Department of Molecular and Cell Biology, University of California, Berkeley, CA, USA.
Mol Cells. 2010 Apr;29(4):333-41. doi: 10.1007/s10059-010-0029-8. Epub 2010 Mar 4.
The Abelson Murine Leukemia Virus (A-MuLV) encodes v-Abl, an oncogenic form of the ubiquitous cellular non-receptor tyrosine kinase, c-Abl. A-MuLV specifically transforms murine B cell precursors both in vivo and in vitro. Inhibition of v-Abl by addition of the small molecule inhibitor STI-571 causes these cells to arrest in the G1 phase of the cell cycle prior to undergoing apoptosis. We found that inhibition of v-Abl activity results in upregulation of transcription of the pro-apoptotic TNF-family ligand tumor-necrosis factor-related apoptosis-inducing ligand (TRAIL). Similarly to BCR-Abl-transformed human cells, activation of the transcription factor Foxo3a led to increased TRAIL transcription and induction of a G1 arrest in the absence of v-Abl inhibition, and this effect could be inhibited by the expression of a constitutively active AKT mutant. Multiple pathways act to inhibit FoxO3a activity within Abelson cells. In addition to diminishing transcription factor activity via inhibitory phosphorylation by AKT family members, we found that inhibition of IKKbeta activity results in an increase in the total protein level of FoxO3a. Furthermore overexpression of the p65 subunit of NF-kappaB results in an increase in TRAIL transcription and in apoptosis and deletion of IKKalpha and beta diminishes TRAIL expression and induction. We conclude that in Abelson cells, the inhibition of both NF-kappaB and FoxO3a activity is required for suppression of TRAIL transcription and maintenance of the transformed state.
艾贝尔森鼠白血病病毒 (A-MuLV) 编码 v-Abl,这是一种普遍存在的细胞非受体酪氨酸激酶 c-Abl 的致癌形式。A-MuLV 可特异性地在体内和体外转化鼠 B 细胞前体。通过添加小分子抑制剂 STI-571 抑制 v-Abl 会导致这些细胞在经历细胞凋亡之前在细胞周期的 G1 期停滞。我们发现,抑制 v-Abl 活性会导致促凋亡 TNF 家族配体肿瘤坏死因子相关凋亡诱导配体 (TRAIL) 的转录上调。与 BCR-Abl 转化的人类细胞类似,转录因子 Foxo3a 的激活导致 TRAIL 转录增加和 G1 期停滞,而在没有抑制 v-Abl 的情况下,这种效应可被表达组成性激活的 AKT 突变体所抑制。多种途径在艾贝尔森细胞内抑制 Foxo3a 活性。除了通过 AKT 家族成员的抑制性磷酸化降低转录因子活性外,我们还发现抑制 IKKbeta 活性会导致 Foxo3a 的总蛋白水平增加。此外,NF-κB 的 p65 亚基的过表达会导致 TRAIL 转录增加和凋亡增加,而 IKKalpha 和 beta 的缺失会减少 TRAIL 的表达和诱导。我们得出结论,在艾贝尔森细胞中,抑制 NF-κB 和 Foxo3a 的活性对于抑制 TRAIL 转录和维持转化状态是必需的。