Cargando…

Expression of wild‐type and mutant S20G hIAPP in physiologic knock‐in mouse models fails to induce islet amyloid formation, but induces mild glucose intolerance

Aims/Introduction:  Human islet polypeptide S20G mutation (hIAPP(S20G)) is associated with earlier onset type 2 diabetes and increased amyloidogenicity and cytotoxicity in vitro vs wild‐type hIAPP (hIAPP(WT)), suggesting that amyloidogenesis may be pathogenic for type 2 diabetes. We compared the con...

Descripción completa

Detalles Bibliográficos
Autores principales: Hiddinga, Henry J, Sakagashira, Setsuya, Ishigame, Masayuki, Madde, Pranathi, Sanke, Tokio, Nanjo, Kishio, Kudva, Yogish C, Lee, James J, van Deursen, Jan, Eberhardt, Norman L
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4020731/
https://www.ncbi.nlm.nih.gov/pubmed/24843557
http://dx.doi.org/10.1111/j.2040-1124.2011.00166.x
_version_ 1782316112945348608
author Hiddinga, Henry J
Sakagashira, Setsuya
Ishigame, Masayuki
Madde, Pranathi
Sanke, Tokio
Nanjo, Kishio
Kudva, Yogish C
Lee, James J
van Deursen, Jan
Eberhardt, Norman L
author_facet Hiddinga, Henry J
Sakagashira, Setsuya
Ishigame, Masayuki
Madde, Pranathi
Sanke, Tokio
Nanjo, Kishio
Kudva, Yogish C
Lee, James J
van Deursen, Jan
Eberhardt, Norman L
author_sort Hiddinga, Henry J
collection PubMed
description Aims/Introduction:  Human islet polypeptide S20G mutation (hIAPP(S20G)) is associated with earlier onset type 2 diabetes and increased amyloidogenicity and cytotoxicity in vitro vs wild‐type hIAPP (hIAPP(WT)), suggesting that amyloidogenesis may be pathogenic for type 2 diabetes. We compared the contributions of hIAPP(S20G) and hIAPP(WT) toward intra islet amyloid formation and development of type 2 diabetes in a unique physiologic knock‐in mouse model. Materials and Methods:  We replaced the mouse IAPP gene (M allele) with hIAPP(WT) (W allele) and hIAPP(S20G) (G allele) via homologous recombination and backbred transgenic mice against C57Bl/6 strain 5 generations to minimize genetic variation. Mice (3 month old) were maintained on control (CD) or high fat diet (HFD) for 15 months and studied at 3 month intervals by oral glucose tolerance testing (OGTT) and pancreas histology to assess glucose homeostastis, amyloidogeneisis, islet mass, β cell replication, and apoptosis. Results:  IAPP blood levels were indistinguishable in all mice. WW and GW mice maintained on both diets lacked intraislet amyloid at all ages. On both diets relative to MM controls WW and GW mice exhibit glucose intolerance (P < 0.008) with no differences in insulin secretion. However, GW mice secreted significantly more insulin (P < 0.03 that WW mice on both diets throughout the study. By 12 months on the high fat diet all mice increased their β cell mass about 3‐fold and were indistinguishable. Conclusions:  Physiologic expression of hIAPP(WT) and hIAPP(S20G) in C57Bl/6 mice produces mild glucose intolerance with inappropriately normal insulin secretion that is independent of intraislet amyloid formation. (J Diabetes Invest, doi: 10.1111/j.2040‐1124.2011.00166.x, 2011)
format Online
Article
Text
id pubmed-4020731
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Blackwell Publishing Ltd
record_format MEDLINE/PubMed
spelling pubmed-40207312014-05-19 Expression of wild‐type and mutant S20G hIAPP in physiologic knock‐in mouse models fails to induce islet amyloid formation, but induces mild glucose intolerance Hiddinga, Henry J Sakagashira, Setsuya Ishigame, Masayuki Madde, Pranathi Sanke, Tokio Nanjo, Kishio Kudva, Yogish C Lee, James J van Deursen, Jan Eberhardt, Norman L J Diabetes Investig Articles Aims/Introduction:  Human islet polypeptide S20G mutation (hIAPP(S20G)) is associated with earlier onset type 2 diabetes and increased amyloidogenicity and cytotoxicity in vitro vs wild‐type hIAPP (hIAPP(WT)), suggesting that amyloidogenesis may be pathogenic for type 2 diabetes. We compared the contributions of hIAPP(S20G) and hIAPP(WT) toward intra islet amyloid formation and development of type 2 diabetes in a unique physiologic knock‐in mouse model. Materials and Methods:  We replaced the mouse IAPP gene (M allele) with hIAPP(WT) (W allele) and hIAPP(S20G) (G allele) via homologous recombination and backbred transgenic mice against C57Bl/6 strain 5 generations to minimize genetic variation. Mice (3 month old) were maintained