首页> 美国卫生研究院文献>Frontiers in Endocrinology >Molecular Modeling of Structures and Interaction of Human Corticotropin-Releasing Factor (CRF) Binding Protein and CRF Type-2 Receptor
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Molecular Modeling of Structures and Interaction of Human Corticotropin-Releasing Factor (CRF) Binding Protein and CRF Type-2 Receptor

机译:人促肾上腺皮质激素释放因子(CRF)结合蛋白和CRF 2型受体的结构和相互作用的分子建模

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摘要

The corticotropin-releasing factor (CRF) system is a key mediator of the stress response and addictive behavior. The CRF system includes four peptides: The CRF system includes four peptides: CRF, urocortins I–III, CRF binding protein (CRF-BP) that binds CRF with high affinity, and two class B G-protein coupled receptors CRF1R and CRF2R. CRF-BP is a secreted protein without significant sequence homology to CRF receptors or to any other known class of protein. Recently, it has been described a potentiation role of CRF-BP over CRF signaling through CRF2R in addictive-related neuronal plasticity and behavior. In addition, it has been described that CRF-BP is capable to physically interact specifically with the α isoform of CRF2R and acts like an escort protein increasing the amount of the receptor in the plasma membrane. At present, there are no available structures for CRF-BP or for full-length CRFR. Knowing and studying the structure of these proteins could be beneficial in order to characterize the CRF-BP/CRF2αR interaction. In this work, we report the modeling of CRF-BP and of full-length CRF2αR and CRF2βR based on the recently solved crystal structures of the transmembrane domains of the human glucagon receptor and human CRF1R, in addition with the resolved N-terminal extracellular domain of CRFRs. These models were further studied using molecular dynamics simulations and protein–protein docking. The results predicted a higher possibility of interaction of CRF-BP with CRF2αR than CRF2βR and yielded the possible residues conforming the interacting interface. Thus, the present study provides a framework for further investigation of the CRF-BP/CRF2αR interaction.
机译:促肾上腺皮质激素释放因子(CRF)系统是应激反应和成瘾行为的关键介体。 CRF系统包括四个肽:CRF系统包括四个肽:CRF,尿皮质素I–III,以高亲和力结合CRF的CRF结合蛋白(CRF-BP)和两个B类G蛋白偶联受体CRF1R和CRF2R。 CRF-BP是一种分泌蛋白,与CRF受体或任何其他已知蛋白类别均无明显序列同源性。近来,已经描述了CRF-BP在通过成瘾相关的神经元可塑性和行为方面比通过CRF2R的CRF信号转导的增强作用。另外,已经描述了CRF-BP能够与CRF2R的α同工型特异性地物理相互作用并且像护送蛋白一样起作用,增加了质膜中受体的量。当前,没有用于CRF-BP或全长CRFR的可用结构。为了表征CRF-BP /CRF2αR相互作用,了解和研究这些蛋白质的结构可能是有益的。在这项工作中,我们报告了CRF-BP以及全长CRF2αR和CRF2βR的建模,该模型基于最近解析的人胰高血糖素受体和人CRF1R跨膜结构域的晶体结构,以及解析的N末端胞外域CRFR。使用分子动力学模拟和蛋白质-蛋白质对接进一步研究了这些模型。结果预测CRF-BP与CRF2αR相互作用的可能性高于CRF2βR,并且产生可能的残基符合相互作用的界面。因此,本研究为进一步研究CRF-BP /CRF2αR相互作用提供了框架。

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