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C 型凝集素样受体 2 在表型定义的造血干细胞群体中特异性指定一个功能上不同的亚群,该亚群有助于新兴巨核细胞生成。

C-type lectin-like receptor 2 specifies a functionally distinct subpopulation within phenotypically defined hematopoietic stem cell population that contribute to emergent megakaryopoiesis.

机构信息

Department of Hematology and Rheumatology, Faculty of Medicine, Kindai University, 377-2, Ohno-higashi, Osaka-sayama, Osaka, Japan.

出版信息

Int J Hematol. 2022 Mar;115(3):310-321. doi: 10.1007/s12185-021-03220-9. Epub 2022 Feb 1.

Abstract

C-type lectin-like receptor 2 (CLEC-2) expressed on megakaryocytes plays important roles in megakaryopoiesis. We found that CLEC-2 was expressed in about 20% of phenotypical long-term hematopoietic stem cells (LT-HSCs), which expressed lower levels of HSC-specific genes and produced larger amounts of megakaryocyte-related molecules than CLEC-2 LT-HSCs. Although CLEC-2 LT-HSCs had immature clonogenic activity, cultured CLEC-2 LT-HSCs preferentially differentiated into megakaryocytes. CLEC-2 HSCs yielded 6.8 times more megakaryocyte progenitors (MkPs) and 6.0 times more platelets 2 weeks and 1 week after transplantation compared with CLEC-2 LT-HSCs. However, platelet yield from CLEC-2 HSCs gradually declined with the loss of MkPs, while CLEC-2 HSCs self-renewed long-term, indicating that CLEC-2 LT-HSCs mainly contribute to early megakaryopoiesis. Treatment with pI:C and LPS increased the proportion of CLEC-2 LT-HSCs within LT-HSCs. Almost all CLEC-2 LT-HSCs were in the G0 phase and barely responded to pI:C. In contrast, 54% of CLEC-2 LT-HSCs were in G0, and pI:C treatment obliged CLEC-2 LT-HSCs to enter the cell cycle and differentiate into megakaryocytes, indicating that CLEC-2 LT-HSCs are primed for cell cycle entry and rapidly yield platelets in response to inflammatory stress. In conclusion, CLEC-2 LT-HSCs appear to act as a reserve for emergent platelet production under stress conditions.

摘要

巨核细胞上表达的 C 型凝集素样受体 2(CLEC-2)在巨核细胞生成中发挥重要作用。我们发现,CLEC-2 在约 20%的表型长时造血干细胞(LT-HSCs)中表达,这些细胞表达的 HSC 特异性基因水平较低,产生的巨核细胞相关分子数量多于 CLEC-2 LT-HSCs。虽然 CLEC-2 LT-HSCs 的克隆形成活性不成熟,但培养的 CLEC-2 LT-HSCs 优先分化为巨核细胞。与 CLEC-2 LT-HSCs 相比,CLEC-2 HSCs 在移植后 2 周和 1 周时产生的巨核细胞祖细胞(MkP)分别增加了 6.8 倍和血小板增加了 6.0 倍。然而,CLEC-2 HSCs 的血小板产量随着 MkP 的丢失而逐渐下降,而 CLEC-2 HSCs 则长期自我更新,表明 CLEC-2 LT-HSCs 主要参与早期巨核细胞生成。用 pI:C 和 LPS 处理增加了 LT-HSCs 中 CLEC-2 LT-HSCs 的比例。几乎所有的 CLEC-2 LT-HSCs 都处于 G0 期,对 pI:C 几乎没有反应。相比之下,54%的 CLEC-2 LT-HSCs 处于 G0 期,pI:C 处理迫使 CLEC-2 LT-HSCs 进入细胞周期并分化为巨核细胞,表明 CLEC-2 LT-HSCs 已经准备好进入细胞周期,并能迅速对炎症应激作出反应生成血小板。总之,CLEC-2 LT-HSCs 似乎在应激条件下充当紧急血小板生成的储备。

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