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A polygenic score for acute vaso-occlusive pain in pediatric sickle cell disease

  • Evadnie Rampersaud
  • , Guolian Kang
  • , Lance E. Palmer
  • , Sara R. Rashkin
  • , Shuoguo Wang
  • , Wenjian Bi
  • , Nicole M. Alberts
  • , Doralina Anghelescu
  • , Martha Barton
  • , Kirby Birch
  • , Nidal Boulos
  • , Amanda M. Brandow
  • , Russell John Brooke
  • , Ti Cheng Chang
  • , Wenan Chen
  • , Yong Cheng
  • , Juan Ding
  • , John Easton
  • , Jason R. Hodges
  • , Celeste K. Kanne
  • Shawn Levy, Heather Mulder, Ashwin P. Patel, Latika Puri, Celeste Rosencrance, Michael Rusch, Yadav Sapkota, Edgar Sioson, Akshay Sharma, Xing Tang, Andrew Thrasher, Winfred Wang, Yu Yao, Yutaka Yasui, Donald Yergeau, Jane S. Hankins, Vivien A. Sheehan, James R. Downing, Jeremie H. Estepp, Jinghui Zhang, Michael DeBaun, Gang Wu, Mitchell J. Weiss
  • Concordia University
  • St. Jude Children Research Hospital
  • Medical College of Wisconsin
  • University of Texas Health Science Center at Houston
  • HudsonAlpha Institute for Biotechnology
  • Emory University
  • Vanderbilt University

Research output: Contribution to journalArticlepeer-review

22 Scopus citations

Abstract

Individuals with monogenic disorders can experience variable phenotypes that are influenced by genetic variation. To investigate this in sickle cell disease (SCD), we performed whole-genome sequencing (WGS) of 722 individuals with hemoglobin HbSS or HbSb0-thalassemia from Baylor College of Medicine and from the St. Jude Children's Research Hospital Sickle Cell Clinical Research and Intervention Program (SCCRIP) longitudinal cohort study. We developed pipelines to identify genetic variants that modulate sickle hemoglobin polymerization in red blood cells and combined these with painassociated variants to build a polygenic score (PGS) for acute vaso-occlusive pain (VOP). Overall, we interrogated the a-thalassemia deletion -α3.7 and 133 candidate singlenucleotide polymorphisms (SNPs) across 66 genes for associations with VOP in 327 SCCRIP participants followed longitudinally over 6 years. Twenty-one SNPs in 9 loci were associated with VOP, including 3 (BCL11A, MYB, and the b-like globin gene cluster) that regulate erythrocyte fetal hemoglobin (HbF) levels and 6 (COMT, TBC1D1, KCNJ6, FAAH, NR3C1, and IL1A) that were associated previously with various pain syndromes. An unweighted PGS integrating all 21 SNPs was associated with the VOP event rate (estimate, 0.35; standard error, 0.04; P = 5.9 × 10-14) and VOP event occurrence (estimate, 0.42; standard error, 0.06; P = 4.1 × 10-13). These associations were stronger than those of any single locus. Our findings provide insights into the genetic modulation of VOP in children with SCD. More generally, we demonstrate the utility of WGS for investigating genetic contributions to the variable expression of SCD-associated morbidities.

Original languageEnglish
Pages (from-to)2839-2851
Number of pages13
JournalBlood Advances
Volume5
Issue number14
DOIs
StatePublished - Jul 27 2021

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