Whole-exome sequencing identifies common and rare variant metabolic QTLs in a Middle Eastern population
Blood metabolites are influenced by a combination of genetic and environmental factors. Here, Yousri and colleagues perform a whole-exome sequencing study in combination with a metabolomics analysis to identify metabolic quantitative trait loci in a Middle Eastern population.
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Nature Portfolio
2018
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oai:doaj.org-article:c31de4379d5747af8230fd50df05087b2021-12-02T14:39:05ZWhole-exome sequencing identifies common and rare variant metabolic QTLs in a Middle Eastern population10.1038/s41467-017-01972-92041-1723https://doaj.org/article/c31de4379d5747af8230fd50df05087b2018-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-01972-9https://doaj.org/toc/2041-1723Blood metabolites are influenced by a combination of genetic and environmental factors. Here, Yousri and colleagues perform a whole-exome sequencing study in combination with a metabolomics analysis to identify metabolic quantitative trait loci in a Middle Eastern population.Noha A. YousriKhalid A. FakhroAmal RobayJuan L. Rodriguez-FloresRobert P. MohneyHassina ZeririTala OdehSara Abdul KaderEman K. AldousGaurav TharejaManish KumarAlya Al-ShakakiOmar M. ChidiacYasmin A. MohamoudJason G. MezeyJoel A. MalekRonald G. CrystalKarsten SuhreNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-13 (2018) |
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Science Q Noha A. Yousri Khalid A. Fakhro Amal Robay Juan L. Rodriguez-Flores Robert P. Mohney Hassina Zeriri Tala Odeh Sara Abdul Kader Eman K. Aldous Gaurav Thareja Manish Kumar Alya Al-Shakaki Omar M. Chidiac Yasmin A. Mohamoud Jason G. Mezey Joel A. Malek Ronald G. Crystal Karsten Suhre Whole-exome sequencing identifies common and rare variant metabolic QTLs in a Middle Eastern population |
description |
Blood metabolites are influenced by a combination of genetic and environmental factors. Here, Yousri and colleagues perform a whole-exome sequencing study in combination with a metabolomics analysis to identify metabolic quantitative trait loci in a Middle Eastern population. |
format |
article |
author |
Noha A. Yousri Khalid A. Fakhro Amal Robay Juan L. Rodriguez-Flores Robert P. Mohney Hassina Zeriri Tala Odeh Sara Abdul Kader Eman K. Aldous Gaurav Thareja Manish Kumar Alya Al-Shakaki Omar M. Chidiac Yasmin A. Mohamoud Jason G. Mezey Joel A. Malek Ronald G. Crystal Karsten Suhre |
author_facet |
Noha A. Yousri Khalid A. Fakhro Amal Robay Juan L. Rodriguez-Flores Robert P. Mohney Hassina Zeriri Tala Odeh Sara Abdul Kader Eman K. Aldous Gaurav Thareja Manish Kumar Alya Al-Shakaki Omar M. Chidiac Yasmin A. Mohamoud Jason G. Mezey Joel A. Malek Ronald G. Crystal Karsten Suhre |
author_sort |
Noha A. Yousri |
title |
Whole-exome sequencing identifies common and rare variant metabolic QTLs in a Middle Eastern population |
title_short |
Whole-exome sequencing identifies common and rare variant metabolic QTLs in a Middle Eastern population |
title_full |
Whole-exome sequencing identifies common and rare variant metabolic QTLs in a Middle Eastern population |
title_fullStr |
Whole-exome sequencing identifies common and rare variant metabolic QTLs in a Middle Eastern population |
title_full_unstemmed |
Whole-exome sequencing identifies common and rare variant metabolic QTLs in a Middle Eastern population |
title_sort |
whole-exome sequencing identifies common and rare variant metabolic qtls in a middle eastern population |
publisher |
Nature Portfolio |
publishDate |
2018 |
url |
https://doaj.org/article/c31de4379d5747af8230fd50df05087b |
work_keys_str_mv |
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