Austin Health

Title
Ammonium chloride administration prior to exercise has muscle-specific effects on mitochondrial and myofibrillar protein synthesis in rats.
Publication Date
2021
Author(s)
Genders, Amanda J
Marin, Evelyn C
Bass, Joseph J
Kuang, Jujiao
Saner, Nicholas J
Smith, Ken
Atherton, Philip J
Bishop, David J
Subject
acidosis
exercise
mitochondria
protein synthesis
skeletal muscle
Type of document
Journal Article
OrcId
0000-0001-7535-4071
0000-0002-8236-681X
0000-0002-1366-0089
0000-0002-6011-7126
0000-0001-8971-6635
0000-0002-7286-046X
0000-0002-6956-9188
DOI
10.14814/phy2.14797
Abstract
Exercise is able to increase both muscle protein synthesis and mitochondrial biogenesis. However, acidosis, which can occur in pathological states as well as during high-intensity exercise, can decrease mitochondrial function, whilst its impact on muscle protein synthesis is disputed. Thus, the aim of this study was to determine the effect of a mild physiological decrease in pH, by administration of ammonium chloride, on myofibrillar and mitochondrial protein synthesis, as well as associated molecular signaling events. Male Wistar rats were given either a placebo or ammonium chloride prior to a short interval training session. Rats were killed before exercise, immediately after exercise, or 3 h after exercise. Myofibrillar (p = 0.036) fractional protein synthesis rates was increased immediately after exercise in the soleus muscle of the placebo group, but this effect was absent in the ammonium chloride group. However, in the gastrocnemius muscle NH4 Cl increased myofibrillar (p = 0.044) and mitochondrial protein synthesis (0 h after exercise p = 0.01; 3 h after exercise p = 0.003). This was accompanied by some small differences in protein phosphorylation and mRNA expression. This study found ammonium chloride administration immediately prior to a single session of exercise in rats had differing effects on mitochondrial and myofibrillar protein synthesis rates in soleus (type I) and gastrocnemius (type II) muscle in rats.
Link
Citation
Physiological reports 2021; 9(6): e14797
Jornal Title
Physiological Reports

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