371
Views
28
CrossRef citations to date
0
Altmetric
Research Article

Thermogenesis and energy expenditure: control of heat production by the Ca 2+ -ATPase of fast and slow muscle

, &
Pages 301-310 | Published online: 09 Jul 2009

  • Arai, M., Otsu K., MacLennan, D. H., Alpert, N. R. and Periasamy, M., 1991, Effect of thyroid hormone on the expression of messenger RNA encoding sarcoplasmic-reticulum proteins. Circulation Research. 69, 266-276.
  • Bianco, A. C. and Silva, J. E., 1987, Intracellular conversion of thyroxin to tniodothyronine is required for the optimal thermogenic function of brown adipose tissue. Journal of Clinical Investigation, 79, 295-300.
  • Block, B. A., 1994, Thermogenesis in muscle. Annual Review of Physiology. 56, 535-577.
  • Boivin, M., Camirand, A., Carli, F., Hoffer, L J. and Silva, J. E., 2000, Uncoupling protein-2 and -3 messenger ribonucleic acids in adipose tissue and skeletal muscle of healthy males: Variability, factors affecting expression, and relation to measures of metabolic rate. Journal of Clinical Endocrinology and Metabolism. 85, 1975-1983.
  • Boss, O., Samec, S., Küihnet, F., Bijlenga, P., Assimacopoutos, J., Seydoux, J., Giacobino, J. P. and Muzzin, P., 1998, Uncoupling protein-3 expression in rodent skeletal muscle is modulated by food intake but not by changes in environmental temperature. Journal of Biological Chemistry. 273, 5-8.
  • Chiesi, M. and Inesi, G., 1979, The use of quench reagents for resolution of single transport cycles in sarcoplasmic reticulum. Journal of Biological Chemistry. 254, 10370-10377.
  • Chinet A. E., Decrouy, A. and Even, P. C., 1992, Ca2+ dependent heat production under basal and near-basal conditions in the mouse soleus muscle. Journal of Physiology. 455, 663 - 678.
  • Clausen, T., van Hardeveld, C. and Everts, M. E., 1991. Significance of cation transport in control of energy metabolism and thermogenesis. Physiological Reviews, 71, 733-774.
  • Danforth, E. Jr. and Burger, A., 1984, The role of thyroid hormones in the control of energy expenditure. Clinical Endocrinology and Metabolism. 13, 581-595.
  • deMeis, L., 1981, The sarcoplasmic reticulum: Transport and energy transduction. vol. 2. E. Bittar, ed. (New York: Wiley).
  • de Meis, L., 1988, Approaches to study mechanisms of ATP synthesis in sarcoplasmic reticulum. Methods in Enzymology, 157, 190-206.
  • de Meis, L., 1991, Fast efflux of Ca2+ mediated by the sarcoplasmic reticulum Ca2+-ATPase. Journal of Biological Chemistry, 266, 5736-5742.
  • de Meis, L., 1998a, Control of heat produced during ATP hydrolysis by the sarcoplasmic reticulum Ca2+-ATPase in the absence of a Ca2+ gradient. Biochemistry and Biophysics Research Communications, 243, 598-600.
  • de Meis, L., 1998b, Control of heat production by the Ca2+-ATPase of rabbit and trout sarcoplasmic reticulum. American Journal of Physiology. 274, C1738-C1744.
  • de Meis, L., 2000, ATP synthesis and heat production during Ca2+ efflux by sarcoplasmic reticulum Ca2+-ATPase. Biochemistry and Biophysics Research Communications, 276, 35-39.
  • de Meis, L., 2001, Uncoupled ATPase activity and heat production by the sarcoplasmic reticulum Ca2+-ATPase. Journal of Biological Chemistry, 276, 25078-25087.
  • de Meis, L. and Vianna, A. L., 1979, Energy interconversion by the Ca2+-transport ATPase of sarcoplasmic reticulum. Annual Review of Biochemistry, 48, 275-292.
