Xenaki Dia, Pierce Andrew, Underhill-Day Nick, Whetton Anthony D, Owen-Lynch P Jane
Biological Sciences, IENS, Lancaster University, Lancaster LA1 4YQ, UK.
Cell Signal. 2004 Feb;16(2):145-56. doi: 10.1016/s0898-6568(03)00101-3.
Bcr-Abl protein tyrosine kinase (PTK) activity is a feature of chronic myeloid leukaemia and confers a survival advantage on haemopoietic progenitor cells. We have expressed conditional mutant of the Bcr-Abl PTK in the FDCP-Mix A4 multipotent haematopoietic cell line in order to examine the molecular mechanisms whereby Bcr-Abl PTK leads to enhanced cell survival under conditions in which normal cells die. Activation of Bcr-Abl PTK does not phosphorylate or activate either ERK-1/2 or JAK-2/STAT-5b, suggesting that these signal transduction pathways are not involved in Abl PTK-mediated suppression of apoptosis in FDCP-Mix cells. However, protein kinase C (PKC) does have a role to play. Inhibition of PKC results in a reversal of Bcr-Abl PTK-mediated survival in the absence of growth factor and Bcr-Abl stimulates translocation of the PKCbetaII isoform to the nucleus. Furthermore, expression of a constitutively activated PKCbetaII in haemopoietic progenitor FDCP-Mix cells stimulates enhanced cell survival when IL-3 is withdrawn. However, expression of this constitutively activated PKC isoform does not suppress cytotoxic drug-induced apoptosis. Thus Bcr-Abl PTK has pleiotropic effects which can suppress cell death induced by a number of stimuli.
Bcr-Abl蛋白酪氨酸激酶(PTK)活性是慢性粒细胞白血病的一个特征,赋予造血祖细胞生存优势。我们在FDCP-Mix A4多能造血细胞系中表达了Bcr-Abl PTK的条件性突变体,以研究在正常细胞死亡的条件下Bcr-Abl PTK导致细胞生存增强的分子机制。Bcr-Abl PTK的激活既不使ERK-1/2磷酸化或激活,也不使JAK-2/STAT-5b磷酸化或激活,这表明这些信号转导途径不参与Abl PTK介导的FDCP-Mix细胞凋亡抑制。然而,蛋白激酶C(PKC)确实发挥了作用。PKC的抑制导致在缺乏生长因子的情况下Bcr-Abl PTK介导的细胞生存逆转,并且Bcr-Abl刺激PKCβII亚型易位至细胞核。此外,在造血祖细胞FDCP-Mix细胞中组成性激活的PKCβII的表达在撤除IL-3时刺激细胞生存增强。然而,这种组成性激活的PKC亚型的表达并不抑制细胞毒性药物诱导的凋亡。因此,Bcr-Abl PTK具有多效性作用,可抑制多种刺激诱导的细胞死亡。