Department of Drug Design and Pharmacology, University of Copenhagen, Universitetsparken 2, 2100 Copenhagen (Denmark).
Angew Chem Int Ed Engl. 2015 Jan 7;54(2):490-4. doi: 10.1002/anie.201409043. Epub 2014 Nov 20.
Gephyrin is the central scaffolding protein for inhibitory neurotransmitter receptors in the brain. Here we describe the development of dimeric peptides that inhibit the interaction between gephyrin and these receptors, a process which is fundamental to numerous synaptic functions and diseases of the brain. We first identified receptor-derived minimal gephyrin-binding peptides that displayed exclusive binding towards native gephyrin from brain lysates. We then designed and synthesized a series of dimeric ligands, which led to a remarkable 1220-fold enhancement of the gephyrin affinity (KD=6.8 nM). In X-ray crystal structures we visualized the simultaneous dimer-to-dimer binding in atomic detail, revealing compound-specific binding modes. Thus, we defined the molecular basis of the affinity-enhancing effect of multivalent gephyrin inhibitors and provide conceptually novel compounds with therapeutic potential, which will allow further elucidation of the gephyrin-receptor interplay.
Gephyrin 是大脑中抑制性神经递质受体的中心支架蛋白。在这里,我们描述了二聚肽的开发,这些二聚肽可以抑制 gephyrin 与这些受体的相互作用,这是许多突触功能和大脑疾病的基础。我们首先鉴定了受体衍生的最小 gephyrin 结合肽,这些肽仅对来自脑裂解物的天然 gephyrin 显示出结合。然后,我们设计并合成了一系列二聚体配体,这导致 gephyrin 亲和力的显著增强(KD=6.8 nM)达 1220 倍。在 X 射线晶体结构中,我们以原子细节可视化了同时的二聚体-二聚体结合,揭示了化合物特异性的结合模式。因此,我们确定了多价 gephyrin 抑制剂增强亲和力的分子基础,并提供了具有治疗潜力的新概念化合物,这将进一步阐明 gephyrin-受体相互作用。