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单体/四聚体平衡的棒状视觉 arrestin 与磷酸化视紫红质相互作用的作用。

Role of Monomer/Tetramer Equilibrium of Rod Visual Arrestin in the Interaction with Phosphorylated Rhodopsin.

机构信息

Department of Biophysics, Graduate School of Science, Kyoto University, Kyoto 606-8502, Japan.

Research Organization for Science and Technology, Ritsumeikan University, Kusatsu 525-8577, Japan.

出版信息

Int J Mol Sci. 2023 Mar 4;24(5):4963. doi: 10.3390/ijms24054963.

Abstract

The phototransduction cascade in vertebrate rod visual cells is initiated by the photoactivation of rhodopsin, which enables the activation of the visual G protein transducin. It is terminated by the phosphorylation of rhodopsin, followed by the binding of arrestin. Here we measured the solution X-ray scattering of nanodiscs containing rhodopsin in the presence of rod arrestin to directly observe the formation of the rhodopsin/arrestin complex. Although arrestin self-associates to form a tetramer at physiological concentrations, it was found that arrestin binds to phosphorylated and photoactivated rhodopsin at 1:1 stoichiometry. In contrast, no complex formation was observed for unphosphorylated rhodopsin upon photoactivation, even at physiological arrestin concentrations, suggesting that the constitutive activity of rod arrestin is sufficiently low. UV-visible spectroscopy demonstrated that the rate of the formation of the rhodopsin/arrestin complex well correlates with the concentration of arrestin monomer rather than the tetramer. These findings indicate that arrestin monomer, whose concentration is almost constant due to the equilibrium with the tetramer, binds to phosphorylated rhodopsin. The arrestin tetramer would act as a reservoir of monomer to compensate for the large changes in arrestin concentration in rod cells caused by intense light or adaptation.

摘要

脊椎动物视杆细胞中的光转导级联反应由视紫红质的光激活引发,这使得视觉 G 蛋白转导蛋白得以激活。它通过视紫红质的磷酸化终止,随后与抑制蛋白结合。在这里,我们通过测量含有视紫红质的纳米盘的溶液 X 射线散射,直接观察视紫红质/抑制蛋白复合物的形成。尽管抑制蛋白在生理浓度下自组装形成四聚体,但发现抑制蛋白以 1:1 的化学计量比与磷酸化和光激活的视紫红质结合。相比之下,即使在生理浓度的抑制蛋白存在下,未磷酸化的视紫红质在光激活后也没有观察到复合物形成,这表明视杆细胞抑制蛋白的本底活性足够低。紫外可见光谱表明,视紫红质/抑制蛋白复合物的形成速率与抑制蛋白单体的浓度而不是四聚体的浓度密切相关。这些发现表明,由于与四聚体的平衡,抑制蛋白单体的浓度几乎保持不变,它与磷酸化的视紫红质结合。抑制蛋白四聚体将作为单体的储备库,以补偿强光或适应引起的视杆细胞中抑制蛋白浓度的巨大变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/485b/10003454/0a0678f949f9/ijms-24-04963-g001.jpg

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