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受体的各种功能形式对抑制蛋白表面电荷的差异性作用。

The differential engagement of arrestin surface charges by the various functional forms of the receptor.

作者信息

Hanson Susan M, Gurevich Vsevolod V

机构信息

Department of Pharmacology, Vanderbilt University, Nashville, Tennessee 37232, USA.

出版信息

J Biol Chem. 2006 Feb 10;281(6):3458-62. doi: 10.1074/jbc.M512148200. Epub 2005 Dec 8.

Abstract

G-protein-coupled receptor signaling is terminated by arrestin proteins that preferentially bind to the activated phosphorylated form of the receptor. Arrestins also bind active unphosphorylated and inactive phosphorylated receptors. Binding to the non-preferred forms of the receptor is important for visual arrestin translocation in rod photoreceptors and the regulation of receptor signaling and trafficking by non-visual arrestins. Given the importance of arrestin interactions with the various functional forms of the receptor, we performed an extensive analysis of the receptor-binding surface of arrestin using site-directed mutagenesis. The data indicated that a large number of surface charges are important for arrestin interaction with all forms of the receptor. Arrestin elements involved in receptor binding are differentially engaged by the various functional forms of the receptor, each requiring a unique subset of arrestin residues in a specific spatial configuration. We identified several additional phosphate-binding elements in the N-domain and demonstrated for the first time that the active receptor preferentially engages the arrestin C-domain. We also found that the interdomain contact surface is important for arrestin interaction with the non-preferred forms of the receptor and that residues in this region play a role in arrestin transition into its high affinity receptor binding state.

摘要

G蛋白偶联受体信号传导通过抑制蛋白终止,抑制蛋白优先结合受体的活化磷酸化形式。抑制蛋白也结合活性非磷酸化和非活性磷酸化受体。与受体的非优先形式结合对于视杆光感受器中的视觉抑制蛋白易位以及非视觉抑制蛋白对受体信号传导和运输的调节很重要。鉴于抑制蛋白与受体各种功能形式相互作用的重要性,我们使用定点诱变对抑制蛋白的受体结合表面进行了广泛分析。数据表明,大量表面电荷对于抑制蛋白与所有形式的受体相互作用很重要。参与受体结合的抑制蛋白元件被受体的各种功能形式以不同方式利用,每种形式在特定空间构型中需要抑制蛋白残基的独特子集。我们在N结构域中鉴定了几个额外的磷酸结合元件,并首次证明活性受体优先与抑制蛋白C结构域结合。我们还发现结构域间接触表面对于抑制蛋白与受体的非优先形式相互作用很重要,并且该区域的残基在抑制蛋白转变为其高亲和力受体结合状态中起作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5c1/2440687/c9a777ba9459/nihms-46676-f0001.jpg

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