Ransone L J, Visvader J, Sassone-Corsi P, Verma I M
Molecular Biology and Virology Laboratory, Salk Institute, San Diego, California 92138.
Genes Dev. 1989 Jun;3(6):770-81. doi: 10.1101/gad.3.6.770.
Jun and Fos oncoproteins form a complex that regulates transcription from promoters containing AP-1 binding sites. The 'leucine zipper' domain of both Fos and Jun is necessary for the formation of the heterodimer, but the role of specific leucine residues is unclear. We have used site-specific mutagenesis to examine the contribution of individual leucine residues to the formation of a stable Fos-Jun protein complex and the binding of this complex to the AP-1 site. Mutation of a single leucine in either Fos or Jun had no effect on protein complex formation. Furthermore, mutations of two consecutive leucines in Jun did not interfere with heterodimer formation; however, in the case of Fos, two consecutive mutations resulted in an inability to form a heterodimer. Although mutagenesis of the first leucine of the heptad repeat had no effect on protein complex formation, this mutation in either Fos or Jun drastically reduced the affinity of the complex for DNA. Thus, both Fos and Jun contribute directly to the DNA-binding potential of the heterodimer.
Jun和Fos癌蛋白形成一种复合物,该复合物可调节含有AP-1结合位点的启动子的转录。Fos和Jun的“亮氨酸拉链”结构域对于异二聚体的形成是必需的,但特定亮氨酸残基的作用尚不清楚。我们利用位点特异性诱变来研究单个亮氨酸残基对稳定的Fos-Jun蛋白复合物形成以及该复合物与AP-1位点结合的贡献。Fos或Jun中单个亮氨酸的突变对蛋白复合物的形成没有影响。此外,Jun中两个连续亮氨酸的突变并不干扰异二聚体的形成;然而,在Fos的情况下,两个连续突变导致无法形成异二聚体。尽管七肽重复序列第一个亮氨酸的诱变对蛋白复合物的形成没有影响,但Fos或Jun中的这种突变会大幅降低复合物对DNA的亲和力。因此,Fos和Jun都直接有助于异二聚体的DNA结合潜力。