Reuther J Y, Reuther G W, Cortez D, Pendergast A M, Baldwin A S
Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599 USA.
Genes Dev. 1998 Apr 1;12(7):968-81. doi: 10.1101/gad.12.7.968.
Bcr-Abl is a chimeric oncoprotein that is strongly implicated in acute lymphoblastic (ALL) and chronic myelogenous leukemias (CML). This deregulated tyrosine kinase selectively causes hematopoietic disorders resembling human leukemias in animal models and transforms fibroblasts and hematopoietic cells in culture. Bcr-Abl also protects cells from death induced on cytokine deprivation or exposure to DNA damaging agents. In addition, the antiapoptotic function of Bcr-Abl is thought to play a necessary role in hematopoietic transformation and potentially in leukemogenesis. The transcription factor NF-kappaB has been identified recently as an inhibitor of apoptosis and as a potential regulator of cellular transformation. This study shows that expression of Bcr-Abl leads to activation of NF-kappaB-dependent transcription by causing nuclear translocation of NF-kappaB as well as by increasing the transactivation function of the RelA/p65 subunit of NF-kappaB. Importantly, this activation is dependent on the tyrosine kinase activity of Bcr-Abl and partially requires Ras. The ability of Bcr-Abl to protect cytokine-dependent 32D myeloid cells from death induced by cytokine deprivation or DNA damage does not, however, require functional NF-kappaB. However, using a super-repressor form of IkappaBalpha, we show that NF-kappaB is required for Bcr-Abl-mediated tumorigenicity in nude mice and for transformation of primary bone marrow cells. This study implicates NF-kappaB as an important component of Bcr-Abl signaling. NF-kappaB-regulated genes, therefore, likely play a role in transformation by Bcr-Abl and thus in Bcr-Abl-associated human leukemias.
Bcr-Abl是一种嵌合癌蛋白,与急性淋巴细胞白血病(ALL)和慢性粒细胞白血病(CML)密切相关。这种失调的酪氨酸激酶在动物模型中选择性地导致类似于人类白血病的造血系统紊乱,并在培养中转化成纤维细胞和造血细胞。Bcr-Abl还能保护细胞免受细胞因子剥夺或暴露于DNA损伤剂所诱导的死亡。此外,Bcr-Abl的抗凋亡功能被认为在造血转化以及潜在的白血病发生过程中起必要作用。转录因子NF-κB最近被确定为一种凋亡抑制剂和细胞转化的潜在调节因子。这项研究表明,Bcr-Abl的表达通过导致NF-κB的核转位以及增加NF-κB的RelA/p65亚基的反式激活功能,从而导致NF-κB依赖性转录的激活。重要的是,这种激活依赖于Bcr-Abl的酪氨酸激酶活性,并且部分需要Ras。然而,Bcr-Abl保护细胞因子依赖性32D髓系细胞免受细胞因子剥夺或DNA损伤所诱导的死亡的能力并不需要功能性的NF-κB。但是,使用IkappaBalpha的超抑制形式,我们表明NF-κB对于Bcr-Abl介导的裸鼠致瘤性以及原代骨髓细胞的转化是必需的。这项研究表明NF-κB是Bcr-Abl信号传导的重要组成部分。因此,NF-κB调节的基因可能在Bcr-Abl介导的转化中发挥作用,从而在与Bcr-Abl相关的人类白血病中发挥作用。