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合理设计的肽模拟物对电压门控钠离子(Nav1.6)通道的双向调节。

Bidirectional Modulation of the Voltage-Gated Sodium (Nav1.6) Channel by Rationally Designed Peptidomimetics.

机构信息

Department of Pharmacology and Toxicology, University of Texas Medical Branch, Galveston, TX 75901, USA.

Center for Addiction Research, University of Texas Medical Branch, Galveston, TX 75901, USA.

出版信息

Molecules. 2020 Jul 24;25(15):3365. doi: 10.3390/molecules25153365.

Abstract

Disruption of protein:protein interactions (PPIs) that regulate the function of voltage-gated Na (Nav) channels leads to neural circuitry aberrations that have been implicated in numerous channelopathies. One example of this pathophysiology is mediated by dysfunction of the PPI between Nav1.6 and its regulatory protein fibroblast growth factor 14 (FGF14). Thus, peptides derived from FGF14 might exert modulatory actions on the FGF14:Nav1.6 complex that are functionally relevant. The tetrapeptide Glu-Tyr-Tyr-Val (EYYV) mimics surface residues of FGF14 at the β8-β9 loop, a structural region previously implicated in its binding to Nav1.6. Here, peptidomimetics derived from EYYV () were designed, synthesized, and pharmacologically evaluated to develop probes with improved potency. Addition of hydrophobic protective groups to and truncation to a tripeptide () produced a potent inhibitor of FGF14:Nav1.6 complex assembly. Conversely, addition of hydrophobic protective groups to followed by addition of an -terminal benzoyl substituent () produced a potentiator of FGF14:Nav1.6 complex assembly. Subsequent functional evaluation using whole-cell patch-clamp electrophysiology confirmed their inverse activities, with and reducing and increasing Nav1.6-mediated transient current densities, respectively. Overall, we have identified a negative and positive allosteric modulator of Nav1.6, both of which could serve as scaffolds for the development of target-selective neurotherapeutics.

摘要

蛋白质-蛋白质相互作用(PPIs)的破坏会调节电压门控 Na(Nav)通道的功能,导致神经回路异常,这与许多通道病有关。这种病理生理学的一个例子是由 Nav1.6 与其调节蛋白成纤维细胞生长因子 14(FGF14)之间的 PPI 功能障碍介导的。因此,源自 FGF14 的肽可能对 FGF14:Nav1.6 复合物发挥调节作用,这些作用在功能上是相关的。四肽 Glu-Tyr-Tyr-Val(EYYV)模拟了 FGF14 在β8-β9 环上的表面残基,该结构区域先前被认为与其与 Nav1.6 的结合有关。在这里,设计、合成并药理学评估了源自 EYYV 的肽类似物,以开发具有改善效力的探针。在 和截短为三肽 时添加疏水性保护基团产生了 FGF14:Nav1.6 复合物组装的有效抑制剂。相反,在 添加疏水性保护基团,然后在 -末端添加苯甲酰取代基 时,产生了 FGF14:Nav1.6 复合物组装的增强剂。随后使用全细胞膜片钳电生理学进行的功能评估证实了它们的相反活性, 和 分别降低和增加了 Nav1.6 介导的瞬态电流密度。总体而言,我们已经鉴定出 Nav1.6 的负变构调节剂和正变构调节剂,两者都可以作为开发靶向选择性神经治疗药物的支架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/513f/7435778/f2ea6df8f0bd/molecules-25-03365-g001.jpg

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