Selective Advantage of Mutant Stem Cells in Human Clonal Hematopoiesis is Associated with Attenuated Response to Inflammation and Aging

Niels Asger Jakobsen,Sven Turkalj,Andy G. X. Zeng,Bilyana Stoilova,Marlen Metzner, Susann Rahmig,Murtaza S. Nagree,Sayyam Shah,Rachel Moore,Batchimeg Usukhbayar,Mirian Angulo Salazar,Grigore-Aristide Gafencu,Alison Kennedy,Simon Newman,Benjamin J. L. Kendrick,Adrian H. Taylor,Rasheed Afinowi-Luitz,Roger Gundle,Bridget Watkins,Kim Wheway, Debra Beazley, Alex Murison, Alicia G. Aguilar-Navarro, Eugenia Flores-Figueroa, Stephanie G. Dakin, Andrew J. Carr, Claus Nerlov, John E. Dick, Stephanie Z. Xie, Paresh Vyas

CELL STEM CELL(2024)

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摘要
Clonal hematopoiesis (CH) arises when hematopoietic stem cells (HSCs) acquire mutations, most frequently in the DNMT3A and TET2 genes, conferring a competitive advantage through mechanisms that remain unclear. To gain insight into how CH mutations enable gradual clonal expansion, we used single-cell multi-omics with high-fidelity genotyping on human CH bone marrow (BM) samples. Most of the selective advantage of mutant cells occurs within HSCs. DNMT3A- and TET2-mutant clones expand further in early progenitors, while TET2 mutations accelerate myeloid maturation in a dose-dependent manner. Unexpectedly, both mutant and non-mutant HSCs from CH samples are enriched for inflammatory and aging transcriptomic signatures, compared with HSCs from non-CH samples, revealing a non-cell-autonomous effect. However, DNMT3A- and TET2-mutant HSCs have an attenuated inflammatory response relative to wild-type HSCs within the same sample. Our data support a model whereby CH clones are gradually selected because they are resistant to the deleterious impact of inflammation and aging.
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clonal hematopoiesis,hematopoietic stem cells,DNMT3A,TET2,aging,single-cell genomics,single-cell RNA-seq,clonal competition,somatic mosaicism
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