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Proinsulin Atypical Maturation and Disposal Induces Extensive Defects in Mouse Ins2(+/Akita) β-Cells

Because of its low relative folding rate and plentiful manufacture in β-cells, proinsulin maintains a homeostatic balance of natively and plentiful non-natively folded states (i.e., proinsulin homeostasis, PIHO) through the integration of maturation and disposal processes. PIHO is susceptible to gen...

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Autores principales: Yuan, Qingxin, Tang, Wei, Zhang, Xiaoping, Hinson, Jack A., Liu, Chao, Osei, Kwame, Wang, Jie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3318013/
https://www.ncbi.nlm.nih.gov/pubmed/22509386
http://dx.doi.org/10.1371/journal.pone.0035098
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author Yuan, Qingxin
Tang, Wei
Zhang, Xiaoping
Hinson, Jack A.
Liu, Chao
Osei, Kwame
Wang, Jie
author_facet Yuan, Qingxin
Tang, Wei
Zhang, Xiaoping
Hinson, Jack A.
Liu, Chao
Osei, Kwame
Wang, Jie
author_sort Yuan, Qingxin
collection PubMed
description Because of its low relative folding rate and plentiful manufacture in β-cells, proinsulin maintains a homeostatic balance of natively and plentiful non-natively folded states (i.e., proinsulin homeostasis, PIHO) through the integration of maturation and disposal processes. PIHO is susceptible to genetic and environmental influences, and its disorder has been critically linked to defects in β-cells in diabetes. To explore this hypothesis, we performed polymerase chain reaction (PCR), metabolic-labeling, immunoblotting, and histological studies to clarify what defects result from primary disorder of PIHO in model Ins2(+/Akita) β-cells. We used T antigen-transformed Ins2(+/Akita) and control Ins2(+/+) β-cells established from Akita and wild-type littermate mice. In Ins2(+/Akita) β-cells, we found no apparent defect at the transcriptional and translational levels to contribute to reduced cellular content of insulin and its precursor and secreted insulin. Glucose response remained normal in proinsulin biosynthesis but was impaired for insulin secretion. The size and number of mature insulin granules were reduced, but the size/number of endoplasmic reticulum, Golgi, mitochondrion, and lysosome organelles and vacuoles were expanded/increased. Moreover, cell death increased, and severe oxidative stress, which manifested as increased reactive oxygen species, thioredoxin-interacting protein, and protein tyrosine nitration, occurred in Ins2(+/Akita) β-cells and/or islets. These data show the first clear evidence that primary PIHO imbalance induces severe oxidative stress and impairs glucose-stimulated insulin release and β-cell survival as well as producing other toxic consequences. The defects disclosed/clarified in model Ins2(+/Akita) β-cells further support a role of the genetic and stress-susceptible PIHO disorder in β-cell failure and diabetes.
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spelling pubmed-33180132012-04-16 Proinsulin Atypical Maturation and Disposal Induces Extensive Defects in Mouse Ins2(+/Akita) β-Cells Yuan, Qingxin Tang, Wei Zhang, Xiaoping Hinson, Jack A. Liu, Chao Osei, Kwame Wang, Jie PLoS One Research Article Because of its low relative folding rate and plentiful manufacture in β-cells, proinsulin maintains a homeostatic balance of natively and plentiful non-natively folded states (i.e., proinsulin homeostasis, PIHO) through the integration of maturation and disposal processes. PIHO is susceptible to genetic and environmental influences, and its disorder has been critically linked to defects in β-cells in diabetes. To explore this hypothesis, we performed polymerase chain reaction (PCR), metabolic-labeling, immunoblotting, and histological studies to clarify what defects result from primary disorder of PIHO in model Ins2(+/Akita) β-cells. We used T antigen-transformed Ins2(+/Akita) and control Ins2(+/+) β-cells established from Akita and wild-type littermate mice. In Ins2(+/Akita) β-cells, we found no apparent defect at the transcriptional and translational levels to contribute to reduced cellular content of insulin and its precursor and secreted insulin. Glucose response remained normal in proinsulin biosynthesis but was impaired for insulin secretion. The size and number of mature insulin granules were reduced, but the size/number of endoplasmic reticulum, Golgi, mitochondrion, and lysosome organelles and vacuoles were expanded/increased. Moreover, cell death increased, and severe oxidative stress, which manifested as increased reactive oxygen species, thioredoxin-interacting protein, and protein tyrosine nitration, occurred in Ins2(+/Akita) β-cells and/or islets. These data show the first clear evidence that primary PIHO imbalance induces severe oxidative stress and impairs glucose-stimulated insulin release and β-cell survival as well as producing other toxic consequences. The defects disclosed/clarified in model Ins2(+/Akita) β-cells further support a role of the genetic and stress-susceptible PIHO disorder in β-cell failure and diabetes. Public Library of Science 2012-04-03 /pmc/articles/PMC3318013/ /pubmed/22509386 http://dx.doi.org/10.1371/journal.pone.0035098 Text en Yuan et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Yuan, Qingxin
Tang, Wei
Zhang, Xiaoping
Hinson, Jack A.
Liu, Chao
Osei, Kwame
Wang, Jie
Proinsulin Atypical Maturation and Disposal Induces Extensive Defects in Mouse Ins2(+/Akita) β-Cells
title Proinsulin Atypical Maturation and Disposal Induces Extensive Defects in Mouse Ins2(+/Akita) β-Cells
title_full Proinsulin Atypical Maturation and Disposal Induces Extensive Defects in Mouse Ins2(+/Akita) β-Cells
title_fullStr Proinsulin Atypical Maturation and Disposal Induces Extensive Defects in Mouse Ins2(+/Akita) β-Cells
title_full_unstemmed Proinsulin Atypical Maturation and Disposal Induces Extensive Defects in Mouse Ins2(+/Akita) β-Cells
title_short Proinsulin Atypical Maturation and Disposal Induces Extensive Defects in Mouse Ins2(+/Akita) β-Cells
title_sort proinsulin atypical maturation and disposal induces extensive defects in mouse ins2(+/akita) β-cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3318013/
https://www.ncbi.nlm.nih.gov/pubmed/22509386
http://dx.doi.org/10.1371/journal.pone.0035098
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