on control (CD) or high fat diet (HFD) for 15 months and studied at 3 month intervals by oral glucose tolerance testing (OGTT) and pancreas histology to assess glucose homeostastis, amyloidogeneisis, islet mass, β cell replication, and apoptosis. Results:  IAPP blood levels were indistinguishable in all mice. WW and GW mice maintained on both diets lacked intraislet amyloid at all ages. On both diets relative to MM controls WW and GW mice exhibit glucose intolerance (P < 0.008) with no differences in insulin secretion. However, GW mice secreted significantly more insulin (P < 0.03 that WW mice on both diets throughout the study. By 12 months on the high fat diet all mice increased their β cell mass about 3‐fold and were indistinguishable. Conclusions:  Physiologic expression of hIAPP(WT) and hIAPP(S20G) in C57Bl/6 mice produces mild glucose intolerance with inappropriately normal insulin secretion that is independent of intraislet amyloid formation. (J Diabetes Invest, doi: 10.1111/j.2040‐1124.2011.00166.x, 2011) Blackwell Publishing Ltd 2011-10-11 2012-03-28 /pmc/articles/PMC4020731/ /pubmed/24843557 http://dx.doi.org/10.1111/j.2040-1124.2011.00166.x Text en © 2011 Asian Association for the Study of Diabetes and Blackwell Publishing Asia Pty Ltd
spellingShingle Articles
Hiddinga, Henry J
Sakagashira, Setsuya
Ishigame, Masayuki
Madde, Pranathi
Sanke, Tokio
Nanjo, Kishio
Kudva, Yogish C
Lee, James J
van Deursen, Jan
Eberhardt, Norman L
Expression of wild‐type and mutant S20G hIAPP in physiologic knock‐in mouse models fails to induce islet amyloid formation, but induces mild glucose intolerance
title Expression of wild‐type and mutant S20G hIAPP in physiologic knock‐in mouse models fails to induce islet amyloid formation, but induces mild glucose intolerance
title_full Expression of wild‐type and mutant S20G hIAPP in physiologic knock‐in mouse models fails to induce islet amyloid formation, but induces mild glucose intolerance
title_fullStr Expression of wild‐type and mutant S20G hIAPP in physiologic knock‐in mouse models fails to induce islet amyloid formation, but induces mild glucose intolerance
title_full_unstemmed Expression of wild‐type and mutant S20G hIAPP in physiologic knock‐in mouse models fails to induce islet amyloid formation, but induces mild glucose intolerance
title_short Expression of wild‐type and mutant S20G hIAPP in physiologic knock‐in mouse models fails to induce islet amyloid formation, but induces mild glucose intolerance
title_sort expression of wild‐type and mutant s20g hiapp in physiologic knock‐in mouse models fails to induce islet amyloid formation, but induces mild glucose intolerance
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4020731/
https://www.ncbi.nlm.nih.gov/pubmed/24843557
http://dx.doi.org/10.1111/j.2040-1124.2011.00166.x
work_keys_str_mv AT hiddingahenryj expressionofwildtypeandmutants20ghiappinphysiologicknockinmousemodelsfailstoinduceisletamyloidformationbutinducesmildglucoseintolerance
AT sakagashirasetsuya expressionofwildtypeandmutants20ghiappinphysiologicknockinmousemodelsfailstoinduceisletamyloidformationbutinducesmildglucoseintolerance
AT ishigamemasayuki expressionofwildtypeandmutants20ghiappinphysiologicknockinmousemodelsfailstoinduceisletamyloidformationbutinducesmildglucoseintolerance
AT maddepranathi expressionofwildtypeandmutants20ghiappinphysiologicknockinmousemodelsfailstoinduceisletamyloidformationbutinducesmildglucoseintolerance
AT sanketokio expressionofwildtypeandmutants20ghiappinphysiologicknockinmousemodelsfailstoinduceisletamyloidformationbutinducesmildglucoseintolerance
AT nanjokishio expressionofwildtypeandmutants20ghiappinphysiologicknockinmousemodelsfailstoinduceisletamyloidformationbutinducesmildglucoseintolerance
AT kudvayogishc expressionofwildtypeandmutants20ghiappinphysiologicknockinmousemodelsfailstoinduceisletamyloidformationbutinducesmildglucoseintolerance
AT leejamesj expressionofwildtypeandmutants20ghiappinphysiologicknockinmousemodelsfailstoinduceisletamyloidformationbutinducesmildglucoseintolerance
AT vandeursenjan expressionofwildtypeandmutants20ghiappinphysiologicknockinmousemodelsfailstoinduceisletamyloidformationbutinducesmildglucoseintolerance
AT eberhardtnormanl expressionofwildtypeandmutants20ghiappinphysiologicknockinmousemodelsfailstoinduceisletamyloidformationbutinducesmildglucoseintolerance