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Research Article: RYR1 mutations linked to malignant hyperthermia susceptibility are associated with phenotypic changes in human B-lymphocytes

Date Published: 2026-07-27

Abstract:
Ryanodine receptor 1 (RyR1) is a key intracellular Ca 2+ release channel primarily expressed in skeletal muscle, but also in some immune cells. Gain-of-function RYR1 mutations are the most common cause of the pharmacogenetic disorder malignant hyperthermia susceptibility. Compatibly, mice knocked in for gain of function Ryr1 mutations develop malignant hyperthermia but also show subtle changes in their immune function, supporting a potential but yet to be explored effect of RyR1 mutations on the human immune system. Healthy controls and subjects classified as Malignant Hyperthermia Susceptible were enrolled in an anonymized allergy questionnaire study. PBMC and Epstein Barr virus immortalized B cells from the two cohorts were characterized for surface markers by flow cytometry and for calcium homeostasis using the intracellular calcium indicator Fluo-4. Serum samples were investigated for circulating cytokines by ELISA and Ig quantification was carried out by a clinical laboratory. Malignant hyperthermia susceptible individuals report a higher frequency of allergies, show changes in circulating immunoglobulin and cytokine levels and their circulating B cells exhibit a pre-activated state, with increased surface expression of the co-stimulatory molecules CD86 and CD40. Stimulation of EBV-immortalized B lymphocytes with the RyR1 agonist caffeine results in a tetracaine-sensitive increased surface expression of CD86, which was more pronounced in cells from malignant hyperthermia susceptible individuals. Our results support a functional role of RyR1 in B-lymphocyte Ca 2+ signaling and show that in humans the presence of gain of function RYR1 mutations leads to the pre-activation of B cells.

Introduction:
Calcium is a universal second messenger regulating a number of biological functions from muscle contraction, to gene transcription and cell death ( 1 ). Ca 2+ signals result both from the release of Ca 2+ from intracellular stores (endo/sarcoplasmic reticulum) and influx from the extracellular environment, via the opening of channels on the plasma membrane. In lymphocytes, T-cell receptor and B-cell receptor engagement activate phospholipase C, leading to the production of Inositol 1,4,5 trisphosphate (InsP 3 )…

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