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Nature Genetics|July 18, 2018
Genome-wide association and HLA fine-mapping studies identify risk loci and genetic pathways underlying allergic rhinitisJohannes Waage, Marie Standl, John A Curtin, et al.Nature Genetics|August 18, 2018
Author Correction: Genome-wide association and HLA fine-mapping studies identify risk loci and genetic pathways underlying allergic rhinitisJohannes Waage, Marie Standl, John A Curtin, et al.Nature Communications|April 10, 2025
Large-scale multi-omics analyses in Hispanic/Latino populations identify genes for cardiometabolic traitsLauren E Petty, Hung-Hsin Chen, Elizabeth G Frankel, et al.Diabetes|June 11, 2026
Colocalization of eQTLs With Type 2 Diabetes and Glycemic Traits Using Whole-Genome Sequences in Diverse Populations From the NHLBI Trans-Omics in Precision Medicine (TOPMed) ProgramNingyuan Wang, Daniel A DiCorpo, Yixin Zhang, et al.Nature Communications|June 10, 2021
Determinants of penetrance and variable expressivity in monogenic metabolic conditions across 77,184 exomesJulia K Goodrich, Moriel Singer-Berk, Rachel Son, et al.Nature|May 24, 2019
Exome sequencing of 20,791 cases of type 2 diabetes and 24,440 controlsJason Flannick, Josep M Mercader, Christian Fuchsberger, et al.Nature|September 30, 2016
Genome-wide associations for birth weight and correlations with adult diseaseMomoko Horikoshi, Robin N Beaumont, Felix R Day, et al.Nature Genetics|May 3, 2019
Maternal and fetal genetic effects on birth weight and their relevance to cardio-metabolic risk factorsNicole M Warrington, Robin N Beaumont, Momoko Horikoshi, et al.Medrxiv : the Preprint Server for Health Sciences|August 8, 2025
Multi-ancestry polygenic risk scores for the prediction of type 2 diabetes and complications in diverse ancestriesAlicia Huerta-Chagoya, Joohyun Kim, Ravi Mandla, et al.Nature Genetics|May 13, 2022
Multi-ancestry genetic study of type 2 diabetes highlights the power of diverse populations for discovery and translationAnubha Mahajan, Cassandra N Spracklen, Weihua Zhang, et al.Pageof 12