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CD150 high CD4 T cells and CD150 high regulatory T cells regulate hematopoietic stem cell quiescence via CD73

机译:CD150 high CD4 T细胞和CD150 high 调节性T细胞通过CD73调节造血干细胞的静止

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Various extrinsic signals tightly control hematopoietic stem cell quiescence. Our recent study showed that hematopoietic stem cells are regulated by a special FoxP3 ~(+) regulatory T-cell population with high expression of a hematopoietic stem cell marker, CD150. Extracellular adenosine generated via a cell-surface ectoenzyme CD39 on CD150 ~(high) regulatory T cells maintained hematopoietic stem cell quiescence. It remains unclear how conventional T cells and the other cell-surface ectoenzyme, CD73, contribute to regulation of hematopoietic stem cells. This work shows that CD150 ~(high) regulatory T cells as well as unique CD150 ~(high) CD4 ~(+) conventional T cells regulate hematopoietic stem cells via CD73. Global CD73 deletion increased the numbers of hematopoietic stem cells, cycling stem cell frequencies, and levels of reactive oxygen species in hematopoietic stem cells. In vivo antioxidant treatment inhibited the increase of hematopoietic stem cells in CD73 knockout mice, suggesting that CD73 maintains stem cell quiescence by preventing oxidative stress. High levels of CD73 expression were frequently found on CD150 ~(high) regulatory T cells and CD150 ~(high) FoxP3 ~(?)CD4 ~(+) T cells within the bone marrow. Transfer of these CD150 ~(high) regulatory T cells and CD150 ~(high) CD4 ~(+) conventional T cells abolished the increase of hematopoietic stem cells in CD73 knockout mice. In addition, the increase of stem cells in CD73 knockout mice was also inhibited by pharmacological activation of adenosine receptor 2A which is highly expressed by hematopoietic stem cells. Taken together, these results suggest that CD73 of CD150 ~(high) regulatory T cells and CD150 ~(high) CD4 ~(+) conventional T cells protects hematopoietic stem cells from oxidative stress, maintaining stem cell quiescence via adenosine receptor 2A.
机译:各种外部信号严格控制造血干细胞的静止。我们最近的研究表明,造血干细胞受具有特殊表达的造血干细胞标志物CD150高表达的特殊FoxP3〜(+)调节性T细胞群体调控。通过CD150〜(高)调节性T细胞上的细胞表面胞外酶CD39产生的胞外腺苷维持造血干细胞的静止。尚不清楚常规T细胞和其他细胞表面外切酶CD73如何对造血干细胞的调节作出贡献。这项工作表明CD150〜(高)调节性T细胞以及独特的CD150〜(高)CD4〜(+)常规T细胞通过CD73调节造血干细胞。总体CD73删除增加了造血干细胞的数量,循环干细胞的频率以及造血干细胞中活性氧的水平。体内抗氧化剂治疗抑制了CD73基因敲除小鼠中造血干细胞的增加,表明CD73通过防止氧化应激来维持干细胞的静止。经常在骨髓内的CD150-(高)调节性T细胞和CD150-(高)FoxP3〜(α)CD4〜(+)T细胞上发现高水平的CD73表达。这些CD150〜(高)调节性T细胞和CD150〜(高)CD4〜(+)常规T细胞的转移消除了CD73基因敲除小鼠中造血干细胞的增加。此外,CD73基因敲除小鼠中干细胞的增加也受到造血干细胞高度表达的腺苷受体2A的药理活化作用的抑制。综上所述,这些结果表明CD150〜(高)调节性T细胞的CD73和CD150〜(高)CD4〜+的常规T细胞可保护造血干细胞免受氧化应激,通过腺苷受体2A维持干细胞静止。

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