Cargando…

Genetic Associations of Type 2 Diabetes with Islet Amyloid Polypeptide Processing and Degrading Pathways in Asian Populations

Type 2 diabetes (T2D) is a complex disease characterized by beta cell dysfunctions. Islet amyloid polypeptide (IAPP) is highly conserved and co-secreted with insulin with over 40% of autopsy cases of T2D showing islet amyloid formation due to IAPP aggregation. Dysregulation in IAPP processing, stabi...

Descripción completa

Detalles Bibliográficos
Autores principales: Lam, Vincent Kwok Lim, Ma, Ronald Ching Wan, Lee, Heung Man, Hu, Cheng, Park, Kyong Soo, Furuta, Hiroto, Wang, Ying, Tam, Claudia Ha Ting, Sim, Xueling, Ng, Daniel Peng-Keat, Liu, Jianjun, Wong, Tien-Yin, Tai, E. Shyong, Morris, Andrew P., Tang, Nelson Leung Sang, Woo, Jean, Leung, Ping Chung, Kong, Alice Pik Shan, Ozaki, Risa, Jia, Wei Ping, Lee, Hong Kyu, Nanjo, Kishio, Xu, Gang, Ng, Maggie Chor Yin, So, Wing-Yee, Chan, Juliana Chung Ngor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3679113/
https://www.ncbi.nlm.nih.gov/pubmed/23776430
http://dx.doi.org/10.1371/journal.pone.0062378
_version_ 1782272955802189824
author Lam, Vincent Kwok Lim
Ma, Ronald Ching Wan
Lee, Heung Man
Hu, Cheng
Park, Kyong Soo
Furuta, Hiroto
Wang, Ying
Tam, Claudia Ha Ting
Sim, Xueling
Ng, Daniel Peng-Keat
Liu, Jianjun
Wong, Tien-Yin
Tai, E. Shyong
Morris, Andrew P.
Tang, Nelson Leung Sang
Woo, Jean
Leung, Ping Chung
Kong, Alice Pik Shan
Ozaki, Risa
Jia, Wei Ping
Lee, Hong Kyu
Nanjo, Kishio
Xu, Gang
Ng, Maggie Chor Yin
So, Wing-Yee
Chan, Juliana Chung Ngor
author_facet Lam, Vincent Kwok Lim
Ma, Ronald Ching Wan
Lee, Heung Man
Hu, Cheng
Park, Kyong Soo
Furuta, Hiroto
Wang, Ying
Tam, Claudia Ha Ting
Sim, Xueling
Ng, Daniel Peng-Keat
Liu, Jianjun
Wong, Tien-Yin
Tai, E. Shyong
Morris, Andrew P.
Tang, Nelson Leung Sang
Woo, Jean
Leung, Ping Chung
Kong, Alice Pik Shan
Ozaki, Risa
Jia, Wei Ping
Lee, Hong Kyu
Nanjo, Kishio
Xu, Gang
Ng, Maggie Chor Yin
So, Wing-Yee
Chan, Juliana Chung Ngor
author_sort Lam, Vincent Kwok Lim
collection PubMed
description Type 2 diabetes (T2D) is a complex disease characterized by beta cell dysfunctions. Islet amyloid polypeptide (IAPP) is highly conserved and co-secreted with insulin with over 40% of autopsy cases of T2D showing islet amyloid formation due to IAPP aggregation. Dysregulation in IAPP processing, stabilization and degradation can cause excessive oligomerization with beta cell toxicity. Previous studies examining genetic associations of pathways implicated in IAPP metabolism have yielded conflicting results due to small sample size, insufficient interrogation of gene structure and gene-gene interactions. In this multi-staged study, we screened 89 tag single nucleotide polymorphisms (SNPs) in 6 candidate genes implicated in IAPP metabolism and tested for independent and joint associations with T2D and beta cell dysfunctions. Positive signals in the stage-1 were confirmed by de novo and in silico analysis in a multi-centre unrelated case-control cohort. We examined the association of significant SNPs with quantitative traits in a subset of controls and performed bioinformatics and relevant functional analyses. Amongst the tag SNPs, rs1583645 in carboxypeptidase E (CPE) and rs6583813 in insulin degrading enzyme (IDE) were associated with 1.09 to 1.28 fold increased risk of T2D (P (Meta) = 9.4×10(−3) and 0.02 respectively) in a meta-analysis of East Asians. Using genetic risk scores (GRS) with each risk variant scoring 1, subjects with GRS≥3 (8.2% of the cohort) had 56% higher risk of T2D than those with GRS = 0 (P = 0.01). In a subcohort of control subjects, plasma IAPP increased and beta cell function index declined with GRS (P = 0.008 and 0.03 respectively). Bioinformatics and functional analyses of CPE rs1583645 predicted regulatory elements for chromatin modification and transcription factors, suggesting differential DNA-protein interactions and gene expression. Taken together, these results support the importance of dysregulation of IAPP metabolism in T2D in East Asians.
format Online
Article
Text
id pubmed-3679113
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-36791132013-06-17 Genetic Associations of Type 2 Diabetes with Islet Amyloid Polypeptide Processing and Degrading Pathways in Asian Populations Lam, Vincent Kwok Lim Ma, Ronald Ching Wan Lee, Heung Man Hu, Cheng Park, Kyong Soo Furuta, Hiroto Wang, Ying Tam, Claudia Ha Ting Sim, Xueling Ng, Daniel Peng-Keat Liu, Jianjun Wong, Tien-Yin Tai, E. Shyong Morris, Andrew P. Tang, Nelson Leung Sang Woo, Jean Leung, Ping Chung Kong, Alice Pik Shan Ozaki, Risa Jia, Wei Ping Lee, Hong Kyu Nanjo, Kishio Xu, Gang Ng, Maggie Chor Yin So, Wing-Yee Chan, Juliana Chung Ngor PLoS One Research Article Type 2 diabetes (T2D) is a complex disease characterized by beta cell dysfunctions. Islet amyloid polypeptide (IAPP) is highly conserved and co-secreted with insulin with over 40% of autopsy cases of T2D showing islet amyloid formation due to IAPP aggregation. Dysregulation in IAPP processing, stabilization and degradation can cause excessive oligomerization with beta cell toxicity. Previous studies examining genetic associations of