HMG CoA还原酶(HMGCR)缺乏对骨骼肌发育的影响

Mekala Gunasekaran, Hannah R Littel, Natalya M Wells, Johnnie Turner, Gloriana Campos, Sree Venigalla, Elicia A Estrella, Partha S Ghosh, Audrey L Daugherty, Seth A Stafki, Louis M Kunkel, A Reghan Foley, Sandra Donkervoort, Carsten G Bönnemann, Laura Toledo-Bravo de Laguna, Andres Nascimento, Daniel Natera-de Benito, Isabelle Draper, Christine C Bruels, Christina A Pacak, Peter B Kang
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引用次数: 0

摘要

HMGCR的致病变异最近与肢体带状肌营养不良(LGMD)表型有关。蛋白质产物HMG辅酶a还原酶(HMGCR)催化胆固醇合成途径的一个关键组成部分。另外两种与HMGCR相关的肌肉疾病,他汀类药物相关肌病(SAM)和自身免疫性抗HMGCR肌病,不以孟德尔模式遗传。他汀类药物抑制HMGCR活性以产生降胆固醇作用,已知会对骨骼肌造成多种不良反应,而与抗HMGCR肌病相关的抗体专门针对该酶。HMGCR致病性变异与骨骼肌功能障碍之间的联系机制尚不清楚。我们在小鼠骨骼肌母细胞中敲低Hmgcr,在果蝇中敲低Hmgcr,并表达了三种致病性Hmgcr变体(c.1327C b> T, p.Arg443Trp;c.1522_1524delTCT p.Ser508del;和c.1621G>A, p.Ala541Thr)在Hmgcr敲除小鼠成肌细胞中的表达。Hmgcr缺乏与增殖减少、细胞凋亡增加和肌管融合受损有关。Hmgcr敲低与对照成肌细胞的转录组测序揭示了涉及线粒体功能的差异表达,以及相应的细胞耗氧量差异。果蝇中普遍存在的和肌肉特异性的hmgcr基因敲低都会导致死亡。参考基因HMGCR cDNA的过表达挽救了敲除细胞中的肌管融合,而致病基因HMGCR cDNA的过表达则没有。这些结果表明,三种与hmgcr相关的肌肉疾病具有与骨骼肌发育相关的疾病机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of HMG CoA reductase (HMGCR) deficiency on skeletal muscle development.

Pathogenic variants in HMGCR were recently linked to a limb-girdle muscular dystrophy (LGMD) phenotype. The protein product HMG CoA reductase (HMGCR) catalyzes a key component of the cholesterol synthesis pathway. The two other muscle diseases associated with HMGCR, statin-associated myopathy (SAM) and autoimmune anti-HMGCR myopathy, are not inherited in a Mendelian pattern. Statins inhibit HMGCR activity to generate their cholesterol-lowering effects and are known to cause multiple types of adverse effects on skeletal muscle, while the antibodies associated with anti-HMGCR myopathy specifically target this enzyme. The mechanism linking pathogenic variants in HMGCR with skeletal muscle dysfunction is unclear. We knocked down Hmgcr in mouse skeletal myoblasts, knocked down hmgcr in Drosophila, and expressed three pathogenic HMGCR variants (c.1327C>T, p.Arg443Trp; c.1522_1524delTCT, p.Ser508del; and c.1621G>A, p.Ala541Thr) in Hmgcr knockdown mouse myoblasts. Hmgcr deficiency was associated with decreased proliferation, increased apoptosis, and impaired myotube fusion. Transcriptome sequencing of Hmgcr knockdown versus control myoblasts revealed differential expression involving mitochondrial function, with corresponding differences in cellular oxygen consumption rates. Both ubiquitous and muscle-specific knockdown of hmgcr in Drosophila led to lethality. Overexpression of reference HMGCR cDNA rescued myotube fusion in knockdown cells, whereas overexpression of the pathogenic variants of HMGCR cDNA did not. These results suggest that the three HMGCR-related muscle diseases share disease mechanisms related to skeletal muscle development.

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