Suh Hyung Chan, Ji Ming, Gooya John, Lee Michael, Klarmann Kimberly D, Keller Jonathan R
Basic Research Program, SAIC-Frederick Inc, Center For Cancer Research, National Cancer Institute-Frederick, Frederick, MD 21702-1201, USA.
Blood. 2009 Aug 6;114(6):1186-95. doi: 10.1182/blood-2008-09-179788. Epub 2009 May 28.
Development of hematopoietic stem cells (HSCs) and their immediate progeny is maintained by the interaction with cells in the microenvironment. We found that hematopoiesis was dysregulated in Id1(-/-) mice. Although the frequency of HSCs in Id1(-/-) bone marrow was increased, their total numbers remained unchanged as the result of decreased bone marrow cellularity. In addition, the ability of Id1(-/-) HSCs to self-renew was normal, suggesting Id1 does not affect HSC function. Id1(-/-) progenitors showed increased cycling in vivo but not in vitro, suggesting cell nonautonomous mechanisms for the increased cycling. Id1(-/-) HSCs developed normally when transplanted into Id1(+/+) mice, whereas the development of Id1(+/+) HSCs was impaired in Id1(-/-) recipients undergoing transplantation and reproduced the hematologic features of Id1(-/-) mice, indicating that the Id1(-/-) microenvironment cannot support normal hematopoietic development. Id1(-/-) stromal cells showed altered production of cytokines in vitro, and cytokine levels were deregulated in vivo, which could account for the Id1(-/-) hematopoietic phenotypes. Thus, Id1 is required for regulating the hematopoietic progenitor cell niche but is dispensable for maintaining HSCs.
造血干细胞(HSCs)及其直接子代细胞的发育是通过与微环境中的细胞相互作用来维持的。我们发现,Id1基因敲除(Id1(-/-))小鼠的造血功能失调。尽管Id1(-/-)小鼠骨髓中造血干细胞的频率增加,但由于骨髓细胞数量减少,其总数保持不变。此外,Id1(-/-)造血干细胞的自我更新能力正常,这表明Id1不影响造血干细胞的功能。Id1(-/-)祖细胞在体内的增殖增加,但在体外未增加,这表明增殖增加存在细胞非自主机制。当将Id1(-/-)造血干细胞移植到Id1(+/+)小鼠体内时,其发育正常,而在接受移植且出现Id1(-/-)小鼠血液学特征的Id1(-/-)受体中,Id1(+/+)造血干细胞的发育受损,这表明Id1(-/-)微环境不能支持正常的造血发育。Id1(-/-)基质细胞在体外显示出细胞因子产生的改变,且体内细胞因子水平失调,这可能解释了Id1(-/-)的造血表型。因此,Id1是调节造血祖细胞生态位所必需的,但对维持造血干细胞并非必不可少。