Song Xiufeng, Gurevich Eugenia V, Gurevich Vsevolod V
Department of Pharmacology, Vanderbilt University, Nashville, Tennessee 37232, USA.
J Neurochem. 2007 Nov;103(3):1053-62. doi: 10.1111/j.1471-4159.2007.04842.x. Epub 2007 Aug 6.
Arrestins are multi-functional regulators of G protein-coupled receptors. Receptor-bound arrestins interact with >30 remarkably diverse proteins and redirect the signaling to G protein-independent pathways. The functions of free arrestins are poorly understood, and the interaction sites of the non-receptor arrestin partners are largely unknown. In this study, we show that cone arrestin, the least studied member of the family, binds c-Jun N-terminal kinase (JNK3) and Mdm2 and regulates their subcellular distribution. Using arrestin mutants with increased or reduced structural flexibility, we demonstrate that arrestin in all conformations binds JNK3 comparably, whereas Mdm2 preferentially binds cone arrestin 'frozen' in the basal state. To localize the interaction sites, we expressed separate N- and C-domains of cone and rod arrestins and found that individual domains bind JNK3 and remove it from the nucleus as efficiently as full-length proteins. Thus, the arrestin binding site for JNK3 includes elements in both domains with the affinity of partial sites on individual domains sufficient for JNK3 relocalization. N-domain of rod arrestin binds Mdm2, which localizes its main interaction site to this region. Comparable binding of JNK3 and Mdm2 to four arrestin subtypes allowed us to identify conserved residues likely involved in these interactions.
抑制蛋白是G蛋白偶联受体的多功能调节因子。与受体结合的抑制蛋白可与30多种截然不同的蛋白质相互作用,并将信号转导至不依赖G蛋白的途径。游离抑制蛋白的功能鲜为人知,非受体抑制蛋白伙伴的相互作用位点也大多未知。在本研究中,我们发现该家族中研究最少的成员视锥细胞抑制蛋白可结合c-Jun氨基末端激酶(JNK3)和Mdm2,并调节它们的亚细胞分布。通过使用结构灵活性增加或降低的抑制蛋白突变体,我们证明处于所有构象的抑制蛋白与JNK3的结合能力相当,而Mdm2优先结合处于基础状态“冻结”的视锥细胞抑制蛋白。为了定位相互作用位点,我们表达了视锥细胞和视杆细胞抑制蛋白单独的N结构域和C结构域,发现单个结构域与JNK3的结合以及将其从细胞核中移除的效率与全长蛋白一样高。因此,抑制蛋白与JNK3的结合位点包括两个结构域中的元件,单个结构域上部分位点的亲和力足以使JNK3重新定位。视杆细胞抑制蛋白的N结构域与Mdm2结合,将其主要相互作用位点定位到该区域。JNK3和Mdm2与四种抑制蛋白亚型的类似结合使我们能够鉴定可能参与这些相互作用的保守残基。