  • de Meis, L., Bianconi, M L. and Suzano, V. A., 1997, Control of energy fluxes by the sarcoplasmic reticulum Ca2+-ATPase: ATP hydrolysis. ATP synthesis and heat production. FEBS Letters, 406, 201-204
  • Dietrich, D. L. L and Elzinga, G., 1993, Heat produced by rabbit pappilary muscle during anoxia and reoxygenation Circulation Research, 73, 1177-1187.
  • Dulhunty, A. F., Banyard, M. R. and Medveczky, C. C., 1987, Distribution of calcium ATPase in the sarcoplasmic reticulum of fast- and slow-twitch muscles determined with monoclonal antibodies. Journal of Membrane Biology, 99, 79-92.
  • Dumonteil, E., Barré, M. and Meissner, G., 1993, Sarcoplasmic reticulum Ca2+-ATPase and rymanodine receptor in cold-acclimated ducklings and thermogenesis. American Journal of Physiology. 265, C507-C513.
  • Dumonteil, E., Barré, H. and Meissner, G. 1995, Expression of sarcoplasmic reticulum Ca2+ transport proteins in cold-acclimating ducklings. American Journal of Physiology, 269, C955-C960
  • Eletr, S. and Inesi, G., 1972, Phospholipid orientation in sarcoplasmic reticulum membranes: spin label ESR and proton NMR studies. Biochimica et Biophysics Acta, 282, 174-179.
  • Fitts, R. H., Winder, W. W., Brooke, M. H., Kaiser, K. K. and Holtoszy, J. O., 1980, Contractile, biochemical, and histochemical properties of thyrotoxic rat soleus muscle. American Journal of Physiology, 238, C14-C20.
  • Fortea, M. I., Soler, F. and Femandez-Belda, F., 2000, Insight into the uncoupling mechanism of sarcoplasmic reticulum ATPase using the phosphorylating substrate UTP. Journal of Biological Chemistry. 275, 12521-12529.
  • Freake, H. C. and Oppenheimer, J. H., 1995, Thermogenesis and thyroid function. Annual Review of Nutrition, 15, 263-291.
  • Gong, D. W., Monemdjou, S., Gavrilova, O., Leon, L. R., Marcus-Samuels, B., Chou, C. J., Everett, C., Kozak, L. P., Chuiling, L., Deng, C., Harper, M. E. and Reitman, M. L., 2000, Lack of obesity and normal response to fasting and thyroid hormone in mice lacking uncoupling protein. Journal of Biological Chemistry, 275, 16251-16257.
  • Gould, G. W., McWhirter, J. M., East, J. M. and Lee, A. G., 1987, A fast passive Ca2+ efflux mediated by the (Ca2++ Mg2+)-ATPase in reconstituted vesicles. Biochimica et Biophysics Acta. 904, 45-54.
  • Grubmeyer, C. and Penefsky, H. S., 1981, The presence of two hydrorytic sites on beef heart mitochondrial adenosine triphosphatase. Journal of Biological Chemistry. 256, 3718-3727.
  • Hämäläinen, N. and Pette, D., 1997, Coordinated fat-to-slow transitions of myosin and SERCA isoforms in chronically stimulated muscles of euthyroid and hyperthyroid rabbits. Journal of Muscle Research and Cellular Motility. 18, 545-554.
  • Hasselbach, W., 1978, Reversibility of the sarcoplasmic calcium pump. Biochimica et Biophysics Acta. 515, 23-53.
  • Inesi, G., 1985. Mechanism of Ca2+ transport. Annual Review of Physiology, 47, 573-601.
  • Inesi, G., Kurzmack, M., Coan, C. and Lewis, D., 1980, Cooperative calcium binding and ATPase activation in sarcoplasmic reticulum vesicles. Journal of Biological Chemistry, 255, 3025-3031
  • Jansky, L., 1995. Humoral thermogenesis and its role in maintaining energy balance. Physiological Reviews. 75, 237-259.
