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Deep Resequencing of 9 Candidate Genes Identifies a Role for ARAP1 and IGF2BP2 in Modulating Insulin Secretion Adjusted for Insulin Resistance in Obese Southern Europeans

Type 2 diabetes is characterized by impairment in insulin secretion, with an established genetic contribution. We aimed to evaluate common and low-frequency (1–5%) variants in nine genes strongly associated with insulin secretion by targeted sequencing in subjects selected from the extremes of insul...

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Autores principales: Bailetti, Diego, Sentinelli, Federica, Prudente, Sabrina, Cimini, Flavia Agata, Barchetta, Ilaria, Totaro, Maria, Di Costanzo, Alessia, Barbonetti, Arcangelo, Leonetti, Frida, Cavallo, Maria Gisella, Baroni, Marco Giorgio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8835579/
https://www.ncbi.nlm.nih.gov/pubmed/35163144
http://dx.doi.org/10.3390/ijms23031221
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author Bailetti, Diego
Sentinelli, Federica
Prudente, Sabrina
Cimini, Flavia Agata
Barchetta, Ilaria
Totaro, Maria
Di Costanzo, Alessia
Barbonetti, Arcangelo
Leonetti, Frida
Cavallo, Maria Gisella
Baroni, Marco Giorgio
author_facet Bailetti, Diego
Sentinelli, Federica
Prudente, Sabrina
Cimini, Flavia Agata
Barchetta, Ilaria
Totaro, Maria
Di Costanzo, Alessia
Barbonetti, Arcangelo
Leonetti, Frida
Cavallo, Maria Gisella
Baroni, Marco Giorgio
author_sort Bailetti, Diego
collection PubMed
description Type 2 diabetes is characterized by impairment in insulin secretion, with an established genetic contribution. We aimed to evaluate common and low-frequency (1–5%) variants in nine genes strongly associated with insulin secretion by targeted sequencing in subjects selected from the extremes of insulin release measured by the disposition index. Collapsing data by gene and/or function, the association between disposition index and nonsense variants were significant, also after adjustment for confounding factors (OR = 0.25, 95% CI = 0.11–0.59, p = 0.001). Evaluating variants individually, three novel variants in ARAP1, IGF2BP2 and GCK, out of eight reaching significance singularly, remained associated after adjustment. Constructing a genetic risk model combining the effects of the three variants, only carriers of the ARAP1 and IGF2BP2 variants were significantly associated with a reduced probability to be in the lower, worst, extreme of insulin secretion (OR = 0.223, 95% CI = 0.105–0.473, p < 0.001). Observing a high number of normal glucose tolerance between carriers, a regression posthoc analysis was performed. Carriers of genetic risk model variants had higher probability to be normoglycemic, also after adjustment (OR = 2.411, 95% CI = 1.136–5.116, p = 0.022). Thus, in our southern European cohort, nonsense variants in all nine candidate genes showed association with better insulin secretion adjusted for insulin resistance, and we established the role of ARAP1 and IGF2BP2 in modulating insulin secretion.
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spelling pubmed-88355792022-02-12 Deep Resequencing of 9 Candidate Genes Identifies a Role for ARAP1 and IGF2BP2 in Modulating Insulin Secretion Adjusted for Insulin Resistance in Obese Southern Europeans Bailetti, Diego Sentinelli, Federica Prudente, Sabrina Cimini, Flavia Agata Barchetta, Ilaria Totaro, Maria Di Costanzo, Alessia Barbonetti, Arcangelo Leonetti, Frida Cavallo, Maria Gisella Baroni, Marco Giorgio Int J Mol Sci Article Type 2 diabetes is characterized by impairment in insulin secretion, with an established genetic contribution. We aimed to evaluate common and low-frequency (1–5%) variants in nine genes strongly associated with insulin secretion by targeted sequencing in subjects selected from the extremes of insulin release measured by the disposition index. Collapsing data by gene and/or function, the association between disposition index and nonsense variants were significant, also after adjustment for confounding factors (OR = 0.25, 95% CI = 0.11–0.59, p = 0.001). Evaluating variants individually, three novel variants in ARAP1, IGF2BP2 and GCK, out of eight reaching significance singularly, remained associated after adjustment. Constructing a genetic risk model combining the effects of the three variants, only carriers of the ARAP1 and IGF2BP2 variants were significantly associated with a reduced probability to be in the lower, worst, extreme of insulin secretion (OR = 0.223, 95% CI = 0.105–0.473, p < 0.001). Observing a high number of normal glucose tolerance between carriers, a regression posthoc analysis was performed. Carriers of genetic risk model variants had higher probability to be normoglycemic, also after adjustment (OR = 2.411, 95% CI = 1.136–5.116, p = 0.022). Thus, in our southern European cohort, nonsense variants in all nine candidate genes showed association with better insulin secretion adjusted for insulin resistance, and we established the role of ARAP1 and IGF2BP2 in modulating insulin secretion. MDPI 2022-01-22 /pmc/articles/PMC8835579/ /pubmed/35163144 http://dx.doi.org/10.3390/ijms23031221 Text en © 2022 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
Bailetti, Diego
Sentinelli, Federica
Prudente, Sabrina
Cimini, Flavia Agata
Barchetta, Ilaria
Totaro, Maria
Di Costanzo, Alessia
Barbonetti, Arcangelo
Leonetti, Frida
Cavallo, Maria Gisella
Baroni, Marco Giorgio
Deep Resequencing of 9 Candidate Genes Identifies a Role for ARAP1 and IGF2BP2 in Modulating Insulin Secretion Adjusted for Insulin Resistance in Obese Southern Europeans
title Deep Resequencing of 9 Candidate Genes Identifies a Role for ARAP1 and IGF2BP2 in Modulating Insulin Secretion Adjusted for Insulin Resistance in Obese Southern Europeans
title_full Deep Resequencing of 9 Candidate Genes Identifies a Role for ARAP1 and IGF2BP2 in Modulating Insulin Secretion Adjusted for Insulin Resistance in Obese Southern Europeans
title_fullStr Deep Resequencing of 9 Candidate Genes Identifies a Role for ARAP1 and IGF2BP2 in Modulating Insulin Secretion Adjusted for Insulin Resistance in Obese Southern Europeans
title_full_unstemmed Deep Resequencing of 9 Candidate Genes Identifies a Role for ARAP1 and IGF2BP2 in Modulating Insulin Secretion Adjusted for Insulin Resistance in Obese Southern Europeans
title_short Deep Resequencing of 9 Candidate Genes Identifies a Role for ARAP1 and IGF2BP2 in Modulating Insulin Secretion Adjusted for Insulin Resistance in Obese Southern Europeans
title_sort deep resequencing of 9 candidate genes identifies a role for arap1 and igf2bp2 in modulating insulin secretion adjusted for insulin resistance in obese southern europeans
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8835579/
https://www.ncbi.nlm.nih.gov/pubmed/35163144
http://dx.doi.org/10.3390/ijms23031221
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