Kuttler F, Amé P, Clark H, Haughey C, Mougin C, Cahn J Y, Dang C V, Raffeld M, Fest T
Department of Haematology and Cell Biology, Institut d'Etude et de Transfert de Genes, University Hospital Jean Minjoz, 25030 Cedex Besançon, France.
Oncogene. 2001 Sep 20;20(42):6084-94. doi: 10.1038/sj.onc.1204827.
In addition to c-myc rearrangement, over 50% of Burkitt's lymphoma cases present clustered mutations in exon 2, where many of the functional activities of c-Myc protein are based. This report describes the functional consequences induced by tumour-derived c-myc mutations located in c-myc box II. Two mutated alleles were studied, focusing on the P138C mutation, and compared to wild-type c-myc. The c-Myc transformation, transactivation and apoptosis activities were explored based on cells over-expressing c-Myc. While the transcriptional activation activity was not affected, our experiments exploring the anchorage-independent growth capacity of c-Myc-transfected Rat1a cells showed that c-Myc box II mutants were less potent than wild-type c-Myc in promoting cell transformation. Considering the possibility that these mutations could be interfering with the ability of c-Myc to promote apoptosis, we tested c-Myc-transfected Rat1a fibroblasts under several conditions: serum deprivation-, staurosporine- and TNFalpha-induced cell death. Interestingly, the mutated alleles were characterized by an overall decrease in ability to mediate apoptosis. Our study indicates that point mutations located in c-Myc box II can decrease the ability of the protein to promote both transformation and apoptosis without modifying its transactivating activity.
除了c-myc重排外,超过50%的伯基特淋巴瘤病例在第2外显子存在聚集性突变,c-Myc蛋白的许多功能活性都基于此。本报告描述了位于c-myc盒II的肿瘤源性c-myc突变所诱导的功能后果。研究了两个突变等位基因,重点是P138C突变,并与野生型c-myc进行比较。基于过表达c-Myc的细胞探索了c-Myc的转化、反式激活和凋亡活性。虽然转录激活活性未受影响,但我们探索c-Myc转染的Rat1a细胞不依赖贴壁生长能力的实验表明,c-myc盒II突变体在促进细胞转化方面比野生型c-Myc效力更低。考虑到这些突变可能干扰c-Myc促进凋亡的能力,我们在几种条件下测试了c-Myc转染的Rat1a成纤维细胞:血清剥夺、星形孢菌素和TNFα诱导的细胞死亡。有趣的是,突变等位基因的特征是介导凋亡的能力总体下降。我们的研究表明,位于c-myc盒II的点突变可降低该蛋白促进转化和凋亡的能力,而不改变其反式激活活性。