Unraveling calcium dysregulation and autoimmunity in immune mediated rippling muscle disease

dc.contributor.authorNath, Samir R.
dc.contributor.authorDasgupta, Aneesha
dc.contributor.authorDubey, Divyanshu
dc.contributor.authorKokesh, Eileen
dc.contributor.authorBeecher, Grayson
dc.contributor.authorFadra, Numrah
dc.contributor.authorLiewuck, Teerin
dc.contributor.authorPittock, Sean
dc.contributor.authorDoles, Jason D.
dc.contributor.authorLitchy, William
dc.contributor.authorMilone, Margherita
dc.contributor.departmentAnatomy, Cell Biology and Physiology, School of Medicine
dc.date.accessioned2025-02-18T12:29:49Z
dc.date.available2025-02-18T12:29:49Z
dc.date.issued2025-01-16
dc.description.abstractRippling Muscle Disease (RMD) is a rare skeletal myopathy characterized by abnormal muscular excitability manifesting with wave-like muscle contractions and percussion-induced muscle mounding. Hereditary RMD is associated with caveolin-3 or cavin-1 mutations. Recently, we identified cavin 4 autoantibodies as a biomarker of immune-mediated RMD (iRMD), though the underlying disease-mechanisms remain poorly understood. Transcriptomic studies were performed on muscle biopsies of 8 patients (5 males; 3 females; ages 26-to-80) with iRMD. Subsequent pathway analysis compared iRMD to human non-disease control and disease control (dermatomyositis) muscle samples. Transcriptomic studies demonstrated changes in key pathways of muscle contraction and development. All iRMD samples had significantly upregulated cavin-4 expression compared to controls, likely compensatory for autoantibody-mediated protein degradation. Proteins involved in muscle relaxation (including SERCA1, PMCA and PLN) were significantly increased in iRMD compared to controls. Comparison of iRMD to dermatomyositis transcriptomics demonstrated significant overlap in immune pathways, and the IL-6 signaling pathway was markedly increased in all iRMD patient muscle biopsies and increased in the majority of iRMD patients' serum. This study represents the first muscle transcriptomic analysis of iRMD patients and dissects underlying disease mechanisms. Increase of sarcolemmal and cellular calcium channels as well as PLN, an inhibitor of the SERCA pump for calcium into the sarcoplasm, likely alters the calcium dynamics in iRMD. These changes in crucial components of muscle relaxation may underlie rippling by altering calcium flux. Our findings provide crucial insights into the differential expression of genes regulating muscle relaxation and highlight potential disease pathomechanisms.
dc.eprint.versionFinal published version
dc.identifier.citationNath SR, Dasgupta A, Dubey D, et al. Unraveling calcium dysregulation and autoimmunity in immune mediated rippling muscle disease. Acta Neuropathol Commun. 2025;13(1):11. Published 2025 Jan 16. doi:10.1186/s40478-025-01926-z
dc.identifier.urihttps://hdl.handle.net/1805/45780
dc.language.isoen_US
dc.publisherSpringer Nature
dc.relation.isversionof10.1186/s40478-025-01926-z
dc.relation.journalActa Neuropathologica Communications
dc.rightsAttribution-NonCommercial-NoDerivatives 4.0 Internationalen
dc.rights.urihttps://creativecommons.org/licenses/by-nc-nd/4.0
dc.sourcePMC
dc.subjectImmune mediated rippling muscle disease
dc.subjectInterferon
dc.subjectInterleukin-6
dc.subjectMyopathy
dc.subjectTranscriptomics
dc.titleUnraveling calcium dysregulation and autoimmunity in immune mediated rippling muscle disease
dc.typeArticle
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