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Deregulation of CREB Signaling Pathway Induced by Chronic Hyperglycemia Downregulates NeuroD Transcription

CREB mediates the transcriptional effects of glucose and incretin hormones in insulin-target cells and insulin-producing β-cells. Although the inhibition of CREB activity is known to decrease the β-cell mass, it is still unknown what factors inversely alter the CREB signaling pathway in β-cells. Her...

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Autores principales: Cho, In-Su, Jung, Miyoung, Kwon, Ki-Sun, Moon, Eunpyo, Cho, Jang-Hyeon, Yoon, Kun-Ho, Kim, Ji-Won, Lee, Young-Don, Kim, Sung-Soo, Suh-Kim, Haeyoung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3318007/
https://www.ncbi.nlm.nih.gov/pubmed/22509362
http://dx.doi.org/10.1371/journal.pone.0034860
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author Cho, In-Su
Jung, Miyoung
Kwon, Ki-Sun
Moon, Eunpyo
Cho, Jang-Hyeon
Yoon, Kun-Ho
Kim, Ji-Won
Lee, Young-Don
Kim, Sung-Soo
Suh-Kim, Haeyoung
author_facet Cho, In-Su
Jung, Miyoung
Kwon, Ki-Sun
Moon, Eunpyo
Cho, Jang-Hyeon
Yoon, Kun-Ho
Kim, Ji-Won
Lee, Young-Don
Kim, Sung-Soo
Suh-Kim, Haeyoung
author_sort Cho, In-Su
collection PubMed
description CREB mediates the transcriptional effects of glucose and incretin hormones in insulin-target cells and insulin-producing β-cells. Although the inhibition of CREB activity is known to decrease the β-cell mass, it is still unknown what factors inversely alter the CREB signaling pathway in β-cells. Here, we show that β-cell dysfunctions occurring in chronic hyperglycemia are not caused by simple inhibition of CREB activity but rather by the persistent activation of CREB due to decreases in protein phophatase PP2A. When freshly isolated rat pancreatic islets were chronically exposed to 25 mM (high) glucose, the PP2A activity was reduced with a concomitant increase in active pCREB. Brief challenges with 15 mM glucose or 30 µM forskolin after 2 hour fasting further increased the level of pCREB and consequently induced the persistent expression of ICER. The excessively produced ICER was sufficient to repress the transcription of NeuroD, insulin, and SUR1 genes. In contrast, when islets were grown in 5 mM (low) glucose, CREB was transiently activated in response to glucose or forskolin stimuli. Thus, ICER expression was transient and insufficient to repress those target genes. Importantly, overexpression of PP2A reversed the adverse effects of chronic hyperglycemia and successfully restored the transient activation of CREB and ICER. Conversely, depletion of PP2A with siRNA was sufficient to disrupt the negative feedback regulation of CREB and induce hyperglycemic phenotypes even under low glucose conditions. Our findings suggest that the failure of the negative feedback regulation of CREB is the primary cause for β-cell dysfunctions under conditions of pathogenic hyperglycemia, and PP2A can be a novel target for future therapies aiming to protect β-cells mass in the late transitional phase of non-insulin dependent type 2 diabetes (NIDDM).
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spelling pubmed-33180072012-04-16 Deregulation of CREB Signaling Pathway Induced by Chronic Hyperglycemia Downregulates NeuroD Transcription Cho, In-Su Jung, Miyoung Kwon, Ki-Sun Moon, Eunpyo Cho, Jang-Hyeon Yoon, Kun-Ho Kim, Ji-Won Lee, Young-Don Kim, Sung-Soo Suh-Kim, Haeyoung PLoS One Research Article CREB mediates the transcriptional effects of glucose and incretin hormones in insulin-target cells and insulin-producing β-cells. Although the inhibition of CREB activity is known to decrease the β-cell mass, it is still unknown what factors inversely alter the CREB signaling pathway in β-cells. Here, we show that β-cell dysfunctions occurring in chronic hyperglycemia are not caused by simple inhibition of CREB activity but rather by the persistent activation of CREB due to decreases in protein phophatase PP2A. When freshly isolated rat pancreatic islets were chronically exposed to 25 mM (high) glucose, the PP2A activity was reduced with a concomitant increase in active pCREB. Brief challenges with 15 mM glucose or 30 µM forskolin after 2 hour fasting further increased the level of pCREB and consequently induced the persistent expression of ICER. The excessively produced ICER was sufficient to repress the transcription of NeuroD, insulin, and SUR1 genes. In contrast, when islets were grown in 5 mM (low) glucose, CREB was transiently activated in response to glucose or forskolin stimuli. Thus, ICER expression was transient and insufficient to repress those target genes. Importantly, overexpression of PP2A reversed the adverse effects of chronic hyperglycemia and successfully restored the transient activation of CREB and ICER. Conversely, depletion of PP2A with siRNA was sufficient to disrupt the negative feedback regulation of CREB and induce hyperglycemic phenotypes even under low glucose conditions. Our findings suggest that the failure of the negative feedback regulation of CREB is the primary cause for β-cell dysfunctions under conditions of pathogenic hyperglycemia, and PP2A can be a novel target for future therapies aiming to protect β-cells mass in the late transitional phase of non-insulin dependent type 2 diabetes (NIDDM). Public Library of Science 2012-04-03 /pmc/articles/PMC3318007/ /pubmed/22509362 http://dx.doi.org/10.1371/journal.pone.0034860 Text en Cho 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
Cho, In-Su
Jung, Miyoung
Kwon, Ki-Sun
Moon, Eunpyo
Cho, Jang-Hyeon
Yoon, Kun-Ho
Kim, Ji-Won
Lee, Young-Don
Kim, Sung-Soo
Suh-Kim, Haeyoung
Deregulation of CREB Signaling Pathway Induced by Chronic Hyperglycemia Downregulates NeuroD Transcription
title Deregulation of CREB Signaling Pathway Induced by Chronic Hyperglycemia Downregulates NeuroD Transcription
title_full Deregulation of CREB Signaling Pathway Induced by Chronic Hyperglycemia Downregulates NeuroD Transcription
title_fullStr Deregulation of CREB Signaling Pathway Induced by Chronic Hyperglycemia Downregulates NeuroD Transcription
title_full_unstemmed Deregulation of CREB Signaling Pathway Induced by Chronic Hyperglycemia Downregulates NeuroD Transcription
title_short Deregulation of CREB Signaling Pathway Induced by Chronic Hyperglycemia Downregulates NeuroD Transcription
title_sort deregulation of creb signaling pathway induced by chronic hyperglycemia downregulates neurod transcription
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3318007/
https://www.ncbi.nlm.nih.gov/pubmed/22509362
http://dx.doi.org/10.1371/journal.pone.0034860
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