Activation of the ATP-ubiquitin-proteasome pathway in skeletal muscle of cachectic rats bearing a hepatoma
- 1 May 1995
- journal article
- research article
- Published by American Physiological Society in American Journal of Physiology-Endocrinology and Metabolism
- Vol. 268 (5), E996-E1006
- https://doi.org/10.1152/ajpendo.1995.268.5.e996
Abstract
Rats implanted with Yoshida ascites hepatoma (YAH) show a rapid and selective loss of muscle protein due mainly to a marked increase (63-95%) in the rate of protein degradation (compared with rates in muscles of pair-fed controls). To define which proteolytic pathways contribute to this increase, epitrochlearis muscles from YAH-bearing and control rats were incubated under conditions that modify different proteolytic systems. Overall proteolysis in either group of rats was not affected by removal of Ca2+ or by blocking the Ca(2+)-dependent proteolytic system. Inhibition of lysosomal function with methylamine reduced proteolysis (-12%) in muscles from YAH-bearing rats, but not in muscles of pair-fed rats. When ATP production was also inhibited, the remaining accelerated proteolysis in muscles of tumor-bearing rats fell to control levels. Muscles of YAH-bearing rats showed increased levels of ubiquitin-conjugated proteins and a 27-kDa proteasome subunit in Western blot analysis. Levels of mRNA encoding components of proteolytic systems were quantitated using Northern hybridization analysis. Although their total RNA content decreased 20-38%, pale muscles of YAH-bearing rats showed increased levels of ubiquitin mRNA (590-880%) and mRNA for multiple subunits of the proteasome (100-215%). Liver, kidney, heart, and brain showed no weight loss and no change in these mRNA species. Muscles of YAH-bearing rats also showed small increases (30-40%) in mRNA for cathepsins B and D, but not for calpain I or heat shock protein 70. Our findings suggest that accelerated muscle proteolysis and muscle wasting in tumor-bearing rats result primarily from activation of the ATP-dependent pathway involving ubiquitin and the proteasome.Keywords
This publication has 17 references indexed in Scilit:
- Metabolic acidosis stimulates muscle protein degradation by activating the adenosine triphosphate-dependent pathway involving ubiquitin and proteasomes.Journal of Clinical Investigation, 1994
- Ubiquitin gene expression is increased in skeletal muscle of tumour‐bearing ratsFEBS Letters, 1994
- Tumor necrosis factor-alpha mediates changes in tissue protein turnover in a rat cancer cachexia model.Journal of Clinical Investigation, 1993
- Tumour necrosis factor‐α increases the ubiquitinization of rat skeletal muscle proteinsFEBS Letters, 1993
- THE UBIQUITIN SYSTEM FOR PROTEIN DEGRADATIONAnnual Review of Biochemistry, 1992
- Tissue protein synthesis in lactating and dry goatsBritish Journal of Nutrition, 1991
- Endocrine regulation of protein breakdown in skeletal muscleDiabetes/Metabolism Research and Reviews, 1988
- Regulation of myofibrillar protein degradation in rat skeletal muscle during brief and prolonged starvationMetabolism, 1986
- Cachectin and tumour necrosis factor as two sides of the same biological coinNature, 1986
- o-phthaldialdehyde precolumn derivatization and reversed-phase high-performance liquid chromatography of polypeptide hydrolysates and physiological fluidsJournal of Chromatography A, 1983