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视紫红质跨膜螺旋6(Rhodopsin TM6)可与抑制蛋白上两个独立且不同的位点相互作用:抑制蛋白与视紫红质结合中结构可塑性和多种对接模式的证据。

Rhodopsin TM6 can interact with two separate and distinct sites on arrestin: evidence for structural plasticity and multiple docking modes in arrestin-rhodopsin binding.

作者信息

Sinha Abhinav, Jones Brunette Amber M, Fay Jonathan F, Schafer Christopher T, Farrens David L

机构信息

Department of Biochemistry and Molecular Biology, Oregon Health and Science University , Portland, Oregon 97239-3098, United States.

出版信息

Biochemistry. 2014 May 27;53(20):3294-307. doi: 10.1021/bi401534y. Epub 2014 May 13.

Abstract

Various studies have implicated the concave surface of arrestin in the binding of the cytosolic surface of rhodopsin. However, specific sites of contact between the two proteins have not previously been defined in detail. Here, we report that arrestin shares part of the same binding site on rhodopsin as does the transducin Gα subunit C-terminal tail, suggesting binding of both proteins to rhodopsin may share some similar underlying mechanisms. We also identify two areas of contact between the proteins near this region. Both sites lie in the arrestin N-domain, one in the so-called "finger" loop (residues 67-79) and the other in the 160 loop (residues 155-165). We mapped these sites using a novel tryptophan-induced quenching method, in which we introduced Trp residues into arrestin and measured their ability to quench the fluorescence of bimane probes attached to cysteine residues on TM6 of rhodopsin (T242C and T243C). The involvement of finger loop binding to rhodopsin was expected, but the evidence of the arrestin 160 loop contacting rhodopsin was not. Remarkably, our data indicate one site on rhodopsin can interact with multiple structurally separate sites on arrestin that are almost 30 Å apart. Although this observation at first seems paradoxical, in fact, it provides strong support for recent hypotheses that structural plasticity and conformational changes are involved in the arrestin-rhodopsin binding interface and that the two proteins may be able to interact through multiple docking modes, with arrestin binding to both monomeric and dimeric rhodopsin.

摘要

多项研究表明,抑制蛋白的凹面参与视紫红质胞质面的结合。然而,此前尚未详细确定这两种蛋白质之间的具体接触位点。在此,我们报告称,抑制蛋白与转导蛋白Gα亚基C末端尾巴在视紫红质上共享部分相同的结合位点,这表明这两种蛋白质与视紫红质的结合可能存在一些相似的潜在机制。我们还确定了该区域附近两种蛋白质之间的两个接触区域。这两个位点都位于抑制蛋白的N结构域,一个位于所谓的“手指”环(第67 - 79位氨基酸残基),另一个位于160环(第155 - 165位氨基酸残基)。我们使用一种新型的色氨酸诱导淬灭方法来定位这些位点,即在抑制蛋白中引入色氨酸残基,并测量它们淬灭附着在视紫红质TM6上半胱氨酸残基(T242C和T243C)上的双马来酰亚胺探针荧光的能力。手指环与视紫红质结合的参与是预期的,但抑制蛋白160环与视紫红质接触的证据并非如此。值得注意的是,我们的数据表明视紫红质上的一个位点可以与抑制蛋白上多个结构上分离且相距近30 Å的位点相互作用。尽管这一观察结果乍一看似乎自相矛盾,但实际上它为最近的假说提供了有力支持,即结构可塑性和构象变化参与了抑制蛋白 - 视紫红质结合界面,并且这两种蛋白质可能能够通过多种对接模式相互作用,抑制蛋白可与单体和二聚体视紫红质结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3221/4039336/d41c803f6f85/bi-2013-01534y_0002.jpg

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