Berger C, Piubelli L, Haditsch U, Bosshard H R
Biochemisches Institut der Universität, Zürich, Switzerland.
FEBS Lett. 1998 Mar 20;425(1):14-8. doi: 10.1016/s0014-5793(98)00156-2.
Basic leucine zipper (bZIP) transcription factors are dimers that recognize mainly palindromic DNA sites. It has been assumed that bZIP factors have to form a dimer in order to bind to their target DNA. We find that DNA binding of both monomeric and dimeric bZIP transcription factor GCN4 is diffusion-limited and that, therefore, the rate of dimerization of the bZIP domain does not affect the rate of DNA recognition and GCN4 need not dimerize in order to bind to its specific DNA site. The results have implications for the mechanism by which bZIP transcription factors find their target sites for transcriptional regulation.
碱性亮氨酸拉链(bZIP)转录因子是主要识别回文DNA位点的二聚体。人们一直认为bZIP因子必须形成二聚体才能结合其靶DNA。我们发现,单体和二聚体bZIP转录因子GCN4的DNA结合都是扩散限制的,因此,bZIP结构域的二聚化速率不影响DNA识别速率,GCN4无需二聚化就能结合其特定的DNA位点。这些结果对bZIP转录因子寻找其转录调控靶位点的机制具有启示意义。