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脂质连接蛋白 1 在营养不良肌肉的肌纤维稳定性和再生中发挥互补作用。

Lipin1 plays complementary roles in myofibre stability and regeneration in dystrophic muscles.

机构信息

Department of Biochemistry and Molecular Biology, Wright State University, Dayton, OH, USA.

Department of Biological Sciences, Wright State University, Dayton, OH, USA.

出版信息

J Physiol. 2023 Mar;601(5):961-978. doi: 10.1113/JP284085. Epub 2023 Feb 10.

Abstract

Duchenne muscular dystrophy (DMD) is a severe muscle wasting disorder caused by dystrophin mutations, leading to the loss of sarcolemmal integrity, and resulting in progressive myofibre necrosis and impaired muscle function. Our previous studies suggest that lipin1 is important for skeletal muscle regeneration and myofibre integrity. Additionally, we discovered that mRNA expression levels of lipin1 were significantly reduced in skeletal muscle of DMD patients and the mdx mouse model. To understand the role of lipin1 in dystrophic muscle, we generated dystrophin/lipin1 double knockout (DKO) mice, and compared the limb muscle pathology and function of wild-type B10, muscle-specific lipin1 deficient (lipin1 ), mdx and DKO mice. We found that further knockout of lipin1 in dystrophic muscle exhibited a more severe phenotype characterized by increased necroptosis, fibrosis and exacerbated membrane damage in DKO compared to mdx mice. In barium chloride-induced muscle injury, both lipin1 and DKO showed prolonged regeneration at day 14 post-injection, suggesting that lipin1 is critical for muscle regeneration. In situ contractile function assays showed that lipin1 deficiency in dystrophic muscle led to reduced specific force production. Using a cell culture system, we found that lipin1 deficiency led to elevated expression levels of necroptotic markers and medium creatine kinase, which could be a result of sarcolemmal damage. Most importantly, restoration of lipin1 inhibited the elevation of necroptotic markers in differentiated primary lipin1-deficient myoblasts. Overall, our data suggests that lipin1 plays complementary roles in myofibre stability and muscle function in dystrophic muscles, and overexpression of lipin1 may serve as a potential therapeutic strategy for dystrophic muscles. KEY POINTS: We identified that lipin1 mRNA expression levels are significantly reduced in skeletal muscles of Duchenne muscular dystrophy patients and mdx mice. We found that further depletion of lipin1 in skeletal muscles of mdx mice induces more severe dystrophic phenotypes, including enhanced myofibre sarcolemma damage, muscle necroptosis, inflammation, fibrosis and reduced specific force production. Lipin1 deficiency leads to elevated expression levels of necroptotic markers, whereas restoration of lipin1 inhibits their expression. Our results suggest that lipin1 is functionally complementary to dystrophin in muscle membrane integrity and muscle regeneration.

摘要

杜氏肌营养不良症(DMD)是一种严重的肌肉消耗疾病,由肌营养不良蛋白基因突变引起,导致肌细胞膜完整性丧失,进而导致肌纤维进行性坏死和肌肉功能受损。我们之前的研究表明,脂联素 1 对骨骼肌再生和肌纤维完整性很重要。此外,我们发现 DMD 患者和 mdx 小鼠模型的骨骼肌中脂联素 1 的 mRNA 表达水平显著降低。为了了解脂联素 1 在营养不良肌肉中的作用,我们生成了肌营养不良蛋白/脂联素双敲除(DKO)小鼠,并比较了野生型 B10、肌肉特异性脂联素缺失(lipin1 )、mdx 和 DKO 小鼠的四肢肌肉病理学和功能。我们发现,与 mdx 小鼠相比,在营养不良的肌肉中进一步敲除脂联素 1 会导致更严重的表型,表现为坏死性凋亡增加、纤维化和膜损伤加剧。在氯化钡诱导的肌肉损伤中,lipin1 和 DKO 在注射后 14 天的再生过程都延长,表明脂联素 1 对肌肉再生很重要。在原位收缩功能测定中,我们发现营养不良肌肉中的脂联素 1 缺失导致比目鱼肌特异性力产生减少。使用细胞培养系统,我们发现脂联素 1 缺失会导致坏死性凋亡标志物和中等肌酸激酶的表达水平升高,这可能是肌细胞膜损伤的结果。最重要的是,在分化的原发性脂联素缺陷型成肌细胞中,脂联素 1 的过表达可抑制坏死性凋亡标志物的升高。总的来说,我们的数据表明,脂联素 1 在营养不良肌肉中的肌纤维稳定性和肌肉功能中发挥互补作用,脂联素 1 的过表达可能是一种治疗营养不良肌肉的潜在策略。关键点:我们发现,脂联素 1 的 mRNA 表达水平在杜氏肌营养不良症患者和 mdx 小鼠的骨骼肌中显著降低。我们发现,在 mdx 小鼠的骨骼肌中进一步耗竭脂联素 1 会导致更严重的营养不良表型,包括增强肌纤维肌膜损伤、肌肉坏死性凋亡、炎症、纤维化和比目鱼肌特异性力产生减少。脂联素 1 缺失会导致坏死性凋亡标志物的表达水平升高,而脂联素 1 的恢复可抑制其表达。我们的结果表明,脂联素 1 在肌肉细胞膜完整性和肌肉再生方面与肌营养不良蛋白具有功能互补性。

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Duchenne muscular dystrophy.杜氏肌营养不良症。
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Skeletal muscle fibrosis: an overview.骨骼肌纤维化:概述。
Cell Tissue Res. 2019 Mar;375(3):575-588. doi: 10.1007/s00441-018-2955-2. Epub 2018 Nov 12.

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