Brimmell M, Mendiola R, Mangion J, Packham G
Ludwig Institute for Cancer Research, Imperial College School of Medicine at St Mary's, London.
Oncogene. 1998 Apr 9;16(14):1803-12. doi: 10.1038/sj.onc.1201704.
Bax suppresses tumorigenesis in a mouse model system and Bax-deficient mice exhibit lymphoid hyperplasia suggesting that BAX functions as a tumour suppressor in human haemopoietic cells. We examined BAX expression in 20 cell lines derived from human haemopoietic malignancies and consistent with a potential tumour suppressor function, identified two cell lines, DG75 (a Burkitt lymphoma cell line) and Jurkat (a T-cell leukaemia line), which lacked detectable BAX expression. Apoptosis of DG75 cells induced by low serum or ionomycin was significantly delayed relative to similar Burkitt lymphoma cell lines with normal BAX levels. Although DG75 and Jurkat cells expressed several BAX RNA species including the prototypical BAX alpha RNA, the absence of BAX protein was due to single base deletions and additions in a polyguanine tract within the BAX open reading frame. These frameshift mutations result in premature termination of translation and have recently also been identified in some colon cancers with microsatellite instability. Although mismatch repair defects are not considered a common feature of haemopoietic malignancies, DG75 and Jurkat cells had widespread microsatellite instability and did not express detectable levels of MSH2. In Jurkat cells, lack of MSH2 expression was due to a point mutation in exon 13 of MSH2 resulting in premature termination of translation. Our results suggest that a pathway linking mismatch repair defects, BAX tumour suppressor frameshift mutations and resistance to apoptosis may be a key feature of some lymphomas and leukaemias.
在小鼠模型系统中,Bax可抑制肿瘤发生,且Bax基因缺陷的小鼠表现出淋巴样增生,这表明BAX在人类造血细胞中发挥肿瘤抑制作用。我们检测了源自人类造血系统恶性肿瘤的20种细胞系中的BAX表达情况,与潜在的肿瘤抑制功能一致,我们鉴定出两种细胞系,即DG75(一种伯基特淋巴瘤细胞系)和Jurkat(一种T细胞白血病细胞系),它们缺乏可检测到的BAX表达。与具有正常BAX水平的类似伯基特淋巴瘤细胞系相比,低血清或离子霉素诱导的DG75细胞凋亡明显延迟。尽管DG75和Jurkat细胞表达了几种BAX RNA种类,包括典型的BAXα RNA,但BAX蛋白的缺失是由于BAX开放阅读框内一个多聚鸟嘌呤序列中的单碱基缺失和插入。这些移码突变导致翻译提前终止,最近在一些具有微卫星不稳定性的结肠癌中也被发现。尽管错配修复缺陷不被认为是造血系统恶性肿瘤的常见特征,但DG75和Jurkat细胞存在广泛的微卫星不稳定性,且未表达可检测水平的MSH2。在Jurkat细胞中,MSH2表达缺失是由于MSH2第13外显子中的一个点突变导致翻译提前终止。我们的结果表明,一条将错配修复缺陷、BAX肿瘤抑制移码突变和抗凋亡联系起来的途径可能是某些淋巴瘤和白血病的关键特征。