TY - JOUR
T1 - Limited rejuvenation of aged hematopoietic stem cells in young bone marrow niche
AU - Kuribayashi, Wakako
AU - Oshima, Motohiko
AU - Itokawa, Naoki
AU - Koide, Shuhei
AU - Nakajima-Takagi, Yaeko
AU - Yamashita, Masayuki
AU - Yamazaki, Satoshi
AU - Rahmutulla, Bahityar
AU - Miura, Fumihito
AU - Ito, Takashi
AU - Kaneda, Atsushi
AU - Iwama, Atsushi
N1 - Publisher Copyright:
© 2020 Kuribayashi et al.
PY - 2021/3/1
Y1 - 2021/3/1
N2 - Hematopoietic stem cells (HSCs) exhibit functional alterations, such as reduced regenerative capacity and myeloid-biased differentiation, with age. The HSC niche, which is essential for the maintenance of HSCs, also undergoes marked changes with aging. However, it has been technically challenging to directly evaluate the contribution of niche aging to age-associated HSC alterations without niche-damaging myeloablation in HSC transplantation assays. We herein transplanted an excess of aged HSCs into young mice without preconditioning. Although aged HSCs successfully engrafted in the intact young bone marrow niche, they poorly regenerated downstream progenitors and exhibited persistent myeloid-biased differentiation, resulting in no significant functional rejuvenation. Transcriptome and methylome analyses revealed that the young niche largely restored the transcriptional profile of aged HSCs, but not their DNA methylation profiles. Therefore, the restoration of the young niche is insufficient for rejuvenating HSC functions, highlighting a key role for age-associated cell-intrinsic defects in HSC aging.
AB - Hematopoietic stem cells (HSCs) exhibit functional alterations, such as reduced regenerative capacity and myeloid-biased differentiation, with age. The HSC niche, which is essential for the maintenance of HSCs, also undergoes marked changes with aging. However, it has been technically challenging to directly evaluate the contribution of niche aging to age-associated HSC alterations without niche-damaging myeloablation in HSC transplantation assays. We herein transplanted an excess of aged HSCs into young mice without preconditioning. Although aged HSCs successfully engrafted in the intact young bone marrow niche, they poorly regenerated downstream progenitors and exhibited persistent myeloid-biased differentiation, resulting in no significant functional rejuvenation. Transcriptome and methylome analyses revealed that the young niche largely restored the transcriptional profile of aged HSCs, but not their DNA methylation profiles. Therefore, the restoration of the young niche is insufficient for rejuvenating HSC functions, highlighting a key role for age-associated cell-intrinsic defects in HSC aging.
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U2 - 10.1084/jem.20192283
DO - 10.1084/jem.20192283
M3 - Article
C2 - 33231616
AN - SCOPUS:85096884254
SN - 0022-1007
VL - 218
JO - Journal of Experimental Medicine
JF - Journal of Experimental Medicine
IS - 3
ER -