Reményi A, Tomilin A, Pohl E, Lins K, Philippsen A, Reinbold R, Schöler H R, Wilmanns M
European Molecular Biology Laboratory, Hamburg Outstation, c/o DESY, Notkestrasse 85, D-22603 Hamburg, Germany.
Mol Cell. 2001 Sep;8(3):569-80. doi: 10.1016/s1097-2765(01)00336-7.
Two crystal structures of Oct-1 POU domain bound to DNA provide a rationale for differential, conformation-dependent recruitment of transcription cofactors. The POU-homeo and POU-specific subdomains of Oct-1 contain two different nonoverlapping pairs of surface patches that are capable of forming unrelated protein-protein interfaces. Members of the POU factor family contain one or two conserved sequence motifs in the interface that are known to be phosphorylated, as noted for Oct-1 and Pit-1. Modeling of Oct-4 reveals the unique case where the same conserved sequence is located in both interfaces. Our studies provide the basis for two distinct dimeric POU factor arrangements that are dictated by the architecture of each DNA response element. We suggest interface swapping in dimers could be a general mechanism of modulating the activity of transcription factors.
与DNA结合的Oct-1 POU结构域的两种晶体结构为转录辅因子的差异、构象依赖性募集提供了理论依据。Oct-1的POU同源结构域和POU特异性亚结构域包含两对不同的、不重叠的表面斑块,它们能够形成不相关的蛋白质-蛋白质界面。POU因子家族的成员在界面中含有一个或两个已知会被磷酸化的保守序列基序,如Oct-1和Pit-1所示。Oct-4的模型揭示了一种独特的情况,即相同的保守序列位于两个界面中。我们的研究为两种不同的二聚体POU因子排列提供了基础,这两种排列由每个DNA反应元件的结构决定。我们认为二聚体中的界面交换可能是调节转录因子活性的一种普遍机制。