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突触 MAGuK 支架蛋白的超三级结构是保守的。

Supertertiary structure of the synaptic MAGuK scaffold proteins is conserved.

机构信息

Departments of Pharmacological Sciences, Stony Brook University, Stony Brook, NY 11794, USA.

出版信息

Proc Natl Acad Sci U S A. 2012 Sep 25;109(39):15775-80. doi: 10.1073/pnas.1200254109. Epub 2012 Sep 10.

Abstract

Scaffold proteins form a framework to organize signal transduction by binding multiple partners within a signaling pathway. This shapes the output of signal responses as well as providing specificity and localization. The Membrane Associated Guanylate Kinases (MAGuKs) are scaffold proteins at cellular junctions that localize cell surface receptors and link them to downstream signaling enzymes. Scaffold proteins often contain protein-binding domains that are connected in series by disordered linkers. The tertiary structure of the folded domains is well understood, but describing the dynamic inter-domain interactions (the superteritary structure) of such multidomain proteins remains a challenge to structural biology. We used 65 distance restraints from single-molecule fluorescence resonance energy transfer (smFRET) to describe the superteritary structure of the canonical MAGuK scaffold protein PSD-95. By combining multiple fluorescence techniques, the conformational dynamics of PSD-95 could be characterized across the biologically relevant timescales for protein domain motions. Relying only on a qualitative interpretation of FRET data, we were able to distinguish stable interdomain interactions from freely orienting domains. This revealed that the five domains in PSD-95 partitioned into two independent supramodules: PDZ1-PDZ2 and PDZ3-SH3-GuK. We used our smFRET data for hybrid structural refinement to model the PDZ3-SH3-GuK supramodule and include explicit dye simulations to provide complete characterization of potential uncertainties inherent to quantitative interpretation of FRET as distance. Comparative structural analysis of synaptic MAGuK homologues showed a conservation of this supertertiary structure. Our approach represents a general solution to describing the supertertiary structure of multidomain proteins.

摘要

支架蛋白通过在信号通路中结合多个伴侣形成一个框架,来组织信号转导。这不仅塑造了信号反应的输出,还提供了特异性和定位性。膜相关鸟苷酸激酶(MAGuKs)是细胞连接处的支架蛋白,可定位细胞表面受体,并将其与下游信号酶连接。支架蛋白通常包含通过无序连接子串联连接的蛋白质结合结构域。折叠结构域的三级结构得到了很好的理解,但描述这种多结构域蛋白的动态结构域间相互作用(超级结构)仍然是结构生物学的一个挑战。我们使用来自单分子荧光共振能量转移(smFRET)的 65 个距离约束来描述经典 MAGuK 支架蛋白 PSD-95 的超级结构。通过结合多种荧光技术,可以在与蛋白质结构域运动相关的生物学时间尺度内对 PSD-95 的构象动力学进行特征化。仅依靠对 FRET 数据的定性解释,我们能够区分稳定的结构域间相互作用和自由取向的结构域。这表明 PSD-95 中的五个结构域分为两个独立的超模块:PDZ1-PDZ2 和 PDZ3-SH3-GuK。我们使用 smFRET 数据进行混合结构精修,以模拟 PDZ3-SH3-GuK 超模块,并包括显式染料模拟,以提供对定量解释 FRET 作为距离所固有的潜在不确定性的完整特征化。对突触 MAGuK 同源物的比较结构分析表明,这种超级结构得到了保留。我们的方法代表了描述多结构域蛋白超级结构的一般解决方案。

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