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SZT2 maintains hematopoietic stem cell homeostasis via nutrient-mediated mTORC1 regulation
Na Yin, Gang Jin, Yuying Ma, Hanfei Zhao, Guangyue Zhang, Ming O. Li, Min Peng
Na Yin, Gang Jin, Yuying Ma, Hanfei Zhao, Guangyue Zhang, Ming O. Li, Min Peng
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Research Article Hematology Metabolism

SZT2 maintains hematopoietic stem cell homeostasis via nutrient-mediated mTORC1 regulation

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Abstract

The mTORC1 pathway coordinates nutrient and growth factor signals to maintain organismal homeostasis. Whether nutrient signaling to mTORC1 regulates stem cell function remains unknown. Here, we show that SZT2 — a protein required for mTORC1 downregulation upon nutrient deprivation — is critical for hematopoietic stem cell (HSC) homeostasis. Ablation of SZT2 in HSCs decreased the reserve and impaired the repopulating capacity of HSCs. Furthermore, ablation of both SZT2 and TSC1 — 2 repressors of mTORC1 on the nutrient and growth factor arms, respectively — led to rapid HSC depletion, pancytopenia, and premature death of the mice. Mechanistically, loss of either SZT2 or TSC1 in HSCs led to only mild elevation of mTORC1 activity and reactive oxygen species (ROS) production. Loss of both SZT2 and TSC1, on the other hand, simultaneously produced a dramatic synergistic effect, with an approximately 10-fold increase of mTORC1 activity and approximately 100-fold increase of ROS production, which rapidly depleted HSCs. These data demonstrate a critical role of nutrient mTORC1 signaling in HSC homeostasis and uncover a strong synergistic effect between nutrient- and growth factor–mediated mTORC1 regulation in stem cells.

Authors

Na Yin, Gang Jin, Yuying Ma, Hanfei Zhao, Guangyue Zhang, Ming O. Li, Min Peng

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Figure 2

Loss of both SZT2 and TSC1 results in rapid HSC depletion, pancytopenia and early lethality of mice in a mTORC1-dependent manner.

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Loss of both SZT2 and TSC1 results in rapid HSC depletion, pancytopenia ...
(A) Survival curves of VavCreSzt2fl/fl (SZT2-KO), VavCreTsc1fl/fl (TSC1-KO), VavCreSzt2fl/fl flTsc1fl/fl (DKO) and VavCreSzt2fl/fl Tsc1fl/flRptorfl/fl (TKO) mice. (B) Total cell numbers of BM from mice with indicated genotypes at 4 weeks old, n = 6–12 mice per genotype. (C and D) Flow cytometry analysis of frequencies of Lin–c-Kit+Sca-I+ (LSK), Lin–c-Kit+Sca-I– (MPP), and CD48–CD150+ LSK (LT-HSC) populations in BM of mice with indicated genotypes. Representative plots (C) and quantification (D) are shown. Data shown are representative of 3 independent experiments. In B and D, data represent mean ± SEM, 1-way ANOVA followed by Dunnett’s test, *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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