학술논문

Mendelian randomization supports bidirectional causality between telomere length and clonal hematopoiesis of indeterminate potential
Document Type
article
Author
Nakao, TetsushiBick, Alexander GTaub, Margaret AZekavat, Seyedeh MUddin, Md MNiroula, AbhishekCarty, Cara LLane, JohnHonigberg, Michael CWeinstock, Joshua SPampana, AkhilGibson, Christopher JGriffin, Gabriel KClarke, Shoa LBhattacharya, RomitAssimes, Themistocles LEmery, Leslie SStilp, Adrienne MWong, QuennaBroome, JaiLaurie, Cecelia AKhan, Alyna TSmith, Albert VBlackwell, Thomas WCodd, VeryanNelson, Christopher PYoneda, Zachary TPeralta, Juan MBowden, Donald WIrvin, Marguerite RBoorgula, MeherZhao, WeiYanek, Lisa RWiggins, Kerri LHixson, James EGu, C CharlesPeloso, Gina MRoden, Dan MReupena, Muagututi’a SHwu, Chii-MinDeMeo, Dawn LNorth, Kari EKelly, ShannonMusani, Solomon KBis, Joshua CLloyd-Jones, Donald MJohnsen, Jill MPreuss, MichaelTracy, Russell PPeyser, Patricia AQiao, DandiDesai, PinkalCurran, Joanne EFreedman, Barry ITiwari, Hemant KChavan, SameerSmith, Jennifer ASmith, Nicholas LKelly, Tanika NHidalgo, BerthaCupples, L AdrienneWeeks, Daniel EHawley, Nicola LMinster, Ryan LDeka, RanjanNaseri, Take Tde las Fuentes, LisaRaffield, Laura MMorrison, Alanna CVries, Paul SBallantyne, Christie MKenny, Eimear ERich, Stephen SWhitsel, Eric ACho, Michael HShoemaker, M BenjaminPace, Betty SBlangero, JohnPalmer, Nicholette DMitchell, Braxton DShuldiner, Alan RBarnes, Kathleen CRedline, SusanKardia, Sharon LRAbecasis, Gonçalo RBecker, Lewis CHeckbert, Susan RHe, JiangPost, WendyArnett, Donna KVasan, Ramachandran SDarbar, DawoodWeiss, Scott TMcGarvey, Stephen Tde Andrade, MarizaChen, Yii-Der IdaKaplan, Robert CMeyers, Deborah ACuster, Brian SCorrea, Adolfo
Source
Science Advances. 8(14)
Subject
Cardiovascular
Genetics
Aging
Heart Disease
Heart Disease - Coronary Heart Disease
Human Genome
Atherosclerosis
Aetiology
2.1 Biological and endogenous factors
Good Health and Well Being
Samoan Obesity
Lifestyle and Genetic Adaptations Study (OLaGA) Group
NHLBI Trans-Omics for Precision Medicine (TOPMed) Consortium
Language
Abstract
Human genetic studies support an inverse causal relationship between leukocyte telomere length (LTL) and coronary artery disease (CAD), but directionally mixed effects for LTL and diverse malignancies. Clonal hematopoiesis of indeterminate potential (CHIP), characterized by expansion of hematopoietic cells bearing leukemogenic mutations, predisposes both hematologic malignancy and CAD. TERT (which encodes telomerase reverse transcriptase) is the most significantly associated germline locus for CHIP in genome-wide association studies. Here, we investigated the relationship between CHIP, LTL, and CAD in the Trans-Omics for Precision Medicine (TOPMed) program (n = 63,302) and UK Biobank (n = 47,080). Bidirectional Mendelian randomization studies were consistent with longer genetically imputed LTL increasing propensity to develop CHIP, but CHIP then, in turn, hastens to shorten measured LTL (mLTL). We also demonstrated evidence of modest mediation between CHIP and CAD by mLTL. Our data promote an understanding of potential causal relationships across CHIP and LTL toward prevention of CAD.