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E96V Mutation in the Kdelr3 Gene Is Associated with Type 2 Diabetes Susceptibility in Obese NZO Mice

Type 2 diabetes (T2D) represents a multifactorial metabolic disease with a strong genetic predisposition. Despite elaborate efforts in identifying the genetic variants determining individual susceptibility towards T2D, the majority of genetic factors driving disease development remain poorly underst...

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Autores principales: Altenhofen, Delsi, Khuong, Jenny Minh-An, Kuhn, Tanja, Lebek, Sandra, Görigk, Sarah, Kaiser, Katharina, Binsch, Christian, Griess, Kerstin, Knebel, Birgit, Belgardt, Bengt-Frederik, Cames, Sandra, Eickelschulte, Samaneh, Stermann, Torben, Rasche, Axel, Herwig, Ralf, Weiss, Jürgen, Vogel, Heike, Schürmann, Annette, Chadt, Alexandra, Al-Hasani, Hadi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9820861/
https://www.ncbi.nlm.nih.gov/pubmed/36614300
http://dx.doi.org/10.3390/ijms24010845
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author Altenhofen, Delsi
Khuong, Jenny Minh-An
Kuhn, Tanja
Lebek, Sandra
Görigk, Sarah
Kaiser, Katharina
Binsch, Christian
Griess, Kerstin
Knebel, Birgit
Belgardt, Bengt-Frederik
Cames, Sandra
Eickelschulte, Samaneh
Stermann, Torben
Rasche, Axel
Herwig, Ralf
Weiss, Jürgen
Vogel, Heike
Schürmann, Annette
Chadt, Alexandra
Al-Hasani, Hadi
author_facet Altenhofen, Delsi
Khuong, Jenny Minh-An
Kuhn, Tanja
Lebek, Sandra
Görigk, Sarah
Kaiser, Katharina
Binsch, Christian
Griess, Kerstin
Knebel, Birgit
Belgardt, Bengt-Frederik
Cames, Sandra
Eickelschulte, Samaneh
Stermann, Torben
Rasche, Axel
Herwig, Ralf
Weiss, Jürgen
Vogel, Heike
Schürmann, Annette
Chadt, Alexandra
Al-Hasani, Hadi
author_sort Altenhofen, Delsi
collection PubMed
description Type 2 diabetes (T2D) represents a multifactorial metabolic disease with a strong genetic predisposition. Despite elaborate efforts in identifying the genetic variants determining individual susceptibility towards T2D, the majority of genetic factors driving disease development remain poorly understood. With the aim to identify novel T2D risk genes we previously generated an N2 outcross population using the two inbred mouse strains New Zealand obese (NZO) and C3HeB/FeJ (C3H). A linkage study performed in this population led to the identification of the novel T2D-associated quantitative trait locus (QTL) Nbg15 (NZO blood glucose on chromosome 15, Logarithm of odds (LOD) 6.6). In this study we used a combined approach of positional cloning, gene expression analyses and in silico predictions of DNA polymorphism on gene/protein function to dissect the genetic variants linking Nbg15 to the development of T2D. Moreover, we have generated congenic strains that associated the distal sublocus of Nbg15 to mechanisms altering pancreatic beta cell function. In this sublocus, Cbx6, Fam135b and Kdelr3 were nominated as potential causative genes associated with the Nbg15 driven effects. Moreover, a putative mutation in the Kdelr3 gene from NZO was identified, negatively influencing adaptive responses associated with pancreatic beta cell death and induction of endoplasmic reticulum stress. Importantly, knockdown of Kdelr3 in cultured Min6 beta cells altered insulin granules maturation and pro-insulin levels, pointing towards a crucial role of this gene in islets function and T2D susceptibility.
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spelling pubmed-98208612023-01-07 E96V Mutation in the Kdelr3 Gene Is Associated with Type 2 Diabetes Susceptibility in Obese NZO Mice Altenhofen, Delsi Khuong, Jenny Minh-An Kuhn, Tanja Lebek, Sandra Görigk, Sarah Kaiser, Katharina Binsch, Christian Griess, Kerstin Knebel, Birgit Belgardt, Bengt-Frederik Cames, Sandra Eickelschulte, Samaneh Stermann, Torben Rasche, Axel Herwig, Ralf Weiss, Jürgen Vogel, Heike Schürmann, Annette Chadt, Alexandra Al-Hasani, Hadi Int J Mol Sci Article Type 2 diabetes (T2D) represents a multifactorial metabolic disease with a strong genetic predisposition. Despite elaborate efforts in identifying the genetic variants determining individual susceptibility towards T2D, the majority of genetic factors driving disease development remain poorly understood. With the aim to identify novel T2D risk genes we previously generated an N2 outcross population using the two inbred mouse strains New Zealand obese (NZO) and C3HeB/FeJ (C3H). A linkage study performed in this population led to the identification of the novel T2D-associated quantitative trait locus (QTL) Nbg15 (NZO blood glucose on chromosome 15, Logarithm of odds (LOD) 6.6). In this study we used a combined approach of positional cloning, gene expression analyses and in silico predictions of DNA polymorphism on gene/protein function to dissect the genetic variants linking Nbg15 to the development of T2D. Moreover, we have generated congenic strains that associated the distal sublocus of Nbg15 to mechanisms altering pancreatic beta cell function. In this sublocus, Cbx6, Fam135b and Kdelr3 were nominated as potential causative genes associated with the Nbg15 driven effects. Moreover, a putative mutation in the Kdelr3 gene from NZO was identified, negatively influencing adaptive responses associated with pancreatic beta cell death and induction of endoplasmic reticulum stress. Importantly, knockdown of Kdelr3 in cultured Min6 beta cells altered insulin granules maturation and pro-insulin levels, pointing towards a crucial role of this gene in islets function and T2D susceptibility. MDPI 2023-01-03 /pmc/articles/PMC9820861/ /pubmed/36614300 http://dx.doi.org/10.3390/ijms24010845 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Altenhofen, Delsi
Khuong, Jenny Minh-An
Kuhn, Tanja
Lebek, Sandra
Görigk, Sarah
Kaiser, Katharina
Binsch, Christian
Griess, Kerstin
Knebel, Birgit
Belgardt, Bengt-Frederik
Cames, Sandra
Eickelschulte, Samaneh
Stermann, Torben
Rasche, Axel
Herwig, Ralf
Weiss, Jürgen
Vogel, Heike
Schürmann, Annette
Chadt, Alexandra
Al-Hasani, Hadi
E96V Mutation in the Kdelr3 Gene Is Associated with Type 2 Diabetes Susceptibility in Obese NZO Mice
title E96V Mutation in the Kdelr3 Gene Is Associated with Type 2 Diabetes Susceptibility in Obese NZO Mice
title_full E96V Mutation in the Kdelr3 Gene Is Associated with Type 2 Diabetes Susceptibility in Obese NZO Mice
title_fullStr E96V Mutation in the Kdelr3 Gene Is Associated with Type 2 Diabetes Susceptibility in Obese NZO Mice
title_full_unstemmed E96V Mutation in the Kdelr3 Gene Is Associated with Type 2 Diabetes Susceptibility in Obese NZO Mice
title_short E96V Mutation in the Kdelr3 Gene Is Associated with Type 2 Diabetes Susceptibility in Obese NZO Mice
title_sort e96v mutation in the kdelr3 gene is associated with type 2 diabetes susceptibility in obese nzo mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9820861/
https://www.ncbi.nlm.nih.gov/pubmed/36614300
http://dx.doi.org/10.3390/ijms24010845
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