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Multifocal Ectopic Purkinje Premature Contractions due to neutralization of an SCN5A negative charge: structural insights into the gating pore hypothesis.
Glazer, Andrew M; Yang, Tao; Li, Bian; Page, Dana; Fouda, Mohamed; Wada, Yuko; Lancaster, Megan C; O'Neill, Matthew J; Muhammad, Ayesha; Gao, Xiaozhi; Ackerman, Michael J; Sanatani, Shubhayan; Ruben, Peter C; Roden, Dan M.
Afiliação
  • Glazer AM; Vanderbilt University Medical Center, Nashville, TN, USA.
  • Yang T; Vanderbilt University Medical Center, Nashville, TN, USA.
  • Li B; Vanderbilt University Medical Center, Nashville, TN, USA.
  • Page D; Current address: Regeneron Pharmaceuticals Inc., Tarrytown NY, USA. Bian Li contributed to this article as an employee of Vanderbilt University Medical Center and the views expressed do not necessarily represent the views of Regeneron Pharmaceuticals Inc.
  • Fouda M; Simon Fraser University, Burnaby, BC, Canada.
  • Wada Y; Simon Fraser University, Burnaby, BC, Canada.
  • Lancaster MC; Vanderbilt University Medical Center, Nashville, TN, USA.
  • O'Neill MJ; Vanderbilt University Medical Center, Nashville, TN, USA.
  • Muhammad A; Vanderbilt University Medical Center, Nashville, TN, USA.
  • Gao X; Vanderbilt University Medical Center, Nashville, TN, USA.
  • Ackerman MJ; Mayo Clinic College of Medicine and Science, Mayo Foundation, Rochester, MN, USA.
  • Sanatani S; Mayo Clinic College of Medicine and Science, Mayo Foundation, Rochester, MN, USA.
  • Ruben PC; University of British Columbia, Vancouver, BC, Canada.
  • Roden DM; Simon Fraser University, Burnaby, BC, Canada.
bioRxiv ; 2024 Feb 16.
Article em En | MEDLINE | ID: mdl-38405820
ABSTRACT

Background:

We identified a novel SCN5A variant, E171Q, in a neonate with very frequent ectopy and reduced ejection fraction which normalized after arrhythmia suppression by flecainide. This clinical picture is consistent with multifocal ectopic Purkinje-related premature contractions (MEPPC). Most previous reports of MEPPC have implicated SCN5A variants such as R222Q that neutralize positive charges in the S4 voltage sensor helix of the channel protein NaV1.5 and generate a gating pore current. Methods and

Results:

E171 is a highly conserved negatively-charged residue located in the S2 transmembrane helix of NaV1.5 domain I. E171 is a key component of the Gating Charge Transfer Center, a region thought to be critical for normal movement of the S4 voltage sensor helix. We used heterologous expression, CRISPR-edited induced pluripotent stem cell-derived cardiomyocytes (iPSC-CMs), and molecular dynamics simulations to demonstrate that E171Q generates a gating pore current, which was suppressed by a low concentration of flecainide (IC50 = 0.71±0.07 µM). R222Q shifts voltage dependence of activation and inactivation in a negative direction but we observed positive shifts with E171Q. E171Q iPSC-CMs demonstrated abnormal spontaneous activity and prolonged action potentials. Molecular dynamics simulations revealed that both R222Q and E171Q proteins generate a water-filled permeation pathway that underlies generation of the gating pore current.

Conclusion:

Previously identified MEPPC-associated variants that create gating pore currents are located in positively-charged residues in the S4 voltage sensor and generate negative shifts in the voltage dependence of activation and inactivation. We demonstrate that neutralizing a negatively charged S2 helix residue in the Gating Charge Transfer Center generates positive shifts but also create a gating pore pathway. These findings implicate the gating pore pathway as the primary functional and structural determinant of MEPPC and widen the spectrum of variants that are associated with gating pore-related disease in voltage-gated ion channels.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article