Regulation of total and myofibrillar protein breakdown in rat extensor digitorum longus and soleus muscle incubated flaccid or at resting length
- 1 April 1990
- journal article
- research article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 267 (1) , 37-44
- https://doi.org/10.1042/bj2670037
Abstract
The present study characterized total and myofibrillar protein breakdown rates in a muscle preparation frequently used in vitro, i.e. incubated extensor digitorum longus (EDL) and soleus (SOL) muscles of young rats. Total and myofibrillar protein breakdown rates were assessed by determining net production by the incubated muscles of tyrosine and 3-methylhistidine (3-MH) respectively. Both amino acids were determined by h.p.l.c. Both total and myofibrillar protein breakdown rates were higher in SOL than in EDL muscles and were decreased by incubating the muscles maintained at resting length, rather than flaccid. After fasting for 72h, total protein breakdown (i.e. tyrosine release) was increased by 73% and 138% in EDL muscles incubated flaccid and at resting length respectively. Net production of tyrosine by SOL muscle was not significantly altered by fasting. In contrast, myofibrillar protein degradation (i.e. 3-MH release) was markedly increased by fasting in both muscles. When tissue was incubated in the presence of 1 munit of insulin/ml, total protein breakdown rate was inhibited by 17-20%, and the response to the hormone was similar in muscles incubated flaccid or at resting length. In contrast, myofibrillar protein breakdown rate was not altered by insulin in any of the muscle preparations. The results support the concepts of individual regulation of myofibrillar and non-myofibrillar proteins and of different effects of various conditions on protein breakdown in different types of skeletal muscle. Thus determination of both tyrosine and 3-MH production in red and white muscle is important for a more complete understanding of protein regulation in skeletal muscle.This publication has 36 references indexed in Scilit:
- Total and myofibrillar protein breakdown in different types of rat skeletal muscle: Effects of sepsis and regulation by insulinMetabolism, 1989
- The effect of sepsis in rats on skeletal muscle protein synthesis in vivo and in periphery and central core of incubated muscle preparations in vitroMetabolism, 1988
- Effect of physiologic hyperinsulinemia on skeletal muscle protein synthesis and breakdown in man.Journal of Clinical Investigation, 1987
- Regulation of myofibrillar protein degradation in rat skeletal muscle during brief and prolonged starvationMetabolism, 1986
- Topography of brain metabolites: Rhesus monkey, goat, and catExperimental Neurology, 1985
- Response to trauma of protein, amino acid, and carbohydrate metabolism in injured and uninjured rat skeletal musclesMetabolism, 1983
- Muscle Proteolysis Induced by a Circulating Peptide in Patients with Sepsis or TraumaNew England Journal of Medicine, 1983
- Minireview: Calcium-dependent proteolysis in living cellsLife Sciences, 1981
- A calcium(2+) ion-activated protease possibly involved in myofibrillar protein turnover. Partial characterization of the purified enzymeBiochemistry, 1976
- HINDLIMB MUSCLE FIBER POPULATIONS OF FIVE MAMMALSJournal of Histochemistry & Cytochemistry, 1973