Västrik I, Koskinen P J, Alitalo R, Mäkelä T P
Department of Virology, University of Helsinki, Finland.
Oncogene. 1993 Feb;8(2):503-7.
The max gene encodes a heterodimeric partner of Myc. We have recently identified an alternative max mRNA (delta max) that contains an additional internal exon introducing an in-frame translational termination. Here we have studied the expression of human max mRNAs by Northern blotting analysis. In addition to the major 2.3-kb mRNA form, four bands were identified. Our results indicate that these bands represent differentially spliced mRNA forms, which contain altogether three open reading frames. In addition to the previously identified Max and delta Max proteins, sequence analysis of a 3.5-kb mRNA form predicted a protein that resembles delta Max in structure. Like delta Max, this protein enhanced the number of transformed foci in the ras-myc co-transformation assay. Although the 3.5-kb mRNA represents a minor form in actively proliferating cells, a shift from the major 2.3-kb mRNA to the 3.5-kb form was observed in response to high cell density or acidification of the growth medium. Our results indicate the presence of several differentially spliced mRNA forms of the max gene, and suggest a possible mechanism for the production of functionally distinct Max proteins.
max基因编码Myc的异二聚体伴侣。我们最近鉴定出一种替代性max mRNA(δmax),它包含一个额外的内部外显子,导致框内翻译终止。在此,我们通过Northern印迹分析研究了人类max mRNA的表达。除了主要的2.3 kb mRNA形式外,还鉴定出四条条带。我们的结果表明,这些条带代表差异剪接的mRNA形式,总共包含三个开放阅读框。除了先前鉴定出的Max和δMax蛋白外,对一种3.5 kb mRNA形式的序列分析预测出一种在结构上类似于δMax的蛋白。与δMax一样,这种蛋白在ras-myc共转化试验中增加了转化灶的数量。尽管3.5 kb mRNA在活跃增殖细胞中代表一种次要形式,但在高细胞密度或生长培养基酸化的情况下,观察到从主要的2.3 kb mRNA向3.5 kb形式的转变。我们的结果表明max基因存在几种差异剪接的mRNA形式,并提示了产生功能不同的Max蛋白的一种可能机制。