Cargando…

Altered Insulin Receptor Signalling and β-Cell Cycle Dynamics in Type 2 Diabetes Mellitus

Insulin resistance, reduced β-cell mass, and hyperglucagonemia are consistent features in type 2 diabetes mellitus (T2DM). We used pancreas and islets from humans with T2DM to examine the regulation of insulin signaling and cell-cycle control of islet cells. We observed reduced β-cell mass and incre...

Descripción completa

Detalles Bibliográficos
Autores principales: Folli, Franco, Okada, Terumasa, Perego, Carla, Gunton, Jenny, Liew, Chong Wee, Akiyama, Masaru, D'Amico, Anna, La Rosa, Stefano, Placidi, Claudia, Lupi, Roberto, Marchetti, Piero, Sesti, Giorgio, Hellerstein, Marc, Perego, Lucia, Kulkarni, Rohit N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3227614/
https://www.ncbi.nlm.nih.gov/pubmed/22140505
http://dx.doi.org/10.1371/journal.pone.0028050
_version_ 1782217767995310080
author Folli, Franco
Okada, Terumasa
Perego, Carla
Gunton, Jenny
Liew, Chong Wee
Akiyama, Masaru
D'Amico, Anna
La Rosa, Stefano
Placidi, Claudia
Lupi, Roberto
Marchetti, Piero
Sesti, Giorgio
Hellerstein, Marc
Perego, Lucia
Kulkarni, Rohit N.
author_facet Folli, Franco
Okada, Terumasa
Perego, Carla
Gunton, Jenny
Liew, Chong Wee
Akiyama, Masaru
D'Amico, Anna
La Rosa, Stefano
Placidi, Claudia
Lupi, Roberto
Marchetti, Piero
Sesti, Giorgio
Hellerstein, Marc
Perego, Lucia
Kulkarni, Rohit N.
author_sort Folli, Franco
collection PubMed
description Insulin resistance, reduced β-cell mass, and hyperglucagonemia are consistent features in type 2 diabetes mellitus (T2DM). We used pancreas and islets from humans with T2DM to examine the regulation of insulin signaling and cell-cycle control of islet cells. We observed reduced β-cell mass and increased α-cell mass in the Type 2 diabetic pancreas. Confocal microscopy, real-time PCR and western blotting analyses revealed increased expression of PCNA and down-regulation of p27-Kip1 and altered expression of insulin receptors, insulin receptor substrate-2 and phosphorylated BAD. To investigate the mechanisms underlying these findings, we examined a mouse model of insulin resistance in β-cells – which also exhibits reduced β-cell mass, the β-cell-specific insulin receptor knockout (βIRKO). Freshly isolated islets and β-cell lines derived from βIRKO mice exhibited poor cell-cycle progression, nuclear restriction of FoxO1 and reduced expression of cell-cycle proteins favoring growth arrest. Re-expression of insulin receptors in βIRKO β-cells reversed the defects and promoted cell cycle progression and proliferation implying a role for insulin-signaling in β-cell growth. These data provide evidence that human β- and α-cells can enter the cell-cycle, but proliferation of β-cells in T2DM fails due to G1-to-S phase arrest secondary to defective insulin signaling. Activation of insulin signaling, FoxO1 and proteins in β-cell-cycle progression are attractive therapeutic targets to enhance β-cell regeneration in the treatment of T2DM.
format Online
Article
Text
id pubmed-3227614
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-32276142011-12-02 Altered Insulin Receptor Signalling and β-Cell Cycle Dynamics in Type 2 Diabetes Mellitus Folli, Franco Okada, Terumasa Perego, Carla Gunton, Jenny Liew, Chong Wee Akiyama, Masaru D'Amico, Anna La Rosa, Stefano Placidi, Claudia Lupi, Roberto Marchetti, Piero Sesti, Giorgio Hellerstein, Marc Perego, Lucia Kulkarni, Rohit N. PLoS One Research Article Insulin resistance, reduced β-cell mass, and hyperglucagonemia are consistent features in type 2 diabetes mellitus (T2DM). We used pancreas and islets from humans with T2DM to examine the regulation of insulin signaling and cell-cycle control of islet cells. We observed reduced β-cell mass and increased α-cell mass in the Type 2 diabetic pancreas. Confocal microscopy, real-time PCR and