Salomoni P, Wasik M A, Riedel R F, Reiss K, Choi J K, Skorski T, Calabretta B
Department of Microbiology and Immunology, Kimmel Cancer Center, Thomas Jefferson University, Philadelphia, Pennsylvania 19107, USA.
J Exp Med. 1998 Jun 15;187(12):1995-2007. doi: 10.1084/jem.187.12.1995.
The oncogenic BCR/ABL protein protects hematopoietic cells from apoptosis induced by growth factor deprivation, but the mechanisms are only partially understood. A BCR/ABL mutant lacking amino acids 176-426 in the BCR domain (p185DeltaBCR) failed to protect interleukin 3-deprived 32Dcl3 myeloid precursor cells from apoptosis, although it possessed tyrosine kinase activity and was capable of activating the Ras-Raf-MAP kinase pathway. Compared to p185 wild-type transfectants, p185DeltaBCR-transfected cells showed markedly reduced levels of Bcl-2 and expressed the hypophosphorylated, proapoptotic form of BAD. Bcl-2 expression in the mitochondrial fraction of p185DeltaBCR cells was also markedly diminished and mitochondrial RAF was undetectable. In p185DeltaBCR cells transfected with a mitochondria-targeted, constitutively active RAF (M-Raf) BAD was expressed in the hyperphosphorylated form and released from the mitochondria into the cytosol. p185DeltaBCR/M-Raf-transfected cells were completely resistant to apoptosis induced by growth factor deprivation in vitro. Moreover, constitutive expression of dominant-negative M-Raf (K375W) enhanced the susceptibility of 32Dcl3 cells expressing wild-type BCR/ABL to apoptosis. In severe combined immunodeficiency (SCID) mice, p185DeltaBCR/M-Raf double transfectants were leukemogenic, whereas cells expressing only p185DeltaBCR showed no leukemogenic potential. Together, these data support the existence of a BCR/ABL-dependent pathway that leads to expression of an active RAF in the mitochondria and promotes antiapoptotic and leukemia-inducing effects of BCR/ABL.
致癌性BCR/ABL蛋白可保护造血细胞免受生长因子剥夺诱导的凋亡,但其机制仅得到部分了解。一种在BCR结构域中缺失氨基酸176 - 426的BCR/ABL突变体(p185DeltaBCR)无法保护白细胞介素3剥夺的32Dcl3髓系前体细胞免于凋亡,尽管它具有酪氨酸激酶活性且能够激活Ras - Raf - MAP激酶途径。与p185野生型转染细胞相比,p185DeltaBCR转染细胞的Bcl - 2水平显著降低,并表达低磷酸化的促凋亡形式的BAD。p185DeltaBCR细胞线粒体部分的Bcl - 2表达也显著减少,且未检测到线粒体RAF。在转染了线粒体靶向的组成型活性RAF(M - Raf)的p185DeltaBCR细胞中,BAD以高磷酸化形式表达并从线粒体释放到细胞质中。p185DeltaBCR/M - Raf转染细胞在体外对生长因子剥夺诱导的凋亡完全抗性。此外,显性负性M - Raf(K375W)的组成型表达增强了表达野生型BCR/ABL的32Dcl3细胞对凋亡的敏感性。在严重联合免疫缺陷(SCID)小鼠中,p185DeltaBCR/M - Raf双转染细胞具有致白血病性,而仅表达p185DeltaBCR的细胞没有致白血病潜力。总之,这些数据支持存在一条BCR/ABL依赖性途径,该途径导致线粒体中活性RAF的表达,并促进BCR/ABL的抗凋亡和白血病诱导作用。