  • Jucker, B. M., Ren, J., Dufour, S., Cao, X., Previs, S. H., Cadman, K. S. and Shulman, G. I., 2000, 13C/31P NMR assessment of mitochondrial energy coupling in skeletal muscle of awake fed and fasted rats. Journal of Biological Chemistry. 275, 39279-39286.
  • Laemmli, U. K., 1970, Cleavage of structural proteins during the assembly of the head of bacleriophage T4. Nature (London). 227, 680-685
  • Lebon, V., Dufour, S., Petersen, K. F., Ren, J., Jucker, B. M., Slezak, L. A., Cline, G. G., Rothman, D. L. and Shulman, G. I., 2001, Effect of triiodothyronine in mitochondrial energy coupling in human skeletal muscle. Journal of Clinical Investigation, 108, 733-737.
  • Lowell, B B. and Spiegelman, B. M., 2000, Toward a molecular understanding of adaptive thermogenesis. Nature. 404, 652-660.
  • Lytton, J. and MacLennan, D. H., 1988, Molecular cloning of cDNAs from human kidney coding for two alternatively spliced products of the cardiac Ca2+-ATPase gene. Journal of Biological Chemistry. 263, 15024-15031.
  • Lytton, J., Westin, M., Burk, S E., Shull, G. E. and MacLennan, D H., 1992, Functional comparions between isoforms of the sarcoplasmic reticulum family of calcium pumps Journal of Biological Chemistry, 267, 14483-14489.
  • MacLennan, D. H., Brandi, C. J., Korczak, B and Green N M., 1985. Amino-acid sequence of Ca2+. Mg2+-dependent ATPase from rabbit muscle sarcoplasmic reticulum, deduced from its complementary DMA sequence. Nature. 316, 696-700.
  • Mitidieri, F. and de Meis, L., 1999, Ca2+ Release and heat production by the endoplasmic reticulum Ca2+-ATPase of Wood platelets: effect of the platelets activating factor Journal of Biological Chemistry. 274, 28344-28350
  • Nunes, M. T., Bianco, A. C. and Hasselbach, W., 1984, Effect of thyroxlne treatment on sarcoplasmic reticulum calcium pump of rabbit skeletal muscle Brazilian Journal of Medical and Biological Research, 17, 464.
  • Nunes, M. T., Bianco, A. C., Migala, A., Agostini, B. and Hasselbach, W. 1985. Tyroxine induced transformation in sarcoplasmic reticulum of rabbit soleus and psoas muscles. Zeitschrift für Naturforschung, 40c, 726-734.
  • Reis, M., Farage, M., Souza, A. C. and de Meis, L., 2001, Correlation between uncoupled ATPase hydrolysis and heat production by the sarcoplasmic reticulum Ca2+-ATPase. Journal of Biological Chemistry, 276, 42793-42800.
  • Rjbeiro, M. O., Suzy, D. C., Schullz, J. J., Chiellini, G., Scanlan, T. S., Bianco, A. C. and Brent, G. A., 2001. Thyroid hormonesympathetic Interaction and adaptative thermogenesis are thyroid hormone receptor isoform-spectfic. Journal of Clinical Investigation, 108, 35-37.
  • Rolfe, D. F. S. and Brown, G.G., 1997, Cellular energy utilization and molecular origin of standard metabolic rate in mammals. Physiological Reviews. 77, 731-758
  • Sayen, M. R., Rohrer, D. K. and Dillmann, W. H., 1992, Thyroid hormone response of slow and fast sarcoplasmic reticulum Ca2+ ATPase mRNA in striated muscle. Molecular and Cellular Endocrinology. 87, 87-93.
  • Silva, J. E., 1995, Thyroid hormone control of thermogenesis and energy balance. Thyroid, 5, 481-492.
  • Silva, J. E., 2001, The multiple contribution of thyroid hormone to heat production. Journal of Clinical Investigation, 108, 35-37.
  • Silva, J. E. and Larsen, P. R., 1983, Adrenergic activation of triiodothyronine production in brown adipose tissue. Nature, 305, 712-713.
