Influence of Progressive Tumor Growth on Glutamine Metabolism in Skeletal Muscle and Kidney
- 1 June 1993
- journal article
- Published by Wolters Kluwer Health in Annals of Surgery
- Vol. 217 (6), 655-667
- https://doi.org/10.1097/00000658-199306000-00007
Abstract
The effects of progressive malignant growth on glutamine metabolism in skeletal muscle and in kidney were investigated. Fast-growing tumors consume considerable quantities of glutamine and lead to a decrease in circulating glutamine concentrations. Experiments were performed at various stages of tumor growth in rats implanted subcutaneously with the non-metastasizing methylcholanthrene-induced (MCA) fibrosarcoma and in pair-fed non tumor-bearing controls. Tumor growth stimulated a twofold increase in hindquarter (muscle) glutamine release, which was not due to an increase in blood flow, but rather to a doubling in the fractional release rate. Consequently, a progressive decrease in skeletal muscle glutamine concentrations was observed over time. Simultaneously, the activity of glutamine synthetase (GS), the principal enzyme of de novo glutamine biosynthesis, increased more than twofold. This increase in muscle GS activity was accompanied by an increase in GS mRNA but the augmentation in GS expression apparently could not match the increased rate of efflux since muscle depletion developed. In rats with large tumors and severe glutamine depletion, GS activity was not elevated. Glutamine feeding increased muscle glutamine concentrations and glutamine synthetase specific activity. Although tumor growth led to the development of mild systemic acidemia, the classic renal adaptations normally observed, i.e., elevated glutaminase activity and accelerated renal glutamine utilization, were not present in acidotic tumor-bearing rats. Instead, renal GS activity was increased in tumor-bearing animals and ammoniagenesis was enhanced, in spite of a reduction in net renal glutamine uptake. These data suggest that marked alterations in muscle and renal glutamine handling occur in the host with cancer; the enhanced muscle glutamine release in conjunction with no increase in renal consumption is consistent with increased glutamine uptake in other organs, most likely the tumor itself and the liver.Keywords
This publication has 34 references indexed in Scilit:
- Evidence that glutamine, not sugar, is the major energy source for cultured HeLa cells.Journal of Biological Chemistry, 1979
- Localization of glutamine accumulation and tubular reabsorption in rat nephronKidney International, 1978
- Phosphate-dependent glutaminase of small intestine: Localization and role in intestinal glutamine metabolismArchives of Biochemistry and Biophysics, 1977
- Arteriovenous differences for amino acids and lactate across kidneys of normal and acidotic ratsBiochemical Journal, 1976
- Glutamine synthetase and glutamyltransferase in the kidney of man, dog, and ratAmerican Journal of Physiology-Legacy Content, 1976
- Relative uptake of plasma amino acids by fetal and tumor tissuesMetabolism, 1974
- The Distribution of Glutaminase Isoenzymes in the Various Structures of the Nephron in Normal, Acidotic, and Alkalotic Rat KidneyJournal of Biological Chemistry, 1973
- The role of glutamine in the oxidative metabolism of malignant cells.1972
- Glutaminase activities and growth rates of rat hepatomas.1969
- The proportionality of glutaminase content to growth rate and morphology of rat neoplasms.1969