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Epigenetic and proteomic signatures associate with clonal hematopoiesis expansion rate.

Taralynn M MackMichael A RaddatzYash PershadDaniel C NachunKent D TaylorXiuqing GuoAlan R ShuldinerJeffrey R O'ConnellEimear E KennyRuth J F LoosSusan RedlineBrian E CadeBruce M PsatyJoshua C BisJennifer A BrodyEdwin K SilvermanJeong H YunMichael H ChoDawn L DeMeoDaniel LevyAndrew D JohnsonRasika A MathiasLisa R YanekSusan R HeckbertNicholas L SmithKerri L WigginsLaura M RaffieldApril P CarsonJerome I RotterStephen S RichAni W ManichaikulCharles C GuYii-Der Ida ChenWen-Jane LeeM Benjamin ShoemakerDan M RodenCharles KooperbergPaul L AuerPinkal DesaiThomas W BlackwellAlbert Vernon SmithAlexander P ReinerSiddhartha JaiswalJoshua S WeinstockAlexander G Bick
Published in: Nature aging (2024)
Clonal hematopoiesis of indeterminate potential (CHIP), whereby somatic mutations in hematopoietic stem cells confer a selective advantage and drive clonal expansion, not only correlates with age but also confers increased risk of morbidity and mortality. Here, we leverage genetically predicted traits to identify factors that determine CHIP clonal expansion rate. We used the passenger-approximated clonal expansion rate method to quantify the clonal expansion rate for 4,370 individuals in the National Heart, Lung, and Blood Institute (NHLBI) Trans-Omics for Precision Medicine (TOPMed) cohort and calculated polygenic risk scores for DNA methylation aging, inflammation-related measures and circulating protein levels. Clonal expansion rate was significantly associated with both genetically predicted and measured epigenetic clocks. No associations were identified with inflammation-related lab values or diseases and CHIP expansion rate overall. A proteome-wide search identified predicted circulating levels of myeloid zinc finger 1 and anti-Müllerian hormone as associated with an increased CHIP clonal expansion rate and tissue inhibitor of metalloproteinase 1 and glycine N-methyltransferase as associated with decreased CHIP clonal expansion rate. Together, our findings identify epigenetic and proteomic patterns associated with the rate of hematopoietic clonal expansion.
Keyphrases
  • dna methylation
  • stem cells
  • high throughput
  • gene expression
  • genome wide
  • oxidative stress
  • heart failure
  • acute myeloid leukemia
  • risk assessment
  • mesenchymal stem cells
  • copy number
  • climate change
  • drug induced