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"Slow" skeletal muscles across vertebrate species.跨脊椎动物物种的“慢肌”骨骼肌。
Cell Biosci. 2015 Nov 14;5:62. doi: 10.1186/s13578-015-0054-6. eCollection 2015.
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RNA-seq transcriptome analysis of extensor digitorum longus and soleus muscles in large white pigs.大白猪趾长伸肌和比目鱼肌的RNA测序转录组分析
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FHL3 differentially regulates the expression of MyHC isoforms through interactions with MyoD and pCREB.FHL3通过与MyoD和pCREB相互作用来差异调节肌球蛋白重链(MyHC)亚型的表达。
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The miRNA Transcriptome Directly Reflects the Physiological and Biochemical Differences between Red, White, and Intermediate Muscle Fiber Types.微小RNA转录组直接反映红肌、白肌和中间型肌纤维类型之间的生理生化差异。
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Second-generation compound for the modulation of utrophin in the therapy of DMD.用于杜氏肌营养不良症治疗中调节抗肌萎缩蛋白的第二代化合物。
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A rare mutation in MYH7 gene occurs with overlapping phenotype.MYH7基因的一种罕见突变伴随着重叠表型出现。
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Utrophin A is essential in mediating the functional adaptations of mdx mouse muscle following chronic AMPK activation.抗肌萎缩蛋白A在介导慢性AMPK激活后mdx小鼠肌肉的功能适应性方面至关重要。
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NFATc1 controls skeletal muscle fiber type and is a negative regulator of MyoD activity.NFATc1控制骨骼肌纤维类型,并且是MyoD活性的负调节因子。
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骨骼肌纤维类型:利用肌肉发育生物学的见解剖析肌肉疾病易感性和抗性的靶点。

Skeletal muscle fiber type: using insights from muscle developmental biology to dissect targets for susceptibility and resistance to muscle disease.

作者信息

Talbot Jared, Maves Lisa

机构信息

Department of Molecular Genetics, The Ohio State University, Columbus, OH, USA.

Center for Developmental Biology and Regenerative Medicine, Seattle Children's Research Institute, Seattle, WA, USA.

出版信息

Wiley Interdiscip Rev Dev Biol. 2016 Jul;5(4):518-34. doi: 10.1002/wdev.230. Epub 2016 May 19.

DOI:10.1002/wdev.230
PMID:27199166
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5180455/
Abstract

Skeletal muscle fibers are classified into fiber types, in particular, slow twitch versus fast twitch. Muscle fiber types are generally defined by the particular myosin heavy chain isoforms that they express, but many other components contribute to a fiber's physiological characteristics. Skeletal muscle fiber type can have a profound impact on muscle diseases, including certain muscular dystrophies and sarcopenia, the aging-induced loss of muscle mass and strength. These findings suggest that some muscle diseases may be treated by shifting fiber type characteristics either from slow to fast, or fast to slow phenotypes, depending on the disease. Recent studies have begun to address which components of muscle fiber types mediate their susceptibility or resistance to muscle disease. However, for many diseases it remains largely unclear why certain fiber types are affected. A substantial body of work has revealed molecular pathways that regulate muscle fiber type plasticity and early developmental muscle fiber identity. For instance, recent studies have revealed many factors that regulate muscle fiber type through modulating the activity of the muscle regulatory transcription factor MYOD1. Future studies of muscle fiber type development in animal models will continue to enhance our understanding of factors and pathways that may provide therapeutic targets to treat muscle diseases. WIREs Dev Biol 2016, 5:518-534. doi: 10.1002/wdev.230 For further resources related to this article, please visit the WIREs website.

摘要

骨骼肌纤维可分为不同的纤维类型,特别是慢肌纤维和快肌纤维。肌肉纤维类型通常由它们所表达的特定肌球蛋白重链异构体来定义,但许多其他成分也会影响纤维的生理特性。骨骼肌纤维类型对肌肉疾病有着深远影响,包括某些肌肉营养不良症和肌肉减少症,即衰老引起的肌肉质量和力量丧失。这些发现表明,某些肌肉疾病或许可以通过改变纤维类型特征来治疗,具体是从慢肌纤维表型转变为快肌纤维表型,还是从快肌纤维表型转变为慢肌纤维表型,这取决于具体疾病。最近的研究已开始探讨肌肉纤维类型的哪些成分介导了它们对肌肉疾病的易感性或抗性。然而,对于许多疾病来说,为何某些纤维类型会受到影响在很大程度上仍不清楚。大量研究工作揭示了调节肌肉纤维类型可塑性和早期发育肌肉纤维特性的分子途径。例如,最近的研究发现了许多通过调节肌肉调节转录因子MYOD1的活性来调控肌肉纤维类型的因素。未来在动物模型中对肌肉纤维类型发育的研究将继续加深我们对那些可能为治疗肌肉疾病提供治疗靶点的因素和途径的理解。《WIREs发育生物学》2016年,5:518 - 534。doi:10.1002/wdev.230 如需获取与本文相关的更多资源,请访问WIREs网站。