Shen-Ong G L, Lüscher B, Eisenman R N
Laboratory of Genetics, National Cancer Institute, Bethesda, Maryland 20892.
Mol Cell Biol. 1989 Dec;9(12):5456-63. doi: 10.1128/mcb.9.12.5456-5463.1989.
The major protein encoded by the c-myb oncogene in many species has been identified as an unstable, nuclear DNA-binding protein with an apparent molecular mass of 75 to 80 kilodaltons (p75c-myb). Recently, an alternatively spliced form of c-myb-encoded mRNA has been identified in murine cells containing either normal or rearranged c-myb genes. This mRNA includes a new exon, termed E6A, formed through use of cryptic splice sites located in the large intron between c-myb exons vE6 and vE7. E6A is predicted to contribute an internal 121-residue in-frame insertion into a region C terminal of the DNA-binding domain the c-myb-encoded protein. Here we report the identification of an 85-kilodalton (p85c-myb-E6A) protein as the translation product of the alternatively spliced E6A c-myb mRNA. This protein as well as p75c-myb were precipitated with anti-Myb antibodies raised against the conserved DNA-binding region of c-Myb. Proteolytic mapping studies showed that the two proteins are highly related but not identical. However, only the p85 protein reacted with an antiserum prepared against the E6A region expressed in bacteria, demonstrating that p85 but not p75 contains E6A sequences. In addition, the mobilities of both p85 and p75 were increased in myeloid tumor cell lines containing proviral integrations upstream of the 5' coding exons of v-myb, indicating that both proteins are truncated forms of c-Myb expressed from the same disrupted allele. p75c-myb and p85c-myb-E6A were indistinguishable with respect to nuclear localization and protein half-life. Furthermore, both forms of Myb were synthesized continuously throughout the cell cycle in 70Z ore-B cells. The contribution of the E6A domain to c-myb function remains to be elucidated.
在许多物种中,c-myb癌基因编码的主要蛋白质已被鉴定为一种不稳定的核DNA结合蛋白,其表观分子量为75至80千道尔顿(p75c-myb)。最近,在含有正常或重排c-myb基因的鼠细胞中发现了一种c-myb编码mRNA的可变剪接形式。该mRNA包含一个新的外显子,称为E6A,它是通过使用位于c-myb外显子vE6和vE7之间大内含子中的隐蔽剪接位点形成的。预计E6A会在c-myb编码蛋白的DNA结合结构域C末端区域内贡献一个121个残基的框内插入。在此,我们报告鉴定出一种85千道尔顿(p85c-myb-E6A)蛋白,它是可变剪接的E6A c-myb mRNA的翻译产物。这种蛋白以及p75c-myb都能用针对c-Myb保守DNA结合区域产生的抗Myb抗体沉淀。蛋白水解图谱研究表明这两种蛋白高度相关但并不相同。然而,只有p85蛋白能与针对细菌中表达的E6A区域制备的抗血清发生反应,这表明p85含有E6A序列而p75不含有。此外,在含有位于v-myb 5'编码外显子上游的前病毒整合的髓系肿瘤细胞系中,p85和p75的迁移率都增加了,这表明这两种蛋白都是从同一个被破坏的等位基因表达的c-Myb的截短形式。p75c-myb和p85c-myb-E6A在核定位和蛋白质半衰期方面没有区别。此外,在70Z/ore-B细胞的整个细胞周期中,两种形式的Myb都持续合成。E6A结构域对c-myb功能的贡献仍有待阐明。