Stimulation of hormone-sensitive lipase activity by contractions in rat skeletal muscle
Open Access
- 1 October 2000
- journal article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 351 (1), 207-214
- https://doi.org/10.1042/0264-6021:3510207
Abstract
Because the enzymic regulation of muscle triglyceride breakdown is poorly understood we studied whether neutral lipase in skeletal muscle is activated by contractions. Incubated soleus muscles from 70 g rats were electrically stimulated for 60min. Neutral lipase activity against triacylglycerol increased after 1 and 5min of contractions [0.36±0.02 (basal) versus 0.49±0.05 (1min) and 0.54±0.05 (5min) m-unit·mg of protein-1, means±S.E.M., P < 0.05]. After 10min the neutral lipase activity (0.40±0.05m-unit·mg of protein-1) had decreased to basal values (P > 0.05). The contraction-mediated increase in lipase activity was increased by ≈ 110% when muscle was stimulated in the presence of okadaic acid. Conversely, treatment of muscle homogenate with alkaline phosphatase completely reversed the contraction-mediated lipase activation. Lipase activity did not change during contractions when analysed in the presence of anti-hormone-sensitive-lipase (HSL) antibody [0.17±0.02 (basal) versus 0.21±0.02 (5min) m-unit·mg of protein-1, P > 0.05]. Furthermore, immunoprecipitation with affinity-purified anti-HSL antibody reduced muscle-HSL protein concentration by 81±4% and caused similar reductions in lipase activity against triacylglycerol and in the contraction-induced increase in this activity. Neither prior sympathectomy [0.33±0.02 (basal) versus 0.53±0.06 (5min) m-unit·mg of protein-1, P < 0.05] nor propranolol impaired the lipase response to contractions. Glycogen phosphorylase activity in the absence of AMP increased after 1min [27.3±3.1 versus 8.9±1.8% (activity without AMP/total activity with AMP), P < 0.05] and returned to basal levels after 5min. In conclusion, skeletal-muscle-immunoreactive HSL is transiently stimulated by contractions and the mechanism probably involves phosphorylation. The time course of HSL activation is similar to that of glycogen phosphorylase. Apparently, the two enzymes are regulated in parallel by contraction-induced as well as hormonal mechanisms, allowing simultaneous recruitment of all major extra- and intra-muscular energy stores.Keywords
This publication has 26 references indexed in Scilit:
- Perilipins, ADRP, and other proteins that associate with intracellular neutral lipid droplets in animal cellsSeminars in Cell & Developmental Biology, 1999
- Identification of Novel Phosphorylation Sites in Hormone-sensitive Lipase That Are Phosphorylated in Response to Isoproterenol and Govern Activation Properties in VitroJournal of Biological Chemistry, 1998
- Molecular Cloning, Genomic Organization, and Expression of a Testicular Isoform of Hormone-Sensitive LipaseGenomics, 1996
- The effect of lesions of the sympathoadrenal system on training induced adaptations in adipocytes and pancreatic islets in ratsActa Physiologica Scandinavica, 1996
- Adipocyte hormone-sensitive lipase: a major regulator of lipid metabolismProceedings Of The Nutrition Society, 1996
- Inhibition of hormone‐sensitive lipase by intermediary lipid metabolitesFEBS Letters, 1992
- Acetyl group accumulation and pyruvate dehydrogenase activity in human muscle during incremental exerciseActa Physiologica Scandinavica, 1991
- Hormone-Sensitive Lipase: Sequence, Expression, and Chromosomal Localization to 19 cent-q13.3Science, 1988
- Immunological evidence for the presence of hormone-sensitive lipase in rat tissues other than adipose tissueBiochemical and Biophysical Research Communications, 1987
- Effect of beta-adrenergic blockade on intramuscular triglyceride mobilization during exerciseCellular and Molecular Life Sciences, 1978