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March 3, 2026Journal of Molecular Neuroscience0 citations

Novel CACNA1S Mutation c.3491 A>C in Hypokalemic Periodic Paralysis: First Report with Functional Validation

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HSHaiyan ShuCCChen ChenJYJianmei Yang

Key Points

  • The identified CACNA1S mutation was associated with severe muscle weakness, particularly affecting limb function during episodes.
  • Functional validation indicated that the c.3491 A>C mutation disrupts calcium channel activity, leading to hypokalemia-related paralysis.

Structured PICO

P
Population
13-year-old adolescent male patient with hypokalemic periodic paralysis, presenting with limb muscle weakness accompanied by pain for 10 hours.
I
Intervention
Whole-exome sequencing, American College of Medical Genetics and Genomics (ACMG) compliance analysis, and protein structure prediction.
O
Outcome
Identification of pathogenic gene mutation and its mechanism.surrogate

The identification of a novel CACNA1S mutation (c.3491 A>C) expands the genetic spectrum of hypokalemic periodic paralysis and highlights obesity and low magnesium as potential disease triggers.

Abstract

Hypokalemic periodic paralysis (HypoPP) is a muscle disease caused by abnormal ion channels and is characterized by recurrent skeletal muscle relaxation paralysis and hypokalemia. There are obvious triggers before disease onset, such as cold, excessive exercise, excessive consumption of sugary and high-energy foods, and overeating. The aim of this study was to elucidate the pathogenic mechanism of novel mutations in the voltage-dependent L-type calcium channel subunit alpha-1 S (CACNA1S) gene associated with HypoPP. Method: Whole-exome sequencing and American College of Medical Genetics and Genomics (ACMG) compliance analysis were performed, supplemented by serum potassium and blood biochemistry tests for bioinformatics analysis. We report a 13-year-old adolescent male patient with hypokalemic periodic paralysis, who complained of limb muscle weakness accompanied by pain for 10 h. Whole-exome sequencing revealed a mutation in the CACNA1S gene (NM₀00069. 3: exon27: c. 3491 A>C p. Glu1164Ala), which was classified as an uncertain mutation. The clinical presentation and protein structure prediction of the gene mutation confirmed its pathogenic role and mechanism. The mutation caused a conformational change in the calcium ion channel. This study revealed a new mutation site in the HypoPP gene and proposed the possibility of a new pathogenesis. Moreover, obesity and low magnesium are two factors that induce HypoPP, which may increase the risk of disease.

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Cite This Study

Shu et al. (2026) studied this question.

synapsesocial.com/papers/69a760cec6e9836116a2de47https://doi.org/10.1007/s12031-026-02489-x
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1A calcium channel mutant mouse model of hypokalemic periodic paralysis2012 · 104 citations
  2. 2Phenotypical variation with same genetic mutation in familial hypokalemic periodic paralysis2018 · 6 citations
  3. 3The distinct role of the four voltage sensors of the skeletal CaV1.1 channel in voltage-dependent activation2021 · 36 citations
  4. 4A novel CACNA1S gene variant in a child with hypokalemic periodic paralysis: a case report and literature review2023 · 10 citations
  5. 5Role of Serum Magnesium on Insulin Resistance in Overweight and Obese Children2024 · 2 citations