Back to Search Start Over

Sodium channel β1 subunits participate in regulated intramembrane proteolysis-excitation coupling

Authors :
Alexandra A. Bouza
Nnamdi Edokobi
Samantha L. Hodges
Alexa M. Pinsky
James Offord
Lin Piao
Yan-Ting Zhao
Anatoli N. Lopatin
Luis F. Lopez-Santiago
Lori L. Isom
Source :
JCI Insight, Vol 6, Iss 3 (2021)
Publication Year :
2021
Publisher :
American Society for Clinical investigation, 2021.

Abstract

Loss-of-function (LOF) variants in SCN1B, encoding voltage-gated sodium channel β1 subunits, are linked to human diseases with high risk of sudden death, including developmental and epileptic encephalopathy and cardiac arrhythmia. β1 Subunits modulate the cell-surface localization, gating, and kinetics of sodium channel pore-forming α subunits. They also participate in cell-cell and cell-matrix adhesion, resulting in intracellular signal transduction, promotion of cell migration, calcium handling, and regulation of cell morphology. Here, we investigated regulated intramembrane proteolysis (RIP) of β1 by BACE1 and γ-secretase and show that β1 subunits are substrates for sequential RIP by BACE1 and γ-secretase, resulting in the generation of a soluble intracellular domain (ICD) that is translocated to the nucleus. Using RNA sequencing, we identified a subset of genes that are downregulated by β1-ICD overexpression in heterologous cells but upregulated in Scn1b-null cardiac tissue, which lacks β1-ICD signaling, suggesting that the β1-ICD may normally function as a molecular brake on gene transcription in vivo. We propose that human disease variants resulting in SCN1B LOF cause transcriptional dysregulation that contributes to altered excitability. Moreover, these results provide important insights into the mechanism of SCN1B-linked channelopathies, adding RIP-excitation coupling to the multifunctionality of sodium channel β1 subunits.

Subjects

Subjects :
Cardiology
Cell biology
Medicine

Details

Language :
English
ISSN :
23793708
Volume :
6
Issue :
3
Database :
Directory of Open Access Journals
Journal :
JCI Insight
Publication Type :
Academic Journal
Accession number :
edsdoj.6f6f508b040b4977881cf414516cea05
Document Type :
article
Full Text :
https://doi.org/10.1172/jci.insight.141776