Georgantas Robert W, Tanadve Vivek, Malehorn Matthew, Heimfeld Shelly, Chen Chen, Carr Laura, Martinez-Murillo Francisco, Riggins Greg, Kowalski Jeanne, Civin Curt I
Department of Oncology and Sidney Kimmel Comprehensive Cancer Center at Johns Hopkins, Baltimore, Maryland 21231, USA.
Cancer Res. 2004 Jul 1;64(13):4434-41. doi: 10.1158/0008-5472.CAN-03-3247.
The human CD34(+)/CD38(-)/Lin(-) cell subset, comprising approximately 1-10% of the CD34(+) cell population, contains few of the less primitive hematopoietic (lineage-committed) progenitor cells (HPCs) but most of the primitive in vivo engrafting (lympho-)hematopoietic stem cells (HSCs). We analyzed gene expression in CD34(+)/CD38(-)/Lin(-) cell populations isolated from normal human adult donor bone marrow, neonatal placental/umbilical cord blood, and mobilized adult donor peripheral blood stem-progenitor cells. As measured by Affymetrix microarrays, 4746 genes were expressed in CD34(+)/CD38(-)/Lin(-) cells from all three tissues. We also determined the transcriptomes of the stem cell-depleted, HPC-enriched CD34(+)/CD38/Lin cell population from each tissue. Comparison of CD34(+)/CD38(-)/Lin(-) (HSC-enriched) versus CD34(+)/CD38/Lin (HPC-enriched, HSC-depleted) cells from each tissue yielded 81 genes overrepresented and 90 genes underrepresented, common to all three of the CD34(+)/CD38(-)/Lin(-) cell populations. These transcripts, which are selectively expressed in HSCs from all three tissues, include a number of known genes (e.g., transcription factors, receptors, and signaling molecules) that might play roles in key functions (e.g., survival, self-renewal, differentiation, and/or migration/adhesion) of human HSCs. Many genes/transcripts of unknown function were also detected by microarray analysis. Serial analysis of gene expression of the bone marrow HSC and HPC populations confirmed expression of most of the overrepresented transcripts for which reliable serial analysis of gene expression tags were detected and additionally suggested that current microarrays do not detect as many as 30% of the transcripts expressed in HSCs, including a number of previously unknown transcripts. This work is a step toward full definition of the transcriptome of normal human HSCs and may identify new genes involved in leukemogenesis and cancer stem cells.
人类CD34(+)/CD38(-)/Lin(-)细胞亚群约占CD34(+)细胞群体的1% - 10%,其中几乎没有较不原始的造血(谱系定向)祖细胞(HPC),但包含了大多数体内具有原始植入能力的(淋)造血干细胞(HSC)。我们分析了从正常成人供体骨髓、新生儿胎盘/脐带血以及动员的成人供体外周血干细胞 - 祖细胞中分离出的CD34(+)/CD38(-)/Lin(-)细胞群体中的基因表达。通过Affymetrix微阵列检测,所有三种组织来源的CD34(+)/CD38(-)/Lin(-)细胞中均有4746个基因表达。我们还测定了每个组织中干细胞耗竭、HPC富集的CD34(+)/CD38/Lin细胞群体的转录组。对每个组织的CD34(+)/CD38(-)/Lin(-)(富含HSC)与CD34(+)/CD38/Lin(富含HPC、耗竭HSC)细胞进行比较,发现所有三个CD34(+)/CD38(-)/Lin(-)细胞群体共有81个基因过度表达,90个基因表达不足。这些在所有三种组织来源的HSC中选择性表达的转录本,包括一些已知基因(如转录因子、受体和信号分子),它们可能在人类HSC的关键功能(如存活、自我更新、分化和/或迁移/黏附)中发挥作用。通过微阵列分析还检测到许多功能未知的基因/转录本。对骨髓HSC和HPC群体进行基因表达序列分析,证实了大多数过度表达转录本的表达,对于这些转录本检测到了可靠的基因表达序列标签,此外还表明当前的微阵列未能检测到HSC中多达30%的转录本,包括一些先前未知的转录本。这项工作朝着全面定义正常人类HSC的转录组迈出了一步,可能会鉴定出参与白血病发生和癌症干细胞的新基因。