Whole-genome sequencing association analysis of quantitative red blood cell phenotypes: The NHLBI TOPMed program

定量红细胞表型的全基因组测序关联分析:NHLBI TOPMed 项目

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作者:Yao Hu ,Adrienne M Stilp ,Caitlin P McHugh ,Shuquan Rao ,Deepti Jain ,Xiuwen Zheng ,John Lane ,Sébastian Méric de Bellefon ,Laura M Raffield ,Ming-Huei Chen ,Lisa R Yanek ,Marsha Wheeler ,Yao Yao ,Chunyan Ren ,Jai Broome ,Jee-Young Moon ,Paul S de Vries ,Brian D Hobbs ,Quan Sun ,Praveen Surendran ,Jennifer A Brody ,Thomas W Blackwell ,Hélène Choquet ,Kathleen Ryan ,Ravindranath Duggirala ,Nancy Heard-Costa ,Zhe Wang ,Nathalie Chami ,Michael H Preuss ,Nancy Min ,Lynette Ekunwe ,Leslie A Lange ,Mary Cushman ,Nauder Faraday ,Joanne E Curran ,Laura Almasy ,Kousik Kundu ,Albert V Smith ,Stacey Gabriel ,Jerome I Rotter ,Myriam Fornage ,Donald M Lloyd-Jones ,Ramachandran S Vasan ,Nicholas L Smith ,Kari E North ,Eric Boerwinkle ,Lewis C Becker ,Joshua P Lewis ,Goncalo R Abecasis ,Lifang Hou ,Jeffrey R O'Connell ,Alanna C Morrison ,Terri H Beaty ,Robert Kaplan ,Adolfo Correa ,John Blangero ,Eric Jorgenson ,Bruce M Psaty ,Charles Kooperberg ,Russell T Walton ,Benjamin P Kleinstiver ,Hua Tang ,Ruth J F Loos ,Nicole Soranzo ,Adam S Butterworth ,Debbie Nickerson ,Stephen S Rich ,Braxton D Mitchell ,Andrew D Johnson ,Paul L Auer ,Yun Li ,Rasika A Mathias ,Guillaume Lettre ,Nathan Pankratz ,Cathy C Laurie ,Cecelia A Laurie ,Daniel E Bauer ,Matthew P Conomos ,Alexander P Reiner

Abstract

Whole-genome sequencing (WGS), a powerful tool for detecting novel coding and non-coding disease-causing variants, has largely been applied to clinical diagnosis of inherited disorders. Here we leveraged WGS data in up to 62,653 ethnically diverse participants from the NHLBI Trans-Omics for Precision Medicine (TOPMed) program and assessed statistical association of variants with seven red blood cell (RBC) quantitative traits. We discovered 14 single variant-RBC trait associations at 12 genomic loci, which have not been reported previously. Several of the RBC trait-variant associations (RPN1, ELL2, MIDN, HBB, HBA1, PIEZO1, and G6PD) were replicated in independent GWAS datasets imputed to the TOPMed reference panel. Most of these discovered variants are rare/low frequency, and several are observed disproportionately among non-European Ancestry (African, Hispanic/Latino, or East Asian) populations. We identified a 3 bp indel p.Lys2169del (g.88717175_88717177TCT[4]) (common only in the Ashkenazi Jewish population) of PIEZO1, a gene responsible for the Mendelian red cell disorder hereditary xerocytosis (MIM: 194380), associated with higher mean corpuscular hemoglobin concentration (MCHC). In stepwise conditional analysis and in gene-based rare variant aggregated association analysis, we identified several of the variants in HBB, HBA1, TMPRSS6, and G6PD that represent the carrier state for known coding, promoter, or splice site loss-of-function variants that cause inherited RBC disorders. Finally, we applied base and nuclease editing to demonstrate that the sentinel variant rs112097551 (nearest gene RPN1) acts through a cis-regulatory element that exerts long-range control of the gene RUVBL1 which is essential for hematopoiesis. Together, these results demonstrate the utility of WGS in ethnically diverse population-based samples and gene editing for expanding knowledge of the genetic architecture of quantitative hematologic traits and suggest a continuum between complex trait and Mendelian red cell disorders.

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