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Sphingolipid metabolism, oxidant signaling, and contractile function of skeletal muscle.

机译:鞘脂代谢,氧化剂信号传导和骨骼肌收缩功能。

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SIGNIFICANCE: Sphingolipids are a class of bioactive lipids that regulate diverse cell functions. Ceramide, sphingosine, and sphingosine-1-phosphate accumulate in tissues such as liver, brain, and lung under conditions of cellular stress, including oxidative stress. The activity of some sphingolipid metabolizing enzymes, chiefly the sphingomyelinases, is stimulated during inflammation and in response to oxidative stress. Ceramide, the sphingomyelinase product, as well as the ceramide metabolite, sphingosine-1-phosphate, can induce the generation of more reactive oxygen species, propagating further inflammation. RECENT ADVANCES: This review article summarizes information on sphingolipid biochemistry and signaling pertinent to skeletal muscle and describes the potential influence of sphingolipids on contractile function. CRITICAL ISSUES: It encompasses topics related to (1) the pathways for complex sphingolipid biosynthesis and degradation, emphasizing sphingolipid regulation in various muscle fiber types and subcellular compartments; (2) the emerging evidence that implicates ceramide, sphingosine, and sphingosine-1-phosphate as regulators of muscle oxidant activity, and (3) sphingolipid effects on contractile function and fatigue. FUTURE DIRECTIONS: We propose that prolonged inflammatory conditions alter ceramide, sphingosine, and sphingosine-1-phosphate levels in skeletal muscle and that these changes promote the weakness, premature fatigue, and cachexia that plague individuals with heart failure, cancer, diabetes, and other chronic inflammatory diseases.
机译:重要性:鞘脂是一类可调节多种细胞功能的生物活性脂质。神经酰胺,鞘氨醇和1-磷酸鞘氨醇会在细胞应激(包括氧化应激)的条件下积聚在肝,脑和肺等组织中。某些鞘脂代谢酶(主要是鞘磷脂酶)的活性在炎症过程中和响应氧化应激时受到刺激。鞘磷脂酶产物神经酰胺,以及神经酰胺代谢产物-1-磷酸鞘氨醇,可诱导产生更多的活性氧,进一步加剧炎症。最近的进展:这篇综述文章总结了有关鞘脂生物化学和与骨骼肌有关的信号的信息,并描述了鞘脂对收缩功能的潜在影响。关键问题:它涉及以下方面:(1)复杂鞘脂生物合成和降解的途径,强调各种肌肉纤维类型和亚细胞区室中的鞘脂调节; (2)新兴证据表明神经酰胺,鞘氨醇和1-磷酸鞘氨醇是肌肉氧化活性的调节剂,(3)鞘脂对收缩功能和疲劳的影响。未来的方向:我们建议长时间的炎症会改变骨骼肌中的神经酰胺,鞘氨醇和鞘氨醇-1-磷酸水平,并且这些改变会导致虚弱,过早疲劳和恶病质,使心力衰竭,癌症,糖尿病和其他疾病困扰慢性炎性疾病。

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