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Restraining Lysosomal Activity Preserves Hematopoietic Stem Cell Quiescence and Potency.

Cell stem cell (2020-02-29)
Raymond Liang, Tasleem Arif, Svetlana Kalmykova, Artem Kasianov, Miao Lin, Vijay Menon, Jiajing Qiu, Jeffrey M Bernitz, Kateri Moore, Fangming Lin, Deanna L Benson, Nikolaos Tzavaras, Milind Mahajan, Dmitri Papatsenko, Saghi Ghaffari
ABSTRACT

Quiescence is a fundamental property that maintains hematopoietic stem cell (HSC) potency throughout life. Quiescent HSCs are thought to rely on glycolysis for their energy, but the overall metabolic properties of HSCs remain elusive. Using combined approaches, including single-cell RNA sequencing (RNA-seq), we show that mitochondrial membrane potential (MMP) distinguishes quiescent from cycling-primed HSCs. We found that primed, but not quiescent, HSCs relied readily on glycolysis. Notably, in vivo inhibition of glycolysis enhanced the competitive repopulation ability of primed HSCs. We further show that HSC quiescence is maintained by an abundance of large lysosomes. Repression of lysosomal activation in HSCs led to further enlargement of lysosomes while suppressing glucose uptake. This also induced increased lysosomal sequestration of mitochondria and enhanced the competitive repopulation ability of primed HSCs by over 90-fold in vivo. These findings show that restraining lysosomal activity preserves HSC quiescence and potency and may be therapeutically relevant.

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Doxiciclina
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Ioduro di propidio, ≥94.0% (HPLC)
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2-deossi-D-glucosio, ≥98% (GC), crystalline
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Leupeptina, microbial, ≥90% (HPLC)
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Carbonyl cyanide 3-chlorophenylhydrazone, ≥97% (TLC), powder
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Dimethyl 2-oxoglutarate, 96%
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Tetramethylrhodamine ethyl ester perchlorate, suitable for fluorescence, ≥90% (HPCE)
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α-Cyano-4-hydroxycinnamic acid, ≥98% (TLC), powder
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Methyl pyruvate, 90%, technical grade
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LB Broth with agar (Lennox), EZMix powder microbial growth medium
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Pyronin Y, for microscopy (Bot., Fl., Hist.)