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Meta-analysis of genome-wide association studies identifies 8 novel loci involved in shape variation of human head hair

Shape variation of human head hair shows striking variation within and between human populations, while its genetic basis is far from being understood. We performed a series of genome-wide association studies (GWASs) and replication studies in a total of 28 964 subjects from 9 cohorts from multiple...

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Autores principales: Liu, Fan, Chen, Yan, Zhu, Gu, Hysi, Pirro G, Wu, Sijie, Adhikari, Kaustubh, Breslin, Krystal, Pośpiech, Ewelina, Hamer, Merel A, Peng, Fuduan, Muralidharan, Charanya, Acuna-Alonzo, Victor, Canizales-Quinteros, Samuel, Bedoya, Gabriel, Gallo, Carla, Poletti, Giovanni, Rothhammer, Francisco, Bortolini, Maria Catira, Gonzalez-Jose, Rolando, Zeng, Changqing, Xu, Shuhua, Jin, Li, Uitterlinden, André G, Ikram, M Arfan, van Duijn, Cornelia M, Nijsten, Tamar, Walsh, Susan, Branicki, Wojciech, Wang, Sijia, Ruiz-Linares, Andrés, Spector, Timothy D, Martin, Nicholas G, Medland, Sarah E, Kayser, Manfred
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5886212/
https://www.ncbi.nlm.nih.gov/pubmed/29220522
http://dx.doi.org/10.1093/hmg/ddx416
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author Liu, Fan
Chen, Yan
Zhu, Gu
Hysi, Pirro G
Wu, Sijie
Adhikari, Kaustubh
Breslin, Krystal
Pośpiech, Ewelina
Hamer, Merel A
Peng, Fuduan
Muralidharan, Charanya
Acuna-Alonzo, Victor
Canizales-Quinteros, Samuel
Bedoya, Gabriel
Gallo, Carla
Poletti, Giovanni
Rothhammer, Francisco
Bortolini, Maria Catira
Gonzalez-Jose, Rolando
Zeng, Changqing
Xu, Shuhua
Jin, Li
Uitterlinden, André G
Ikram, M Arfan
van Duijn, Cornelia M
Nijsten, Tamar
Walsh, Susan
Branicki, Wojciech
Wang, Sijia
Ruiz-Linares, Andrés
Spector, Timothy D
Martin, Nicholas G
Medland, Sarah E
Kayser, Manfred
author_facet Liu, Fan
Chen, Yan
Zhu, Gu
Hysi, Pirro G
Wu, Sijie
Adhikari, Kaustubh
Breslin, Krystal
Pośpiech, Ewelina
Hamer, Merel A
Peng, Fuduan
Muralidharan, Charanya
Acuna-Alonzo, Victor
Canizales-Quinteros, Samuel
Bedoya, Gabriel
Gallo, Carla
Poletti, Giovanni
Rothhammer, Francisco
Bortolini, Maria Catira
Gonzalez-Jose, Rolando
Zeng, Changqing
Xu, Shuhua
Jin, Li
Uitterlinden, André G
Ikram, M Arfan
van Duijn, Cornelia M
Nijsten, Tamar
Walsh, Susan
Branicki, Wojciech
Wang, Sijia
Ruiz-Linares, Andrés
Spector, Timothy D
Martin, Nicholas G
Medland, Sarah E
Kayser, Manfred
author_sort Liu, Fan
collection PubMed
description Shape variation of human head hair shows striking variation within and between human populations, while its genetic basis is far from being understood. We performed a series of genome-wide association studies (GWASs) and replication studies in a total of 28 964 subjects from 9 cohorts from multiple geographic origins. A meta-analysis of three European GWASs identified 8 novel loci (1p36.23 ERRFI1/SLC45A1, 1p36.22 PEX14, 1p36.13 PADI3, 2p13.3 TGFA, 11p14.1 LGR4, 12q13.13 HOXC13, 17q21.2 KRTAP, and 20q13.33 PTK6), and confirmed 4 previously known ones (1q21.3 TCHH/TCHHL1/LCE3E, 2q35 WNT10A, 4q21.21 FRAS1, and 10p14 LINC00708/GATA3), all showing genome-wide significant association with hair shape (P < 5e-8). All except one (1p36.22 PEX14) were replicated with nominal significance in at least one of the 6 additional cohorts of European, Native American and East Asian origins. Three additional previously known genes (EDAR, OFCC1, and PRSS53) were confirmed at the nominal significance level. A multivariable regression model revealed that 14 SNPs from different genes significantly and independently contribute to hair shape variation, reaching a cross-validated AUC value of 0.66 (95% CI: 0.62–0.70) and an AUC value of 0.64 in an independent validation cohort, providing an improved accuracy compared with a previous model. Prediction outcomes of 2504 individuals from a multiethnic sample were largely consistent with general knowledge on the global distribution of hair shape variation. Our study thus delivers target genes and DNA variants for future functional studies to further evaluate the molecular basis of hair shape in humans.
