Suppr超能文献

脊椎动物视觉中视紫红质与转导蛋白相互作用的动态支架机制。

A dynamic scaffolding mechanism for rhodopsin and transducin interaction in vertebrate vision.

机构信息

Institute of Biology and Environmental Sciences, Biochemistry Group, Carl von Ossietzky University of Oldenburg, 26111 Oldenburg, Germany.

出版信息

Biochem J. 2011 Dec 1;440(2):263-71. doi: 10.1042/BJ20110871.

Abstract

The early steps in vertebrate vision require fast interactions between Rh (rhodopsin) and Gt (transducin), which are classically described by a collisional coupling mechanism driven by the free diffusion of monomeric proteins on the disc membranes of rod and cone cells. Recent findings, however, point to a very low mobility for Rh and support a substantially different supramolecular organization. Moreover, Rh-G(t) interactions seem to possibly occur even prior to light stimuli, which is also difficult to reconcile with the classical scenario. We investigated the kinetics of interaction between native Rh and G(t) in different conditions by surface plasmon resonance and analysed the results in the general physiological context by employing a holistic systems modelling approach. The results from the present study point to a mechanism that is intermediate between pure collisional coupling and physical scaffolding. Such a 'dynamic scaffolding', in which prevalently dimeric Rh and G(t) interact in the dark by forming transient complexes (~25% of G(t) is precoupled to Rh), does not slow down the phototransduction cascade, but is compatible with the observed photoresponses on a broad scale of light stimuli. We conclude that Rh molecules and Rh-G(t) complexes can both absorb photons and trigger the visual cascade.

摘要

脊椎动物视觉的早期步骤需要 Rh(视紫红质)和 Gt(转导蛋白)之间的快速相互作用,这经典地描述为由单体蛋白在棒状和锥状细胞的盘膜上的自由扩散驱动的碰撞偶联机制。然而,最近的发现指出 Rh 的流动性非常低,并支持一种截然不同的超分子组织。此外,Rh-G(t) 相互作用似乎甚至可能在光刺激之前发生,这也很难与经典情景相协调。我们通过表面等离子体共振研究了在不同条件下天然 Rh 和 G(t)之间相互作用的动力学,并通过采用整体系统建模方法在一般生理背景下分析了结果。本研究的结果指向一种介于纯碰撞偶联和物理支架之间的机制。这种“动态支架”中,主要是二聚体的 Rh 和 G(t) 在黑暗中通过形成短暂的复合物(~25%的 G(t)与 Rh 预偶联)相互作用,不会减缓光转导级联,但与在广泛的光刺激范围内观察到的光响应兼容。我们得出结论,Rh 分子和 Rh-G(t) 复合物都可以吸收光子并触发视觉级联。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验