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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作者:Arman Parsa, Haghighijoo Zahra, Lupascu Carmen A, Singh Aditya K, Goode Nana A, Baumgartner Timothy J, Singh Jully, Xue Yu, Wang Pingyuan, Chen Haiying, Antunes Dinler A, Lijffijt Marijn, Zhou Jia, Migliore Michele, Laezza Fernanda
| 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 | ||
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