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Alcam 调节长期造血干细胞植入和自我更新。

Alcam regulates long-term hematopoietic stem cell engraftment and self-renewal.

机构信息

Division of Hematopoietic Stem Cell and Leukemia Research, Department of Hematology and Hematopoietic Cell Transplantation, Beckman Research Institute of City of Hope, Duarte, California 91010, USA.

出版信息

Stem Cells. 2013 Mar;31(3):560-71. doi: 10.1002/stem.1309.

Abstract

Hematopoietic stem cells (HSCs) reside in a specialized bone marrow (BM) microenvironment that supports the maintenance and functional integrity of long-term (LT)-HSCs throughout postnatal life. The objective of this work is to study the role of activated leukocyte cell adhesion molecule (Alcam) in HSC differentiation and self-renewal using an Alcam-null (Alcam(-/-) ) mouse model. We show here that Alcam is differentially regulated in adult hematopoiesis and is highly expressed in LT-HSCs where its level progressively increases with age. Young adult Alcam(-/-) mice had normal homeostatic hematopoiesis and normal numbers of phenotypic HSCs. However, Alcam(-/-) HSCs had reduced long-term replating capacity in vitro and reduced long-term engraftment potential upon transplantation. We show that Alcam(-/-) BM contain a markedly lower frequency of long-term repopulating cells than wild type. Further, the long-term repopulating potential and engraftment efficiency of Alcam(-/-) LT-HSCs was greatly compromised despite a progressive increase in phenotypic LT-HSC numbers during long-term serial transplantation. In addition, an age-associated increase in phenotypic LT-HSC cellularity was observed in Alcam(-/-) mice. This increase was predominately within the CD150(hi) fraction and was accompanied by significantly reduced leukocyte output. Consistent with an aging-like phenotype, older Alcam(-/-) LT-HSCs display myeloid-biased repopulation activity upon transplantation. Finally, Alcam(-/-) LT-HSCs display premature elevation of age-associated gene expression, including Selp, Clu, Cdc42, and Foxo3. Together, this study indicates that Alcam regulates functional integrity and self-renewal of LT-HSCs.

摘要

造血干细胞(HSCs)存在于特定的骨髓(BM)微环境中,该微环境支持长期(LT)-HSCs 在出生后的整个生命周期中的维持和功能完整性。本研究旨在利用 Alcam 缺失(Alcam(-/-))小鼠模型研究活化白细胞细胞黏附分子(Alcam)在 HSC 分化和自我更新中的作用。我们在此表明,Alcam 在成人造血中受到差异调控,在 LT-HSCs 中高度表达,其水平随年龄逐渐增加。年轻成年 Alcam(-/-) 小鼠具有正常的稳态造血和正常数量的表型 HSCs。然而,Alcam(-/-) HSCs 的体外长期培养能力和移植后的长期植入能力降低。我们表明,Alcam(-/-) BM 中具有长期重建造血能力的细胞频率明显低于野生型。此外,尽管在长期连续移植过程中表型 LT-HSC 数量逐渐增加,但 Alcam(-/-) LT-HSCs 的长期重建造血潜能和植入效率严重受损。此外,在 Alcam(-/-) 小鼠中观察到表型 LT-HSC 细胞数量随年龄增长而增加。这种增加主要发生在 CD150(hi) 亚群中,并且伴随着白细胞输出明显减少。与衰老表型一致,年龄较大的 Alcam(-/-) LT-HSCs 在移植后显示出偏嗜骨髓的重建造血活性。最后,Alcam(-/-) LT-HSCs 显示出与年龄相关的基因表达的过早升高,包括 Selp、Clu、Cdc42 和 Foxo3。总之,这项研究表明 Alcam 调节 LT-HSCs 的功能完整性和自我更新。

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