Nakauchi H, Takano H, Ema H, Osawa M
Department of Immunology, Institute of Basic Medical Sciences, Ibaraki, Japan.
Ann N Y Acad Sci. 1999 Apr 30;872:57-66; discussion 66-70. doi: 10.1111/j.1749-6632.1999.tb08453.x.
We have previously reported that in adult mouse bone marrow, CD34low/- c-kit+ Sca-1+ lineage markers negative (Lin-) (CD34-KSL) cells represent hematopoietic stem cells with long-term marrow repopulating ability whereas CD34+ c-kit+ Sca-1+ Lin- (CD34+KSL) cells are progenitors with short-term reconstitution capacity. To further characterize cells in those two populations, relative expression of various genes were examined by reverse transcriptase polymerase chain reaction (RT-PCR). In CD34-KSL cells, none of the genes studied was found to be expressed with the exception of GATA-2, IL-1R alpha, IL-2R gamma, AIC-2B, c-kit, EPO-R, and c-mpl. In contrast, expression of GATA-1 and all cytokine receptor genes examined except IL-2R beta, IL-7R alpha and IL-9R alpha were found in CD34+KSL. The difference between these two populations was also shown in single cell culture analysis of these cells. When cells were clone-sorted and cultured in the presence of SCF, IL-3 and EPO, CD34-KSL cells required much more time to undergo the first cell division than CD34+KSL cells. Dormancy and random fashion of cell division by CD34-KSL cells were also evident by the analysis of the second cell division, which was found to be delayed and unsynchronous compared with CD34+KSL cells. Clonal culture analysis showed that CD34-KSL cells were more potent in proliferation and multilineage differentiation capacities than CD34+KSL cells. In a paired-daughter cell experiment, 75% of CD34-KSL and 50% of CD34+KSL paired-daughter-derived colonies were nonidentical with wide variety of lineage combinations. Taken together, these data support our previous notion that CD34-KSL cells are at higher rank in hematopoietic hierarchy than CD34+KSL cells. In addition, our results using highly enriched stem cell population directly obtained from mouse bone marrow support the proposed stochastic nature of lineage commitment.
我们之前报道过,在成年小鼠骨髓中,CD34low/- c-kit+ Sca-1+ 谱系标志物阴性(Lin-)(CD34-KSL)细胞代表具有长期骨髓重建能力的造血干细胞,而CD34+ c-kit+ Sca-1+ Lin-(CD34+KSL)细胞是具有短期重建能力的祖细胞。为了进一步表征这两个群体中的细胞,通过逆转录聚合酶链反应(RT-PCR)检测了各种基因的相对表达。在CD34-KSL细胞中,除了GATA-2、IL-1Rα、IL-2Rγ、AIC-2B、c-kit、EPO-R和c-mpl外,未发现所研究的基因有表达。相反,在CD34+KSL中发现了GATA-1以及除IL-2Rβ、IL-7Rα和IL-9Rα之外的所有检测到的细胞因子受体基因的表达。这两个群体之间的差异在这些细胞的单细胞培养分析中也得到了体现。当细胞在SCF、IL-3和EPO存在的情况下进行克隆分选和培养时,CD34-KSL细胞比CD34+KSL细胞需要更多时间进行第一次细胞分裂。通过对第二次细胞分裂的分析也明显看出CD34-KSL细胞的休眠和随机细胞分裂方式,与CD34+KSL细胞相比,第二次细胞分裂被发现延迟且不同步。克隆培养分析表明,CD34-KSL细胞在增殖和多谱系分化能力方面比CD34+KSL细胞更强。在配对子细胞实验中,75%的CD34-KSL和50%的CD34+KSL配对子细胞衍生的集落具有多种谱系组合,互不相同。综上所述,这些数据支持了我们之前的观点,即CD34-KSL细胞在造血层次结构中比CD34+KSL细胞处于更高等级。此外,我们使用直接从小鼠骨髓中获得的高度富集的干细胞群体的结果支持了所提出的谱系定向的随机性。