A multi-layer functional genomic analysis to understand noncoding genetic variation in lipids
التاريخ
2022-08-04المؤلف
Ramdas, ShwetaJudd, Jonathan
Graham, Sarah E.
Kanoni, Stavroula
Wang, Yuxuan
Surakka, Ida
Wenz, Brandon
Clarke, Shoa L.
Chesi, Alessandra
Wells, Andrew
Bhatti, Konain Fatima
Vedantam, Sailaja
Winkler, Thomas W.
Locke, Adam E.
Marouli, Eirini
Zajac, Greg J.M.
Wu, Kuan Han H.
Ntalla, Ioanna
Hui, Qin
Klarin, Derek
Hilliard, Austin T.
Wang, Zeyuan
Xue, Chao
Thorleifsson, Gudmar
Helgadottir, Anna
Gudbjartsson, Daniel F.
Holm, Hilma
Olafsson, Isleifur
Hwang, Mi Yeong
Han, Sohee
Akiyama, Masato
Sakaue, Saori
Terao, Chikashi
Kanai, Masahiro
Zhou, Wei
Brumpton, Ben M.
Rasheed, Humaira
Havulinna, Aki S.
Veturi, Yogasudha
Pacheco, Jennifer Allen
Rosenthal, Elisabeth A.
Lingren, Todd
Feng, Qi Ping
Kullo, Iftikhar J.
Narita, Akira
Takayama, Jun
Martin, Hilary C.
Hunt, Karen A.
Trivedi, Bhavi
Haessler, Jeffrey
Giulianini, Franco
Bradford, Yuki
Miller, Jason E.
Campbell, Archie
Lin, Kuang
Millwood, Iona Y.
Rasheed, Asif
Hindy, George
Faul, Jessica D.
Zhao, Wei
Weir, David R.
Turman, Constance
Huang, Hongyan
Graff, Mariaelisa
Choudhury, Ananyo
Sengupta, Dhriti
Mahajan, Anubha
Brown, Michael R.
Zhang, Weihua
Yu, Ketian
Schmidt, Ellen M.
Pandit, Anita
Gustafsson, Stefan
Yin, Xianyong
Luan, Jian'an
Zhao, Jing Hua
Matsuda, Fumihiko
Jang, Hye Mi
Yoon, Kyungheon
Medina-Gomez, Carolina
Pitsillides, Achilleas
Hottenga, Jouke Jan
Wood, Andrew R.
Ji, Yingji
Gao, Zishan
Haworth, Simon
Mitchell, Ruth E.
Chai, Jin Fang
Aadahl, Mette
Bjerregaard, Anne A.
Yao, Jie
Manichaikul, Ani
Lee, Wen Jane
Hsiung, Chao Agnes
Warren, Helen R.
Ramirez, Julia
Bork-Jensen, Jette
Kårhus, Line L.
Goel, Anuj
Sabater-Lleal, Maria
...show more authors ...show less authors
البيانات الوصفية
عرض كامل للتسجيلةالملخص
A major challenge of genome-wide association studies (GWASs) is to translate phenotypic associations into biological insights. Here, we integrate a large GWAS on blood lipids involving 1.6 million individuals from five ancestries with a wide array of functional genomic datasets to discover regulatory mechanisms underlying lipid associations. We first prioritize lipid-associated genes with expression quantitative trait locus (eQTL) colocalizations and then add chromatin interaction data to narrow the search for functional genes. Polygenic enrichment analysis across 697 annotations from a host of tissues and cell types confirms the central role of the liver in lipid levels and highlights the selective enrichment of adipose-specific chromatin marks in high-density lipoprotein cholesterol and triglycerides. Overlapping transcription factor (TF) binding sites with lipid-associated loci identifies TFs relevant in lipid biology. In addition, we present an integrative framework to prioritize causal variants at GWAS loci, producing a comprehensive list of candidate causal genes and variants with multiple layers of functional evidence. We highlight two of the prioritized genes, CREBRF and RRBP1, which show convergent evidence across functional datasets supporting their roles in lipid biology.
معرّف المصادر الموحد
https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85135598739&origin=inwardالمجموعات
- أبحاث الطب [1514 items ]