Voltage-gated Na(+) channels (Nav) are the molecular determinants of action potential initiation and propagation. Among the nine voltage-gated Na(+) channel isoforms (Nav1.1-Nav1.9), Nav1.2 and Nav1.6 are of particular interest because of their developmental expression profile throughout the central nervous system (CNS) and their association with channelopathies. Although the α-subunit coded by each of the nine isoforms can sufficiently confer transient Na(+) currents (I(Na)), in vivo these channels are modulated by auxiliary proteins like intracellular fibroblast growth factor (iFGFs) through protein-protein interaction (PPI), and probes developed from iFGF/Nav PPI complexes have been shown to precisely modulate Nav channels. Previous studies identified ZL0177, a peptidomimetic derived from a short peptide sequence at the FGF14/Nav1.6 PPI interface, as a functional modulator of Nav1.6-mediated I(Na)(+). However, the isoform specificity, binding sites, and putative physiological impact of ZL0177 on neuronal excitability remain unexplored. Here, we used automated planar patch-clamp electrophysiology to assess ZL0177's functional activity in cells stably expressing Nav1.2 or Nav1.6. While ZL0177 was found to suppress I(Na) in both Nav1.2- and Nav1.6-expressing cells, ZL0177 elicited functionally divergent effects on channel kinetics that were isoform-specific and supported by differential docking of the compound to AlphaFold structures of the two channel isoforms. Computational modeling predicts that ZL0177 modulates Nav1.2 and Nav1.6 in an isoform-specific manner, eliciting phenotypically divergent effects on action potential discharge. Taken together, these results highlight the potential of PPI derivatives for isoform-specific regulation of Nav channels and the development of therapeutics for channelopathies.
FGF14 Peptide Derivative Differentially Regulates Nav1.2 and Na(v)1.6 Function.
FGF14 肽衍生物差异性地调节 Nav1.2 和 Na(v)1.6 的功能
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| 期刊: | Life-Basel | 影响因子: | 3.400 |
| 时间: | 2025 | 起止号: | 2025 Aug 25; 15(9):1345 |
| doi: | 10.3390/life15091345 | 靶点: | FGF1 |
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