western blotting analyses revealed increased expression of PCNA and down-regulation of p27-Kip1 and altered expression of insulin receptors, insulin receptor substrate-2 and phosphorylated BAD. To investigate the mechanisms underlying these findings, we examined a mouse model of insulin resistance in β-cells – which also exhibits reduced β-cell mass, the β-cell-specific insulin receptor knockout (βIRKO). Freshly isolated islets and β-cell lines derived from βIRKO mice exhibited poor cell-cycle progression, nuclear restriction of FoxO1 and reduced expression of cell-cycle proteins favoring growth arrest. Re-expression of insulin receptors in βIRKO β-cells reversed the defects and promoted cell cycle progression and proliferation implying a role for insulin-signaling in β-cell growth. These data provide evidence that human β- and α-cells can enter the cell-cycle, but proliferation of β-cells in T2DM fails due to G1-to-S phase arrest secondary to defective insulin signaling. Activation of insulin signaling, FoxO1 and proteins in β-cell-cycle progression are attractive therapeutic targets to enhance β-cell regeneration in the treatment of T2DM. Public Library of Science 2011-11-30 /pmc/articles/PMC3227614/ /pubmed/22140505 http://dx.doi.org/10.1371/journal.pone.0028050 Text en Folli 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
Folli, Franco
Okada, Terumasa
Perego, Carla
Gunton, Jenny
Liew, Chong Wee
Akiyama, Masaru
D'Amico, Anna
La Rosa, Stefano
Placidi, Claudia
Lupi, Roberto
Marchetti, Piero
Sesti, Giorgio
Hellerstein, Marc
Perego, Lucia
Kulkarni, Rohit N.
Altered Insulin Receptor Signalling and β-Cell Cycle Dynamics in Type 2 Diabetes Mellitus
title Altered Insulin Receptor Signalling and β-Cell Cycle Dynamics in Type 2 Diabetes Mellitus
title_full Altered Insulin Receptor Signalling and β-Cell Cycle Dynamics in Type 2 Diabetes Mellitus
title_fullStr Altered Insulin Receptor Signalling and β-Cell Cycle Dynamics in Type 2 Diabetes Mellitus
title_full_unstemmed Altered Insulin Receptor Signalling and β-Cell Cycle Dynamics in Type 2 Diabetes Mellitus
title_short Altered Insulin Receptor Signalling and β-Cell Cycle Dynamics in Type 2 Diabetes Mellitus
title_sort altered insulin receptor signalling and β-cell cycle dynamics in type 2 diabetes mellitus
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3227614/
https://www.ncbi.nlm.nih.gov/pubmed/22140505
http://dx.doi.org/10.1371/journal.pone.0028050
work_keys_str_mv AT follifranco alteredinsulinreceptorsignallingandbcellcycledynamicsintype2diabetesmellitus
AT okadaterumasa alteredinsulinreceptorsignallingandbcellcycledynamicsintype2diabetesmellitus
AT peregocarla alteredinsulinreceptorsignallingandbcellcycledynamicsintype2diabetesmellitus
AT guntonjenny alteredinsulinreceptorsignallingandbcellcycledynamicsintype2diabetesmellitus
AT liewchongwee alteredinsulinreceptorsignallingandbcellcycledynamicsintype2diabetesmellitus
AT akiyamamasaru alteredinsulinreceptorsignallingandbcellcycledynamicsintype2diabetesmellitus
AT damicoanna alteredinsulinreceptorsignallingandbcellcycledynamicsintype2diabetesmellitus
AT larosastefano alteredinsulinreceptorsignallingandbcellcycledynamicsintype2diabetesmellitus
AT placidiclaudia alteredinsulinreceptorsignallingandbcellcycledynamicsintype2diabetesmellitus
AT lupiroberto alteredinsulinreceptorsignallingandbcellcycledynamicsintype2diabetesmellitus
AT marchettipiero alteredinsulinreceptorsignallingandbcellcycledynamicsintype2diabetesmellitus
AT sestigiorgio alteredinsulinreceptorsignallingandbcellcycledynamicsintype2diabetesmellitus
AT hellersteinmarc alteredinsulinreceptorsignallingandbcellcycledynamicsintype2diabetesmellitus
AT peregolucia alteredinsulinreceptorsignallingandbcellcycledynamicsintype2diabetesmellitus
AT kulkarnirohitn alteredinsulinreceptorsignallingandbcellcycledynamicsintype2diabetesmellitus