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Ligand binding pocket of a novel Allatostatin receptor type C of stick insect, Carausius morosus

机译:一种新型的棒状昆虫阿罗他汀受体C型的配体结合袋

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摘要

Allatostatins (AST) are neuropeptides with variable function ranging from regulation of developmental processes to the feeding behavior in insects. They exert their effects by binding to cognate GPCRs, called Allatostatin receptors (AlstR), which emerge as promising targets for pesticide design. However, AlstRs are rarely studied. This study is the first reported structural study on AlstR-AST interaction. In this work, the first C type AlstR from the stick insect Carausius morosus (CamAlstR-C) was identified and its interaction with type C AST peptide was shown to be physically consistent with the experimental results. The proposed structure of CamAlstR-C revealed a conserved motif within the third extracellular loop, which, together with the N-terminus is essential for ligand binding. In this work, computational studies were combined with molecular and nano-scale approaches in order to introduce an unknown GPCR-ligand system. Consequently, the data obtained provided a reliable target region for future agonist/inverse agonist studies on AlstRs.
机译:Allatostatin(AST)是具有可变功能的神经肽,范围从发育过程的调节到昆虫的摄食行为。它们通过与关联的GPCR(称为Allatostatin受体,AlstR)结合而发挥作用,后者成为农药设计的有希望的目标。但是,很少研究AlstR。这项研究是第一个报道的AlstR-AST相互作用的结构研究。在这项工作中,鉴定了来自粘虫Carausius morosus(CamAlstR-C)的第一个C型AlstR,并证明了它与C型AST肽的相互作用与实验结果在物理上是一致的。拟议的CamAlstR-C结构揭示了第三个细胞外环内的保守基序,该基序与N端一起对于配体结合至关重要。在这项工作中,计算研究与分子和纳米级方法相结合,以引入未知的GPCR-配体系统。因此,获得的数据为将来的AlstRs激动剂/反向激动剂研究提供了可靠的目标区域。

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