细胞生物学
重编程
造血
干细胞
生物
祖细胞
再生医学
调节器
造血干细胞
移植
下调和上调
转录组
免疫学
细胞分化
细胞
细胞疗法
异位表达
免疫系统
造血干细胞移植
成体干细胞
组织工程
祖细胞
作者
Yuehua Chen,Jinghao Shen,Zaisheng Lin,Qingwei Ding,Xiashiyao Zhang,Meng Zhang,Haoxiang Yang,Han Yao,Sheng Liu,Jun Wan,Shize Liu,Xiaopeng Jia,Xiaodong Wang,Uet Yu,Siguo Hao,Muqing Cao,Hongyuan Jiang,Bin Guo
出处
期刊:Blood
[Elsevier BV]
日期:2026-02-11
卷期号:147 (18): 2064-2080
被引量:1
标识
DOI:10.1182/blood.2025031247
摘要
ABSTRACT: Hematopoietic stem cell (HSC) transplantation is a life-saving therapy for immune deficiencies and hematologic malignancies, but its efficacy is limited by poor engraftment. Therapeutic enhancement of HSC grafts requires deeper insight into the intrinsic determinants of their regenerative capacity. Here, we identify mechanical robustness as a critical feature distinguishing human HSCs from multipotent progenitors (MPPs). Through integrative biomechanical and transcriptomic profiling, we reveal that ZNF467 is a key regulator of HSC mechanical integrity. Loss of ZNF467 disrupts HSC mechanical fitness and abolishes long-term engraftment. Conversely, an engineered phase-separating ZNF467 variant enhanced mechanical strength and engraftment by activating a mechanoresponsive transcriptional program, including upregulation of ICAM1. ICAM1+ hematopoietic stem and progenitor cells exhibit superior biomechanical properties and improved engraftment efficiency. Furthermore, the phase-separation activity of nucleoplasmic ZNF467 (npZNF467) is crucial for its mechanical reprogramming function, and ectopic npZNF467 expression enhances the engraftment capacity of MPPs. Our findings establish biomechanical regulation as an important determinant of stem cell identity and reveal new strategies for engineering stem cells with enhanced regenerative capacity.
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