Cohen K J, Hanna J S, Prescott J E, Dang C V
Division of Pediatric Oncology, Johns Hopkins Oncology Center, Baltimore, Maryland 21205, USA.
Mol Cell Biol. 1996 Oct;16(10):5527-35. doi: 10.1128/MCB.16.10.5527.
The bmi-1 oncogene cooperates with c-myc in transgenic mice, resulting in accelerated lymphoma development. Altering the expression of Bmi-1 affects normal embryogenesis. The protein product of bmi-1 is homologous to certain Drosophila Polycomb group proteins that regulate homeotic gene expression through alteration of chromatin structure. Chimeric LexA-Bmi-1 protein has previously been shown to repress transcription. How Bmi-1 functions in embryogenesis and whether this relates to the ability of Bmi-1 to mediate cellular transformation is unknown. We demonstrate here that Bmi-1 is able to transform rodent fibroblasts in vitro, providing a system that has allowed us to correlate its molecular properties with its ability to transform cells. We map functional domains of Bmi-1 involved in transcriptional suppression by using the GAL4 chimeric transcriptional regulator system. Deletion analysis shows that the centrally located helix-turn-helix-turn-helix-turn (HTHTHT) motif is necessary for transcriptional suppression whereas the N-terminal RING finger domain is not required. We demonstrate that nuclear localization requires KRMK (residues 230 to 233) and that the absence of nuclear entry ablates transformation. In addition, we find that the subnuclear localization of wild-type Bmi-1 to the rim of the nucleus requires the RING finger domain and correlates with its ability to transform. Our studies with Bmi-1 deletion mutants suggest that the ability of Bmi-1 to mediate cellular transformation correlates with its unique subnuclear localization but not its transcriptional suppression activity.
在转基因小鼠中,bmi - 1致癌基因与c - myc协同作用,导致淋巴瘤发展加速。改变Bmi - 1的表达会影响正常胚胎发育。bmi - 1的蛋白质产物与某些果蝇多梳蛋白组蛋白同源,这些蛋白通过改变染色质结构来调节同源异型基因的表达。此前已证明嵌合的LexA - Bmi - 1蛋白可抑制转录。Bmi - 1在胚胎发育中的功能以及这是否与Bmi - 1介导细胞转化的能力相关尚不清楚。我们在此证明Bmi - 1能够在体外转化啮齿动物成纤维细胞,提供了一个使我们能够将其分子特性与其转化细胞的能力相关联的系统。我们使用GAL4嵌合转录调节系统绘制了参与转录抑制的Bmi - 1功能域。缺失分析表明,位于中央的螺旋 - 转角 - 螺旋 - 转角 - 螺旋 - 转角(HTHTHT)基序对于转录抑制是必需的,而N端的RING指结构域则不需要。我们证明核定位需要KRMK(第230至233位残基),并且缺乏核进入会消除转化。此外,我们发现野生型Bmi - 1在细胞核边缘的亚核定位需要RING指结构域,并且与其转化能力相关。我们对Bmi - 1缺失突变体的研究表明,Bmi - 1介导细胞转化的能力与其独特的亚核定位相关,而与其转录抑制活性无关。