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PMID: 42627902 Published · ppublish English

Geneformer-guided multiomics integration identifies Pbx1 as a network hub of hematopoietic stem cell aging.

Science advances ·Vol. 12 ·No. 34 ·2026-08-21

Kobayashi H, Watanuki S, Shiozawa Y, Oshima M, Koide S, Takayama N, Morikawa T, Haraguchi M, Tamaki S, Asakura T, Miyata T, Iwama A, Ogawa S, Takubo K

Abstract

Hematopoietic stem cells (HSCs) constitute an organized hematopoietic system that undergoes age-related alterations, including increased platelet production and decreased erythropoiesis. The fundamental mechanisms driving these shifts remain incompletely understood. We used single-cell RNA sequencing data to show that old HSCs contain two distinct transcriptional programs: one shared with megakaryocytes and the other reflecting the most primitive HSC state. Developmental time-series profiling further suggests that the acquisition of these programs begins early in life, with the primitive module rising prenatally and megakaryocytic priming emerging after birth. Using a fine-tuned Geneformer (transformer-based deep learning model) to capture higher-order differences between young and old HSCs, coupled with transcriptomic and epigenetic profiling, as well as transcription factor screens, we identified Pbx1 as a key regulator of these age-related transcriptional and differentiation changes. Specifically, Pbx1 suppresses erythroid differentiation by repressing Gata1 expression. These findings provide insight into HSC aging and may inform approaches to modulate age-associated HSC dysfunction.

Article Info
Journal
Science advances
Abbr.
Sci Adv
ISSN
2375-2548
Published
2026-08-21
Language
English
Country/Region
United States
NLM ID
101653440
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