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spelling pubmed-58862122018-04-09 Meta-analysis of genome-wide association studies identifies 8 novel loci involved in shape variation of human head hair Liu, Fan Chen, Yan Zhu, Gu Hysi, Pirro G Wu, Sijie Adhikari, Kaustubh Breslin, Krystal Pośpiech, Ewelina Hamer, Merel A Peng, Fuduan Muralidharan, Charanya Acuna-Alonzo, Victor Canizales-Quinteros, Samuel Bedoya, Gabriel Gallo, Carla Poletti, Giovanni Rothhammer, Francisco Bortolini, Maria Catira Gonzalez-Jose, Rolando Zeng, Changqing Xu, Shuhua Jin, Li Uitterlinden, André G Ikram, M Arfan van Duijn, Cornelia M Nijsten, Tamar Walsh, Susan Branicki, Wojciech Wang, Sijia Ruiz-Linares, Andrés Spector, Timothy D Martin, Nicholas G Medland, Sarah E Kayser, Manfred Hum Mol Genet Association Studies Articles Shape variation of human head hair shows striking variation within and between human populations, while its genetic basis is far from being understood. We performed a series of genome-wide association studies (GWASs) and replication studies in a total of 28 964 subjects from 9 cohorts from multiple geographic origins. A meta-analysis of three European GWASs identified 8 novel loci (1p36.23 ERRFI1/SLC45A1, 1p36.22 PEX14, 1p36.13 PADI3, 2p13.3 TGFA, 11p14.1 LGR4, 12q13.13 HOXC13, 17q21.2 KRTAP, and 20q13.33 PTK6), and confirmed 4 previously known ones (1q21.3 TCHH/TCHHL1/LCE3E, 2q35 WNT10A, 4q21.21 FRAS1, and 10p14 LINC00708/GATA3), all showing genome-wide significant association with hair shape (P < 5e-8). All except one (1p36.22 PEX14) were replicated with nominal significance in at least one of the 6 additional cohorts of European, Native American and East Asian origins. Three additional previously known genes (EDAR, OFCC1, and PRSS53) were confirmed at the nominal significance level. A multivariable regression model revealed that 14 SNPs from different genes significantly and independently contribute to hair shape variation, reaching a cross-validated AUC value of 0.66 (95% CI: 0.62–0.70) and an AUC value of 0.64 in an independent validation cohort, providing an improved accuracy compared with a previous model. Prediction outcomes of 2504 individuals from a multiethnic sample were largely consistent with general knowledge on the global distribution of hair shape variation. Our study thus delivers target genes and DNA variants for future functional studies to further evaluate the molecular basis of hair shape in humans. Oxford University Press 2018-02-01 2017-12-06 /pmc/articles/PMC5886212/ /pubmed/29220522 http://dx.doi.org/10.1093/hmg/ddx416 Text en © The Author(s) 2017. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Association Studies Articles
Liu, Fan
Chen, Yan
Zhu, Gu
Hysi, Pirro G
Wu, Sijie
Adhikari, Kaustubh
Breslin, Krystal
Pośpiech, Ewelina
Hamer, Merel A
Peng, Fuduan
Muralidharan, Charanya
Acuna-Alonzo, Victor
Canizales-Quinteros, Samuel
Bedoya, Gabriel
Gallo, Carla
Poletti, Giovanni
Rothhammer, Francisco
Bortolini, Maria Catira
Gonzalez-Jose, Rolando
Zeng, Changqing
Xu, Shuhua
Jin, Li
Uitterlinden, André G
Ikram, M Arfan
van Duijn, Cornelia M
Nijsten, Tamar
Walsh, Susan
Branicki, Wojciech
Wang, Sijia
Ruiz-Linares, Andrés
Spector, Timothy D
Martin, Nicholas G
Medland, Sarah E
Kayser, Manfred
Meta-analysis of genome-wide association studies identifies 8 novel loci involved in shape variation of human head hair
title Meta-analysis of genome-wide association studies identifies 8 novel loci involved in shape variation of human head hair
title_full Meta-analysis of genome-wide association studies identifies 8 novel loci involved in shape variation of human head hair
title_fullStr Meta-analysis of genome-wide association studies identifies 8 novel loci involved in shape variation of human head hair
title_full_unstemmed Meta-analysis of genome-wide association studies identifies 8 novel loci involved in shape variation of human head hair
title_short Meta-analysis of genome-wide association studies identifies 8 novel loci involved in shape variation of human head hair
title_sort meta-analysis of genome-wide association studies identifies 8 novel loci involved in shape variation of human head hair
topic Association Studies Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5886212/
https://www.ncbi.nlm.nih.gov/pubmed/29220522
http://dx.doi.org/10.1093/hmg/ddx416
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