Hughes M, Sehgal A, Hadman M, Bos T
Department of Microbiology and Immunology, Eastern Virginia Medical School, Norfolk 23501.
Cell Growth Differ. 1992 Dec;3(12):889-97.
c-Jun belongs to a family of proteins that require dimerization for activity. Dimerization occurs through a leucine-rich region near the carboxy terminus called the leucine zipper. Jun can form dimeric complexes with other Jun family as well as Fos family members. The relative proportion of these different dimeric complexes is determined by the relative abundance of each family member at a particular time. Overexpression of v-Jun or c-Jun alone will lead to cell transformation of chicken embryo fibroblasts, albeit with varying efficiencies. Upon overexpression, v-Jun or c-Jun presumably becomes the predominant AP-1 component in the cell. Theoretically, this should lead to a larger proportion of homodimers than heterodimers. It is not clear what role, if any, the other Jun and Fos family proteins play during cell transformation. We have examined the ability of Jun to induce cell transformation in chicken embryo fibroblasts in the absence of interaction with other Jun or Fos family proteins. To this end, we have constructed a chicken v-Jun mutant that is incapable of heterodimerization. This was accomplished by replacing the leucine zipper region of Jun with that of the yeast transcription factor GCN4. This chimeric protein, VJ-GLZ, retains all of the DNA binding and transcriptional activation domains of v-Jun. As expected, in vitro translated VJ-GLZ was found to be incapable of forming heterodimers with c-Fos, FosB, and JunD.(ABSTRACT TRUNCATED AT 250 WORDS)
c-Jun属于一类需要二聚化才能发挥活性的蛋白质家族。二聚化通过靠近羧基末端的富含亮氨酸的区域(即亮氨酸拉链)发生。Jun可以与其他Jun家族以及Fos家族成员形成二聚体复合物。这些不同二聚体复合物的相对比例由特定时间每个家族成员的相对丰度决定。单独过表达v-Jun或c-Jun会导致鸡胚成纤维细胞发生细胞转化,尽管效率不同。过表达后,v-Jun或c-Jun可能会成为细胞中主要的AP-1成分。理论上,这应该会导致同源二聚体的比例高于异源二聚体。目前尚不清楚其他Jun和Fos家族蛋白在细胞转化过程中是否发挥作用以及发挥何种作用。我们研究了在不与其他Jun或Fos家族蛋白相互作用的情况下,Jun诱导鸡胚成纤维细胞发生细胞转化的能力。为此,我们构建了一个无法进行异源二聚化的鸡v-Jun突变体。这是通过将Jun的亮氨酸拉链区域替换为酵母转录因子GCN4的亮氨酸拉链区域来实现的。这种嵌合蛋白VJ-GLZ保留了v-Jun的所有DNA结合和转录激活结构域。正如预期的那样,体外翻译的VJ-GLZ被发现无法与c-Fos、FosB和JunD形成异源二聚体。(摘要截短于250字)