University of California, Los Angeles, California 90095, United States.
Biochemistry. 2011 Mar 29;50(12):2235-42. doi: 10.1021/bi1018607. Epub 2011 Feb 18.
Arrestin-1 binds light-activated phosphorhodopsin and ensures rapid signal termination. Its deficiency in humans and mice results in prolonged signaling and rod degeneration. However, most of the biochemical studies were performed on bovine arrestin-1, which was shown to self-associate forming dimers and tetramers, although only the monomer binds rhodopsin. It is unclear whether self-association is a property of arrestin-1 in all mammals or a specific feature of bovine protein. To address this issue, we compared self-association parameters of purified human and mouse arrestin-1 with those of its bovine counterpart using multiangle light scattering. We found that mouse and human arrestin-1 also robustly self-associate, existing in a monomer-dimer-tetramer equilibrium. Interestingly, the combination of dimerization and tetramerization constants in these three species is strikingly different. While tetramerization of bovine arrestin-1 is highly cooperative (K(D,dim)(4) > K(D,tet)), K(D,dim) ∼ K(D,tet) in the mouse form and K(D,dim) ≪ K(D,tet) in the human form. Importantly, in all three species at very high physiological concentrations of arrestin-1 in rod photoreceptors, most of it is predicted to exist in oligomeric form, with a relatively low concentration of the free monomer. Thus, it appears that maintenance of low levels of the active monomer is the biological role of arrestin-1 self-association.
Arrestin-1 与光激活的视黄醛结合,确保快速信号终止。人类和小鼠中该蛋白的缺失导致信号持续时间延长和视杆细胞退化。然而,大多数生化研究都是在牛 arrestin-1 上进行的,研究表明其可自身缔合形成二聚体和四聚体,尽管只有单体与视黄醛结合。目前尚不清楚这种自身缔合是否是所有哺乳动物 arrestin-1 的特性,还是牛蛋白的特有特征。为了解决这个问题,我们使用多角度光散射比较了纯化的人源和鼠源 arrestin-1 与牛源 arrestin-1 的自身缔合参数。我们发现鼠源和人源 arrestin-1 也能强烈地自身缔合,存在单体-二聚体-四聚体平衡。有趣的是,这三种蛋白的二聚体化和四聚体化常数的组合有显著差异。牛 arrestin-1 的四聚体化高度协同(K(D,dim)(4) > K(D,tet)),而鼠源和人源 arrestin-1 的 K(D,dim)∼K(D,tet),K(D,dim)≪K(D,tet)。重要的是,在这三种蛋白中,在视杆细胞中 arrestin-1 达到非常高的生理浓度时,大多数 arrestin-1 以寡聚体形式存在,游离单体浓度相对较低。因此,似乎维持低水平的活性单体是 arrestin-1 自身缔合的生物学作用。