pathways implicated in IAPP metabolism have yielded conflicting results due to small sample size, insufficient interrogation of gene structure and gene-gene interactions. In this multi-staged study, we screened 89 tag single nucleotide polymorphisms (SNPs) in 6 candidate genes implicated in IAPP metabolism and tested for independent and joint associations with T2D and beta cell dysfunctions. Positive signals in the stage-1 were confirmed by de novo and in silico analysis in a multi-centre unrelated case-control cohort. We examined the association of significant SNPs with quantitative traits in a subset of controls and performed bioinformatics and relevant functional analyses. Amongst the tag SNPs, rs1583645 in carboxypeptidase E (CPE) and rs6583813 in insulin degrading enzyme (IDE) were associated with 1.09 to 1.28 fold increased risk of T2D (P (Meta) = 9.4×10(−3) and 0.02 respectively) in a meta-analysis of East Asians. Using genetic risk scores (GRS) with each risk variant scoring 1, subjects with GRS≥3 (8.2% of the cohort) had 56% higher risk of T2D than those with GRS = 0 (P = 0.01). In a subcohort of control subjects, plasma IAPP increased and beta cell function index declined with GRS (P = 0.008 and 0.03 respectively). Bioinformatics and functional analyses of CPE rs1583645 predicted regulatory elements for chromatin modification and transcription factors, suggesting differential DNA-protein interactions and gene expression. Taken together, these results support the importance of dysregulation of IAPP metabolism in T2D in East Asians. Public Library of Science 2013-06-11 /pmc/articles/PMC3679113/ /pubmed/23776430 http://dx.doi.org/10.1371/journal.pone.0062378 Text en © 2013 Lam 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
Lam, Vincent Kwok Lim
Ma, Ronald Ching Wan
Lee, Heung Man
Hu, Cheng
Park, Kyong Soo
Furuta, Hiroto
Wang, Ying
Tam, Claudia Ha Ting
Sim, Xueling
Ng, Daniel Peng-Keat
Liu, Jianjun
Wong, Tien-Yin
Tai, E. Shyong
Morris, Andrew P.
Tang, Nelson Leung Sang
Woo, Jean
Leung, Ping Chung
Kong, Alice Pik Shan
Ozaki, Risa
Jia, Wei Ping
Lee, Hong Kyu
Nanjo, Kishio
Xu, Gang
Ng, Maggie Chor Yin
So, Wing-Yee
Chan, Juliana Chung Ngor
Genetic Associations of Type 2 Diabetes with Islet Amyloid Polypeptide Processing and Degrading Pathways in Asian Populations
title Genetic Associations of Type 2 Diabetes with Islet Amyloid Polypeptide Processing and Degrading Pathways in Asian Populations
title_full Genetic Associations of Type 2 Diabetes with Islet Amyloid Polypeptide Processing and Degrading Pathways in Asian Populations
title_fullStr Genetic Associations of Type 2 Diabetes with Islet Amyloid Polypeptide Processing and Degrading Pathways in Asian Populations
title_full_unstemmed Genetic Associations of Type 2 Diabetes with Islet Amyloid Polypeptide Processing and Degrading Pathways in Asian Populations
title_short Genetic Associations of Type 2 Diabetes with Islet Amyloid Polypeptide Processing and Degrading Pathways in Asian Populations
title_sort genetic associations of type 2 diabetes with islet amyloid polypeptide processing and degrading pathways in asian populations
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3679113/
https://www.ncbi.nlm.nih.gov/pubmed/23776430
http://dx.doi.org/10.1371/journal.pone.0062378
work_keys_str_mv AT lamvincentkwoklim geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT maronaldchingwan geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT leeheungman geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT hucheng geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT parkkyongsoo geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT furutahiroto geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT wangying geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT tamclaudiahating geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT simxueling geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT ngdanielpengkeat geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT liujianjun geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT wongtienyin geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT taieshyong geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT morrisandrewp geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT tangnelsonleungsang geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT woojean geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT leungpingchung geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT kongalicepikshan geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT ozakirisa geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT jiaweiping geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT leehongkyu geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT nanjokishio geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT xugang geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT ngmaggiechoryin geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT sowingyee geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations
AT chanjulianachungngor geneticassociationsoftype2diabeteswithisletamyloidpolypeptideprocessinganddegradingpathwaysinasianpopulations