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禁食30天及活动减少后北象海豹骨骼肌的变化

Changes in Northern Elephant Seal Skeletal Muscle Following Thirty Days of Fasting and Reduced Activity.

作者信息

Wright Traver J, Davis Randall W, Holser Rachel R, Hückstädt Luis A, Danesi Christopher P, Porter Craig, Widen Steven G, Williams Terrie M, Costa Daniel P, Sheffield-Moore Melinda

机构信息

Department of Health and Kinesiology, Texas A&M University, College Station, TX, United States.

Department of Internal Medicine, University of Texas Medical Branch, Galveston, TX, United States.

出版信息

Front Physiol. 2020 Oct 6;11:564555. doi: 10.3389/fphys.2020.564555. eCollection 2020.

Abstract

Northern elephant seals (NES, ) undergo an annual molt during which they spend ∼40 days fasting on land with reduced activity and lose approximately one-quarter of their body mass. Reduced activity and muscle load in stereotypic terrestrial mammalian models results in decreased muscle mass and capacity for force production and aerobic metabolism. However, the majority of lost mass in fasting female NES is from fat while muscle mass is largely preserved. Although muscle mass is preserved, potential changes to the metabolic and contractile capacity are unknown. To assess potential changes in NES skeletal muscle during molt, we collected muscle biopsies from 6 adult female NES before the molt and after ∼30 days at the end of the molt. Skeletal muscle was assessed for respiratory capacity using high resolution respirometry, and RNA was extracted to assess changes in gene expression. Despite a month of reduced activity, fasting, and weight loss, skeletal muscle respiratory capacity was preserved with no change in OXPHOS respiratory capacity. Molt was associated with 162 upregulated genes including those favoring lipid metabolism. We identified 172 downregulated genes including those coding for ribosomal proteins and genes associated with skeletal muscle force transduction and glucose metabolism. Following ∼30 days of molt, NES skeletal muscle metabolic capacity is preserved although mechanotransduction may be compromised. In the absence of exercise stimulus, fasting-induced shifts in muscle metabolism may stimulate pathways associated with preserving the mass and metabolic capacity of slow oxidative muscle.

摘要

北象海豹(NES)每年都会经历一次换毛期,在此期间它们会在陆地上禁食约40天,活动减少,体重减轻约四分之一。在刻板的陆生哺乳动物模型中,活动减少和肌肉负荷降低会导致肌肉质量下降以及力量产生和有氧代谢能力降低。然而,禁食的雌性北象海豹损失的大部分体重来自脂肪,而肌肉质量基本保持不变。尽管肌肉质量得以保留,但代谢和收缩能力的潜在变化尚不清楚。为了评估换毛期北象海豹骨骼肌的潜在变化,我们在换毛前和换毛结束约30天后从6只成年雌性北象海豹身上采集了肌肉活检样本。使用高分辨率呼吸测定法评估骨骼肌的呼吸能力,并提取RNA以评估基因表达的变化。尽管经过一个月的活动减少、禁食和体重减轻,骨骼肌的呼吸能力仍得以保留,氧化磷酸化呼吸能力没有变化。换毛与162个上调基因有关,包括那些有利于脂质代谢的基因。我们鉴定出172个下调基因,包括那些编码核糖体蛋白的基因以及与骨骼肌力转导和葡萄糖代谢相关联的基因。经过约30天的换毛期后,北象海豹骨骼肌的代谢能力得以保留,尽管机械转导可能受到损害。在缺乏运动刺激的情况下禁食诱导的肌肉代谢变化可能会刺激与保留慢氧化型肌肉的质量和代谢能力相关的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b768/7573231/2381e498bb96/fphys-11-564555-g001.jpg

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