming is needed to improve iPSCs generation efficiency and to increase confidence for their clinical use safety. Here, we find that dominant negative mutations in STAT3 in patients with autosomal-dominant hyper IgE (Job's) syndrome (AD-HIES) result in greatly reduced reprograming efficiency of primary skin fibroblasts derived from skin biopsies. Analysis of normal skin fibroblasts revealed upregulation and phosphorylation of endogenous signal transducer and activator of transcription 3 (STAT3) and its binding to the NANOG promoter following transduction with OKSM factors. This coincided with upregulation of NANOG and appearance of cells expressing pluripotency markers. Upregulation of NANOG and number of pluripotent cells were greatly reduced throughout the reprograming process of AD-HIES fibroblasts that was restored by over-expression of functional STAT3. NANOGP8, the human-specific NANOG retrogene that is often expressed in human cancers, was also induced during reprogramming, to very low but detectable levels, in a STAT3-dependent manner. Our study revealed the critical role of endogenous STAT3 in facilitating reprogramming of human somatic cells. The Company of Biologists Ltd 2020-09-10 /pmc/articles/PMC7502598/ /pubmed/32580970 http://dx.doi.org/10.1242/bio.052662 Text en © 2020. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/4.0This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Yu, Zhen
Dmitrieva, Natalia I.
Walts, Avram D.
Jin, Hui
Liu, Yangtengyu
Ping, Xianfeng
Ferrante, Elisa A.
Qiu, Lugui
Holland, Steven M.
Freeman, Alexandra F.
Chen, Guibin
Boehm, Manfred
STAT3 modulates reprogramming efficiency of human somatic cells; insights from autosomal dominant Hyper IgE syndrome caused by STAT3 mutations
title STAT3 modulates reprogramming efficiency of human somatic cells; insights from autosomal dominant Hyper IgE syndrome caused by STAT3 mutations
title_full STAT3 modulates reprogramming efficiency of human somatic cells; insights from autosomal dominant Hyper IgE syndrome caused by STAT3 mutations
title_fullStr STAT3 modulates reprogramming efficiency of human somatic cells; insights from autosomal dominant Hyper IgE syndrome caused by STAT3 mutations
title_full_unstemmed STAT3 modulates reprogramming efficiency of human somatic cells; insights from autosomal dominant Hyper IgE syndrome caused by STAT3 mutations
title_short STAT3 modulates reprogramming efficiency of human somatic cells; insights from autosomal dominant Hyper IgE syndrome caused by STAT3 mutations
title_sort stat3 modulates reprogramming efficiency of human somatic cells; insights from autosomal dominant hyper ige syndrome caused by stat3 mutations
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7502598/
https://www.ncbi.nlm.nih.gov/pubmed/32580970
http://dx.doi.org/10.1242/bio.052662
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