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Laser capture microdissection of human pancreatic islets reveals novel eQTLs associated with type 2 diabetes
OBJECTIVE: Genome wide association studies (GWAS) for type 2 diabetes (T2D) have identified genetic loci that often localise in non-coding regions of the genome, suggesting gene regulation effects. We combined genetic and transcriptomic analysis from human islets obtained from brain-dead organ donor...
Autores principales: | , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Elsevier
2019
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6531807/ https://www.ncbi.nlm.nih.gov/pubmed/30956117 http://dx.doi.org/10.1016/j.molmet.2019.03.004 |
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author | Khamis, Amna Canouil, Mickaël Siddiq, Afshan Crouch, Hutokshi Falchi, Mario Bulow, Manon von Ehehalt, Florian Marselli, Lorella Distler, Marius Richter, Daniela Weitz, Jürgen Bokvist, Krister Xenarios, Ioannis Thorens, Bernard Schulte, Anke M. Ibberson, Mark Bonnefond, Amelie Marchetti, Piero Solimena, Michele Froguel, Philippe |
author_facet | Khamis, Amna Canouil, Mickaël Siddiq, Afshan Crouch, Hutokshi Falchi, Mario Bulow, Manon von Ehehalt, Florian Marselli, Lorella Distler, Marius Richter, Daniela Weitz, Jürgen Bokvist, Krister Xenarios, Ioannis Thorens, Bernard Schulte, Anke M. Ibberson, Mark Bonnefond, Amelie Marchetti, Piero Solimena, Michele Froguel, Philippe |
author_sort | Khamis, Amna |
collection | PubMed |
description | OBJECTIVE: Genome wide association studies (GWAS) for type 2 diabetes (T2D) have identified genetic loci that often localise in non-coding regions of the genome, suggesting gene regulation effects. We combined genetic and transcriptomic analysis from human islets obtained from brain-dead organ donors or surgical patients to detect expression quantitative trait loci (eQTLs) and shed light into the regulatory mechanisms of these genes. METHODS: Pancreatic islets were isolated either by laser capture microdissection (LCM) from surgical specimens of 103 metabolically phenotyped pancreatectomized patients (PPP) or by collagenase digestion of pancreas from 100 brain-dead organ donors (OD). Genotyping (> 8.7 million single nucleotide polymorphisms) and expression (> 47,000 transcripts and splice variants) analyses were combined to generate cis-eQTLs. RESULTS: After applying genome-wide false discovery rate significance thresholds, we identified 1,173 and 1,021 eQTLs in samples of OD and PPP, respectively. Among the strongest eQTLs shared between OD and PPP were CHURC1 (OD p-value=1.71 × 10(-24); PPP p-value = 3.64 × 10(–24)) and PSPH (OD p-value = 3.92 × 10(−26); PPP p-value = 3.64 × 10(−24)). We identified eQTLs in linkage-disequilibrium with GWAS loci T2D and associated traits, including TTLL6, MLX and KIF9 loci, which do not implicate the nearest gene. We found in the PPP datasets 11 eQTL genes, which were differentially expressed in T2D and two genes (CYP4V2 and TSEN2) associated with HbA1c but none in the OD samples. CONCLUSIONS: eQTL analysis of LCM islets from PPP led us to identify novel genes which had not been previously linked to islet biology and T2D. The understanding gained from eQTL approaches, especially using surgical samples of living patients, provides a more accurate 3-dimensional representation than those from genetic studies alone. |
format | Online Article Text |
id | pubmed-6531807 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | Elsevier |
record_format | MEDLINE/PubMed |
spelling | pubmed-65318072019-05-29 Laser capture microdissection of human pancreatic islets reveals novel eQTLs associated with type 2 diabetes Khamis, Amna Canouil, Mickaël Siddiq, Afshan Crouch, Hutokshi Falchi, Mario Bulow, Manon von Ehehalt, Florian Marselli, Lorella Distler, Marius Richter, Daniela Weitz, Jürgen Bokvist, Krister Xenarios, Ioannis Thorens, Bernard Schulte, Anke M. Ibberson, Mark Bonnefond, Amelie Marchetti, Piero Solimena, Michele Froguel, Philippe Mol Metab Original Article OBJECTIVE: Genome wide association studies (GWAS) for type 2 diabetes (T2D) have identified genetic loci that often localise in non-coding regions of the genome, suggesting gene regulation effects. We combined genetic and transcriptomic analysis from human islets obtained from brain-dead organ donors or surgical patients to detect expression quantitative trait loci (eQTLs) and shed light into the regulatory mechanisms of these genes. METHODS: Pancreatic islets were isolated either by laser capture microdissection (LCM) from surgical specimens of 103 metabolically phenotyped pancreatectomized patients (PPP) or by collagenase digestion of pancreas from 100 brain-dead organ donors (OD). Genotyping (> 8.7 million single nucleotide polymorphisms) and expression (> 47,000 transcripts and splice variants) analyses were combined to generate cis-eQTLs. RESULTS: After applying genome-wide false discovery rate significance thresholds, we identified 1,173 and 1,021 eQTLs in samples of OD and PPP, respectively. Among the strongest eQTLs shared between OD and PPP were CHURC1 (OD p-value=1.71 × 10(-24); PPP p-value = 3.64 × 10(–24)) and PSPH (OD p-value = 3.92 × 10(−26); PPP p-value = 3.64 × 10(−24)). We identified eQTLs in linkage-disequilibrium with GWAS loci T2D and associated traits, including TTLL6, MLX and KIF9 loci, which do not implicate the nearest gene. We found in the PPP datasets 11 eQTL genes, which were differentially expressed in T2D and two genes (CYP4V2 and TSEN2) associated with HbA1c but none in the OD samples. CONCLUSIONS: eQTL analysis of LCM islets from PPP led us to identify novel genes which had not been previously linked to islet biology and T2D. The understanding gained from eQTL approaches, especially using surgical samples of living patients, provides a more accurate 3-dimensional representation than those from genetic studies alone. Elsevier 2019-03-18 /pmc/articles/PMC6531807/ /pubmed/30956117 http://dx.doi.org/10.1016/j.molmet.2019.03.004 Text en © 2019 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Original Article Khamis, Amna Canouil, Mickaël Siddiq, Afshan Crouch, Hutokshi Falchi, Mario Bulow, Manon von Ehehalt, Florian Marselli, Lorella Distler, Marius Richter, Daniela Weitz, Jürgen Bokvist, Krister Xenarios, Ioannis Thorens, Bernard Schulte, Anke M. Ibberson, Mark Bonnefond, Amelie Marchetti, Piero Solimena, Michele Froguel, Philippe Laser capture microdissection of human pancreatic islets reveals novel eQTLs associated with type 2 diabetes |
title | Laser capture microdissection of human pancreatic islets reveals novel eQTLs associated with type 2 diabetes |
title_full | Laser capture microdissection of human pancreatic islets reveals novel eQTLs associated with type 2 diabetes |
title_fullStr | Laser capture microdissection of human pancreatic islets reveals novel eQTLs associated with type 2 diabetes |
title_full_unstemmed | Laser capture microdissection of human pancreatic islets reveals novel eQTLs associated with type 2 diabetes |
title_short | Laser capture microdissection of human pancreatic islets reveals novel eQTLs associated with type 2 diabetes |
title_sort | laser capture microdissection of human pancreatic islets reveals novel eqtls associated with type 2 diabetes |
topic | Original Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6531807/ https://www.ncbi.nlm.nih.gov/pubmed/30956117 http://dx.doi.org/10.1016/j.molmet.2019.03.004 |
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