Chalandon Y, Jiang X, Loutet S, Eaves A C, Eaves C J
Terry Fox Laboratory, British Columbia Cancer Agency, Vancouver, Canada.
Leukemia. 2004 May;18(5):1006-12. doi: 10.1038/sj.leu.2403335.
The tyrosine kinase activity of p210BCR-ABL is essential to its leukemogenic potential, but the role of other functional domains in primary human hematopoietic cells has not been previously investigated. Here we show that infection of normal human CD34+ cord blood (CB) cells with a retroviral vector encoding p210BCR-ABL rapidly activates a factor-independent phenotype and autocrine interleukin-3/granulocyte colony-stimulating factor/erythropoietin production in the transduced cells. These changes are characteristic of primitive chronic myeloid leukemic (CML) cells and are important to the leukemogenicity of BCR-ABL-transduced murine hematopoietic stem cells. When BCR-ABL-transduced human CB cells were incubated with imatinib mesylate, an inhibitor of the p210BCR-ABL kinase, or when human CB cells were transduced with a BCR-ABL cDNA lacking the SH2 domain (p210DeltaSH2), factor independence was significantly reduced. In contrast, deletion of the SH2 domain had little impact on the p210BCR-ABL kinase-dependent promotion of erythropoietic differentiation also seen immediately following the BCR-ABL transduction of primitive human CB cells, but not in naturally occurring CML. Thus, p210BCR-ABL has distinct biological effects in primary human hematopoietic cells, which variably mimic features of human CML, and activation of these changes can show different dependencies on the integrity of the SH1 and SH2 domains of p210BCR-ABL.
p210BCR-ABL的酪氨酸激酶活性对其致白血病潜能至关重要,但其他功能域在原代人造血细胞中的作用此前尚未得到研究。在此我们表明,用编码p210BCR-ABL的逆转录病毒载体感染正常人CD34+脐血(CB)细胞,可迅速激活转导细胞中的因子非依赖表型,并使其自分泌白细胞介素-3/粒细胞集落刺激因子/促红细胞生成素。这些变化是原始慢性髓性白血病(CML)细胞的特征,对BCR-ABL转导的小鼠造血干细胞的致白血病性很重要。当将BCR-ABL转导的人CB细胞与p210BCR-ABL激酶抑制剂甲磺酸伊马替尼一起孵育时,或者当用人CB细胞转导缺乏SH2结构域的BCR-ABL cDNA(p210DeltaSH2)时,因子非依赖性会显著降低。相反,SH2结构域的缺失对p210BCR-ABL激酶依赖性促进红细胞生成分化的影响很小,这种促进作用在原始人CB细胞进行BCR-ABL转导后也可立即见到,但在自然发生的CML中则不然。因此,p210BCR-ABL在原代人造血细胞中具有不同的生物学效应,这些效应不同程度地模拟了人类CML的特征,并且这些变化的激活对p210BCR-ABL的SH1和SH2结构域的完整性可能表现出不同的依赖性。