Epigenetic reversal of hematopoietic stem cell aging in Phf6-knockout mice

被引:0
|
作者
Agnieszka A. Wendorff
S. Aidan Quinn
Silvia Alvarez
Jessie A. Brown
Mayukh Biswas
Thomas Gunning
Teresa Palomero
Adolfo A. Ferrando
机构
[1] Columbia University,Institute for Cancer Genetics
[2] Columbia University Medical Center,Department of Pathology and Cell Biology
[3] Columbia University Medical Center,Department of Pediatrics
[4] Columbia University Medical Center,Department of Systems Biology
[5] Calico Life Sciences,undefined
[6] Regeneron Genetics Center,undefined
来源
Nature Aging | 2022年 / 2卷
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摘要
Aging is characterized by an accumulation of myeloid-biased hematopoietic stem cells (HSCs) with reduced developmental potential. Genotoxic stress and epigenetic alterations have been proposed to mediate age-related HSC loss of regenerative and self-renewal potential. However, the mechanisms underlying these changes remain largely unknown. Genetic inactivation of the plant homeodomain 6 (Phf6) gene, a nucleolar and chromatin-associated factor, antagonizes age-associated HSC decline. Immunophenotyping, single-cell transcriptomic analyses and transplantation assays demonstrated markedly decreased accumulation of immunophenotypically defined HSCs, reduced myeloid bias and increased hematopoietic reconstitution capacity with preservation of lymphoid differentiation potential in Phf6-knockout HSCs from old mice. Moreover, deletion of Phf6 in aged mice rejuvenated immunophenotypic, transcriptional and functional hallmarks of aged HSCs. Long-term HSCs from old Phf6-knockout mice showed epigenetic rewiring and transcriptional programs consistent with decreased genotoxic stress-induced HSC aging. These results identify Phf6 as an important epigenetic regulator of HSC aging.
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页码:1008 / 1023
页数:15
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