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与视紫红质胞质环的相互作用在抑制蛋白的激活和结合中起着关键作用。

The interaction with the cytoplasmic loops of rhodopsin plays a crucial role in arrestin activation and binding.

作者信息

Raman Dayanidhi, Osawa Shoji, Gurevich Vsevolod V, Weiss Ellen R

机构信息

Department of Cell and Developmental Biology, The University of North Carolina at Chapel Hill, Chapel Hill, NC 27599-7090, USA.

出版信息

J Neurochem. 2003 Mar;84(5):1040-50. doi: 10.1046/j.1471-4159.2003.01598.x.

Abstract

The binding of arrestin to rhodopsin is initiated by the interaction of arrestin with the phosphorylated rhodopsin C-terminus and/or the cytoplasmic loops, followed by conformational changes that expose an additional high-affinity site on arrestin. Here we use an arrestin mutant (R175E) that binds similarly to phosphorylated and unphosphorylated, wild-type rhodopsin to identify rhodopsin elements other than C-terminus important for arrestin interaction. R175E-arrestin demonstrated greatly reduced binding to unphosphorylated cytoplasmic loop mutants L72A, N73A, P142A and M143A, suggesting that these residues are crucial for high-affinity binding. Interestingly, when these rhodopsin mutants are phosphorylated, R175E-arrestin binding is less severely affected. This effect of phosphorylation on R175E-arrestin binding highlights the co-operative nature of the multi-site interaction between arrestin and the cytoplasmic loops and C-terminus of rhodopsin. However, a combination of any two mutations disrupts the ability of phosphorylation to enhance binding of R175E-arrestin. N73A, P142A and M143A exhibited accelerated rates of dissociation from wild-type arrestin. Using sensitivity to calpain II as an assay, these cytoplasmic loop mutants also demonstrated reduced ability to induce conformational changes in arrestin that correlated with their reduced ability to bind arrestin. These results suggest that arrestin bound to rhodopsin is in a distinct conformation that is co-ordinately regulated by association with the cytoplasmic loops and the C-terminus of rhodopsin.

摘要

抑制蛋白与视紫红质的结合始于抑制蛋白与磷酸化视紫红质C末端和/或胞质环的相互作用,随后发生构象变化,从而在抑制蛋白上暴露出一个额外的高亲和力位点。在这里,我们使用一种与磷酸化和未磷酸化的野生型视紫红质具有相似结合能力的抑制蛋白突变体(R175E),以鉴定对视紫红质与抑制蛋白相互作用很重要的C末端以外的视紫红质元件。R175E抑制蛋白与未磷酸化的胞质环突变体L72A、N73A、P142A和M143A的结合显著减少,这表明这些残基对高亲和力结合至关重要。有趣的是,当这些视紫红质突变体被磷酸化时,R175E抑制蛋白的结合受到的影响较小。磷酸化对R175E抑制蛋白结合的这种影响突出了抑制蛋白与视紫红质胞质环和C末端之间多位点相互作用的协同性质。然而,任意两个突变的组合会破坏磷酸化增强R175E抑制蛋白结合的能力。N73A、P142A和M143A与野生型抑制蛋白的解离速率加快。以对钙蛋白酶II的敏感性作为检测方法,这些胞质环突变体还显示出诱导抑制蛋白构象变化的能力降低,这与其结合抑制蛋白的能力降低相关。这些结果表明,与视紫红质结合的抑制蛋白处于一种独特的构象,该构象由与视紫红质胞质环和C末端的结合协同调节。

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