Unraveling calcium dysregulation and autoimmunity in immune mediated rippling muscle disease.

IF 6.2 2区 医学 Q1 NEUROSCIENCES
Samir R Nath, Aneesha Dasgupta, Divyanshu Dubey, Eileen Kokesh, Grayson Beecher, Numrah Fadra, Teerin Liewuck, Sean Pittock, Jason D Doles, William Litchy, Margherita Milone
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引用次数: 0

Abstract

Rippling 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.

揭示免疫介导的波纹肌病中钙失调和自身免疫。
波纹肌病(RMD)是一种罕见的骨骼肌病,其特征是肌肉异常兴奋性,表现为波状肌肉收缩和撞击引起的肌肉堆积。遗传性RMD与cavin- 3或cavin-1突变有关。最近,我们发现了cavin 4自身抗体作为免疫介导的RMD (iRMD)的生物标志物,尽管潜在的疾病机制仍然知之甚少。对8例患者的肌肉活检进行转录组学研究(男性5例;3女性;年龄在26- 80岁之间)。随后的途径分析将iRMD与人类非疾病对照和疾病对照(皮肌炎)肌肉样本进行了比较。转录组学研究表明,肌肉收缩和发育的关键途径发生了变化。与对照组相比,所有iRMD样本的cavin-4表达均显著上调,这可能是对自身抗体介导的蛋白质降解的补偿。与对照组相比,iRMD中参与肌肉松弛的蛋白质(包括SERCA1、PMCA和PLN)显著增加。iRMD与皮肌炎的转录组学比较显示免疫通路有明显重叠,IL-6信号通路在所有iRMD患者的肌肉活检中显著增加,在大多数iRMD患者的血清中也明显增加。这项研究首次对iRMD患者进行了肌肉转录组学分析,并剖析了潜在的疾病机制。肌层和细胞钙通道的增加以及PLN (SERCA将钙泵入肌质的抑制剂)可能会改变iRMD中的钙动力学。这些肌肉松弛的关键组成部分的变化可能是通过改变钙通量产生涟漪效应的基础。我们的发现为调节肌肉松弛的基因差异表达提供了重要的见解,并强调了潜在的疾病病理机制。
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来源期刊
Acta Neuropathologica Communications
Acta Neuropathologica Communications Medicine-Pathology and Forensic Medicine
CiteScore
11.20
自引率
2.80%
发文量
162
审稿时长
8 weeks
期刊介绍: "Acta Neuropathologica Communications (ANC)" is a peer-reviewed journal that specializes in the rapid publication of research articles focused on the mechanisms underlying neurological diseases. The journal emphasizes the use of molecular, cellular, and morphological techniques applied to experimental or human tissues to investigate the pathogenesis of neurological disorders. ANC is committed to a fast-track publication process, aiming to publish accepted manuscripts within two months of submission. This expedited timeline is designed to ensure that the latest findings in neuroscience and pathology are disseminated quickly to the scientific community, fostering rapid advancements in the field of neurology and neuroscience. The journal's focus on cutting-edge research and its swift publication schedule make it a valuable resource for researchers, clinicians, and other professionals interested in the study and treatment of neurological conditions.
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