  • Simonides, W. S and van Hardeveld, C., 1989, The postnatal development of sarcoplasmic reticulum Ca2+ transport activity In skeletal muscle of the rat is critically dependent of thyroid hormone. Endocnnology, 124, 1145-1153.
  • Soboll, S., 1993, Thyroid hormone action on mitochondrial energy transfer. Biochimica et Biophysica Acta. 1144, 1-16.
  • Tada, M., Inui, M., Yamada, M., Kadoma, M., Kuzuya, T., Abe, H. and Kakiuchi, S., 1983, Effects of phospholamban phosphorylation catalyzed by adenosine 3":5'- monophosphate- and calmodulin-dependent protein kinase on calcium transport ATPase of cardiac sarcoplasmic reticulum. Journal of Molecular and Cellular Cardiology, 15, 335-346.
  • Tada, M., Kadoma, M., Inui, M. and Fujii, J., 1988. Regulation of Ca2+-pump from cardiac sarcoplasmic reticulum. Methods in Enzymology. 157, 107-154
  • Tanford, C., 1984, Twenty questions concerning the reaction cycle of the sarcoplasmic reticulum calcium pump CRC Critical Review in Biochemistry and Molecular Biology. 17, 123-151.
  • Thelen, M. H. M, Simonides, W. S., Muller, A. and van Hardeveld, C., 1998. Cross-talk between transcriptional regulation by thyroid hormone and myogenin; new aspects of the Ca2+-dependent expression of the fast-type sarcoplasmic reliculum Ca2+-ATPase. Biochemical Journal, 329, 121-136.
  • Van der Linden, G. C., Simonides, W S. and van Hardeveld, C., 1992, Thyroid hormone regulates Ca2+-ATPase mRNA levels of sarcoplasmic reticulum during neonatal development of fast skeletal muscle. Molecular and Cellular Endocrinology. 90, 125-131.
  • Van der Linden, G C., Simonides, W. S., Muller, A., van der Laarse. W. J. Verrneulen, J. L., Zuidwijk, M. J., Moorman, A. F. and van Hardeveld, C., 1996, Fiber specific regulation of Ca2+-ATPase isoform expression by thyroid hormone in rat skeletal muscle. American Journal of Physiology, 271, C1908-C1919.
  • Vidal, A J., Grujic, D., Zhang, C., Hagen, T., Boss, O., Ido, Y., Szczepanik, A., Wade, J., Mootha, V., Cortright., R., Muoio, D. M. and Lowell, B. B., 2000, Energy metabolism in uncoupling protein 3 gene knockout mice. Journal of Biological Chemistry, 275, 16258-16266
  • Wolosker, H., Engelender, S and de Meis, L., 1998. Reaction mechanism of the sarcoplasmic reticulum Ca2+-ATPase. Advances in Molecular and Cell Biology, 23A, 1-31.
  • Wu, K. and Lytton, J., 1993, Molecular cloning and quantification of sarcoplasmic reticulum Ca2+-ATPase isoforms in rat muscles. American Journal of Physiology, 264, C333-C341.
  • Wu, K., Lee, W. Wey, J., Bungard, D. and Lytton, J., 1995, Localization and quantification of endoplasmic reticulum Ca2+-ATPase isoforms transcripts. American Journal of Physiology, 269, C775-C784.
  • Wuytack, F, Papp, B., Verboomen, H., Raeymaekers, L., Dode, L., Bobe, R., Enouf, J, Bokkala, S., Authi, K. S and Casteels, R., 1994. A Sarco/endoplasmic reticulum Ca2+-ATPase 3-type Ca7+ pump is expressed in platelets, in lymphyoid cells, and in mast cells. Journal of Biological Chemistry, 269, 1410-1416.
  • Yu, X and Inesi, G. 1995. Variable stoichiometric efficiency of Ca2+ and Sr2+ transport by the sarcoplasmic reticulum ATPase. Journal of Biological Chemistry, 270, 4361-4367.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.