Dietary nitrate preserves mitochondrial bioenergetics and mitochondrial protein synthesis rates during short-term immobilization in mice

被引:10
|
作者
Petrick, Heather L. [1 ,2 ,3 ]
Handy, Rachel M. [1 ]
Vachon, Bayley [1 ]
Frangos, Sara M. [1 ]
Holwerda, Andrew M. [2 ]
Gijsen, Annemarie P. [2 ]
Senden, Joan M. [2 ]
van Loon, Luc J. C. [2 ]
Holloway, Graham P. [1 ,3 ]
机构
[1] Univ Guelph, Dept Human Hlth & Nutr Sci, Guelph, ON, Canada
[2] Maastricht Univ Med Ctr, NUTRIM Sch Nutr & Translat Res Metab, Dept Human Biol, Maastricht, Netherlands
[3] Univ Guelph, Anim Sci & Nutr Bldg, 50 Stone Rd East, Guelph, ON N1G 2W1, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
immobilization; intermyofibrillar mitochondria; mitochondrial reactive oxygen species; mitochondrial respiration; nitrate; protein synthesis; subsarcolemmal mitochondria; SKELETAL-MUSCLE MITOCHONDRIA; BEETROOT JUICE; ANABOLIC RESISTANCE; IN-VIVO; EXERCISE; VASODILATION; CROSSTALK; EMISSION; WEAKNESS; ATROPHY;
D O I
10.1113/JP284701
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Skeletal muscle disuse reduces muscle protein synthesis rates and induces atrophy, events associated with decreased mitochondrial respiration and increased reactive oxygen species. Given that dietary nitrate can improve mitochondrial bioenergetics, we examined whether nitrate supplementation attenuates disuse-induced impairments in mitochondrial function and muscle protein synthesis rates. Female C57Bl/6N mice were subjected to single-limb casting (3 or 7 days) and consumed drinking water with or without 1 mM sodium nitrate. Compared with the contralateral control limb, 3 days of immobilization lowered myofibrillar fractional synthesis rates (FSR, P < 0.0001), resulting inmuscle atrophy. Although FSR and mitophagy-related proteins were higher in subsarcolemmal (SS) compared with intermyofibrillar (IMF) mitochondria, immobilization for 3 days decreased FSR in both SS (P= 0.009) and IMF (P= 0.031) mitochondria. Additionally, 3 days of immobilization reduced maximal mitochondrial respiration, decreased mitochondrial protein content, and increased maximal mitochondrial reactive oxygen species emission, without altering mitophagy-related proteins inmuscle homogenate or isolatedmitochondria (SS and IMF). Although nitrate consumption did not attenuate the decline in muscle mass or myofibrillar FSR, intriguingly, nitrate completely prevented immobilization-induced reductions in SS and IMF mitochondrial FSR. In addition, nitrate prevented alterations in mitochondrial content and bioenergetics after both 3 and 7 days of immobilization. However, in contrast to 3 days of immobilization, nitrate did not prevent the decline in SS and IMF mitochondrial FSR after 7 days of immobilization. Therefore, although nitrate supplementation was not sufficient to prevent muscle atrophy, nitrate may represent a promising therapeutic strategy to maintain mitochondrial bioenergetics and transiently preserve mitochondrial protein synthesis rates during short-term muscle disuse.
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页数:18
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