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Genotype-based recall to study metabolic effects of genetic variation: a pilot study of PPARG Pro12Ala carriers

AIM: To assess practical implications of genotype-based recall (GBR) studies, an increasingly popular approach for in-depth characterization of genotype–phenotype relationships. METHODS: We genotyped 2500 participants from the Swedish EpiHealth cohort and considered loss-of-function and missense var...

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Autores principales: Kamble, Prasad G., Gustafsson, Stefan, Pereira, Maria J., Lundkvist, Per, Cook, Naomi, Lind, Lars, Franks, Paul W., Fall, Tove, Eriksson, Jan W., Ingelsson, Erik
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5810227/
https://www.ncbi.nlm.nih.gov/pubmed/29303622
http://dx.doi.org/10.1080/03009734.2017.1405127
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author Kamble, Prasad G.
Gustafsson, Stefan
Pereira, Maria J.
Lundkvist, Per
Cook, Naomi
Lind, Lars
Franks, Paul W.
Fall, Tove
Eriksson, Jan W.
Ingelsson, Erik
author_facet Kamble, Prasad G.
Gustafsson, Stefan
Pereira, Maria J.
Lundkvist, Per
Cook, Naomi
Lind, Lars
Franks, Paul W.
Fall, Tove
Eriksson, Jan W.
Ingelsson, Erik
author_sort Kamble, Prasad G.
collection PubMed
description AIM: To assess practical implications of genotype-based recall (GBR) studies, an increasingly popular approach for in-depth characterization of genotype–phenotype relationships. METHODS: We genotyped 2500 participants from the Swedish EpiHealth cohort and considered loss-of-function and missense variants in genes with relation to cardiometabolic traits as the basis for our GBR study. Therefore, we focused on carriers and non-carriers of the PPARG Pro12Ala (rs1801282) variant, as it is a relatively common variant with a minor allele frequency (MAF) of 0.14. It has also been shown to affect ligand binding and transcription, and carriage of the minor allele (Ala12) is associated with a reduced risk of type 2 diabetes. We re-invited 39 Pro12Pro, 34 Pro12Ala, and 30 Ala12Ala carriers and performed detailed anthropometric and serological assessments. RESULTS: The participation rates in the GBR study were 31%, 44%, and 40%, and accordingly we included 12, 15, and 13 individuals with Pro12Pro, Pro12Ala, and Ala12Ala variants, respectively. There were no differences in anthropometric or metabolic variables among the different genotype groups. CONCLUSIONS: Our report highlights that from a practical perspective, GBR can be used to study genotype–phenotype relationships. This approach can prove to be a valuable tool for follow-up findings from large-scale genetic discovery studies by undertaking detailed phenotyping procedures that might not be feasible in large studies. However, our study also illustrates the need for a larger pool of genotyped or sequenced individuals to allow for selection of rare variants with larger effects that can be examined in a GBR study of the present size.
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spelling pubmed-58102272018-02-15 Genotype-based recall to study metabolic effects of genetic variation: a pilot study of PPARG Pro12Ala carriers Kamble, Prasad G. Gustafsson, Stefan Pereira, Maria J. Lundkvist, Per Cook, Naomi Lind, Lars Franks, Paul W. Fall, Tove Eriksson, Jan W. Ingelsson, Erik Ups J Med Sci Original Articles AIM: To assess practical implications of genotype-based recall (GBR) studies, an increasingly popular approach for in-depth characterization of genotype–phenotype relationships. METHODS: We genotyped 2500 participants from the Swedish EpiHealth cohort and considered loss-of-function and missense variants in genes with relation to cardiometabolic traits as the basis for our GBR study. Therefore, we focused on carriers and non-carriers of the PPARG Pro12Ala (rs1801282) variant, as it is a relatively common variant with a minor allele frequency (MAF) of 0.14. It has also been shown to affect ligand binding and transcription, and carriage of the minor allele (Ala12) is associated with a reduced risk of type 2 diabetes. We re-invited 39 Pro12Pro, 34 Pro12Ala, and 30 Ala12Ala carriers and performed detailed anthropometric and serological assessments. RESULTS: The participation rates in the GBR study were 31%, 44%, and 40%, and accordingly we included 12, 15, and 13 individuals with Pro12Pro, Pro12Ala, and Ala12Ala variants, respectively. There were no differences in anthropometric or metabolic variables among the different genotype groups. CONCLUSIONS: Our report highlights that from a practical perspective, GBR can be used to study genotype–phenotype relationships. This approach can prove to be a valuable tool for follow-up findings from large-scale genetic discovery studies by undertaking detailed phenotyping procedures that might not be feasible in large studies. However, our study also illustrates the need for a larger pool of genotyped or sequenced individuals to allow for selection of rare variants with larger effects that can be examined in a GBR study of the present size. Taylor & Francis 2017-12 2018-01-05 /pmc/articles/PMC5810227/ /pubmed/29303622 http://dx.doi.org/10.1080/03009734.2017.1405127 Text en © 2018 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Kamble, Prasad G.
Gustafsson, Stefan
Pereira, Maria J.
Lundkvist, Per
Cook, Naomi
Lind, Lars
Franks, Paul W.
Fall, Tove
Eriksson, Jan W.
Ingelsson, Erik
Genotype-based recall to study metabolic effects of genetic variation: a pilot study of PPARG Pro12Ala carriers
title Genotype-based recall to study metabolic effects of genetic variation: a pilot study of PPARG Pro12Ala carriers
title_full Genotype-based recall to study metabolic effects of genetic variation: a pilot study of PPARG Pro12Ala carriers
title_fullStr Genotype-based recall to study metabolic effects of genetic variation: a pilot study of PPARG Pro12Ala carriers
title_full_unstemmed Genotype-based recall to study metabolic effects of genetic variation: a pilot study of PPARG Pro12Ala carriers
title_short Genotype-based recall to study metabolic effects of genetic variation: a pilot study of PPARG Pro12Ala carriers
title_sort genotype-based recall to study metabolic effects of genetic variation: a pilot study of pparg pro12ala carriers
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5810227/
https://www.ncbi.nlm.nih.gov/pubmed/29303622
http://dx.doi.org/10.1080/03009734.2017.1405127
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