AI Article Synopsis

  • Disruption of protein:protein interactions (PPIs) affecting voltage-gated Na (Nav) channels can lead to neural issues linked to various channelopathies, particularly through the dysfunction of Nav1.6 and its regulatory partner FGF14.
  • Researchers identified and synthesized peptidomimetics from the tetrapeptide Glu-Tyr-Tyr-Val (EYYV), targeting the binding site between FGF14 and Nav1.6 to enhance or inhibit their interaction.
  • Two peptidomimetics were developed: one acted as a potent inhibitor and the other as a potentiator of the FGF14:Nav1.6 complex, confirmed through electrophysiological evaluations, indicating their potential use as foundations for targeted neuro

Article 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.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7435778PMC
http://dx.doi.org/10.3390/molecules25153365DOI Listing

Publication Analysis

Top Keywords

fgf14nav16 complex
12
addition hydrophobic
8
hydrophobic protective
8
protective groups
8
complex assembly
8
bidirectional modulation
4
modulation voltage-gated
4
voltage-gated sodium
4
nav16
4
sodium nav16
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!