Научная литература
booksshare.net -> Добавить материал -> Биология -> Эш Б.Б. -> "Трансформированная клетка" -> 197

Трансформированная клетка - Эш Б.Б.

Эш Б.Б., Билл П.Т., Камерон И.Л. Трансформированная клетка — К.: Наукова думка, 1985. — 384 c.
Скачать (прямая ссылка): transformirovannayakletka1985.djvu
Предыдущая << 1 .. 191 192 193 194 195 196 < 197 > 198 199 200 201 202 203 .. 211 >> Следующая

Quastel M. R., Kaplan J. G. (1970b). Early stimulation of potassium uptake in lymphocytes treated with PHA. Exp. Cell Res. 63, 230—233.
Racker E. (1972). Bioenergetics and the problem of tumor growth. Am. Sci. 60, 56.
Racker E. (1976). Why do tumor cells have a high aerobic glycolysis? J. Cell. Physiol. 89, 697—700.
Ramaiah A. (1974). Pasteur effect and phosphofructokinase. Curr. Top. Cell. Regul. 12, 298-345.
Rasmussen tfGoodman D. В. P. (1977), Relationships between calcium and cyclic nucleotides in cell activation. Physiol. Rev. 57, 422—509.
Rasmussen tf., Goodman D. В. P., Tenenhouse A. (1972). The role of cAMP and calcium in cell activation. CRC Crit. Rev. Biochem. 1, 95—122.
Rasmussen tf., Bordier P.} Kurokawa K.$ Nagata N*f Ogata E. (1974). Hormonal control of skeletal and mineral homeostasis. Am, J. Med. 56, 751—763.
Rasmussen tf., Goodman D. B. P., Friedman NAllen J. EKurokawa К (1976). Ionic control of metabolism. In «Handbook of Physiology: Endocrinology» (R. O. Greep and E. B. Astwood, eds.), Vol. 7, pp. 225—264. Am. Physiol, Soc. Washington, D. G.
357
Rtegle К, Мш9 Clancy R. L, (1975). Effect of norepinepherine on myocardial intra* cellular pH. Am. J. Physiol. 229, 344 -349.
Reynafarje B.f Lehninger A. L. (1974). The cause of superstochiometric Ca+H" uptake and H+ ejection in L1210 mouse ascites tumor mitochondria. Biochem. Biophys. Res. Commun. 57 , 286 —293.
Robbins J., Nicholson G. (1975). Surfaces of normal and transformed cells. In «Cancer: A Comprehensive Treatise» (F. F. Becker, ed.), Vol. 4, pp. 3—54. Plenum, New York.
Robertson *S'. P., Johnson J. D.t Potter /. Z). (1978). The effects of pH on calcium binding to the Ca++ Mg"*"*- and the Ca++-specific sites of rabbit skeletal TnC. Biophys. J. 21, 16a.
Robinson J. D.r Flashner M. S. (1979). The (Na+ -f K+) — activated ATPase. Enzymatic and transport properties. Biochim. Biophys. Acta 549, 145— 176-
Romano A. Я., Colby C. (1973). SV40 virus transformation of mouse 3T3 ceil does not specifically enhance sugar transport. Science 179, 1240 —1242.
Romero ВWhittham С. (1971). The control by internal Ca+“t_ of membrane permeability to Na+ and K+. J. Physiol. (London) 214, 481—501.
Roos A . (1975). Intracellular pH and distribution of weak acids acros cell membranes. J. Physiol. (London) 249, 1—25.
Roos A.% Boron W. F. (1981). Intracellular pH. Physiol. Rev. (in press).
Rose I. (1968). The state of magnesium in cells as estimated from the adenylate kinase equilibrium. Proc. Natl. Acad. Sci. U. S. A. 61, 1079—1086.
Rosenfeld О., Lasnitzkt A. (1928). Uber den Stoffwechsel stationarer und wachsonder Gewebe. Biochem. Z. 196, 340—425.
Rosing J., Slater E. (1972). The value of G° for the hydrolysis of ATP. Biochim. Biophys. Acta 267, 275—290.
Rothschild Lord (1958). Acid production after fertilization of sea urchin eggs. J. Exp. Biol. 35, 843-849.
Rottenbere H. (1979) The measurement of membrane potential and pFI gradient in cells, organelles and vesicles. In «Methods in Enzymologv, Vol. 55: Biomembranes, Part F» (S. Fleischer and L. Packer, eds.), pp. 547—569. Academic Press, New York.
Rovetto M-t Lamberton WNeely J. (1975). Mechanisms of glycolytic inhibition in ischemic rat hearts. Circ. Res. 37, 742—751.
Rubin С. S., Rosen О. Л/. (1975). Protein phosphorylation. Annu. Rev. Biochom. 44, 831-887.
Rubin H. (1971). pH and population density in the regulation of animal cell multiplication. J. Cell Biol. 51, 686—702.
Rubin tf. (1975). Central role for magnesium in coordinate control of metabolism in animal cells. Proc. Natl. Acaa. Sci. U. S. A. 72, 3551—3555.
Rubin //., Fodge D. (1974). Interrelationships of glycolysis, sugar transport and the initiation of DNA synthesis in chick embryo cells. In «Control of Proliferation in Animal Cells» (B. Clarkson and R. Baserga, eds.), pp. 801—816. Cold Spring Harbor Lab., Cold Spring Harbor, New York.
Rubin //., Koide T. (1976). Mutual potentiation by magnesium and calcium of growth in animal cells. Proc. Natl. Acad. Sci. U. S, A. 72, 3551—3555.
Runnstrom J. (1933). Zur Kenntnis der Stoffwechselvorgange bei der Entwicklung-serrcguny des Seeigeleies. Biochem. Z. 258, 257—279.
Russell J. M.f Boron W. F. (1976). Role of chloride transport in regulation of intracellular pH. Nature (London) 264, 73—74.
Russell J. T.f MaUonosi A . N. (1978). The influence of pH on the absorbtion spectrum of Arsenazo III. Biochim. Biophys. Acta 544, 418—429.
Sachs II. G.f Stambrook P. Ebert /. D. (1974). Changes in membrane potential during the cell cycle. Exp. Cell Res. 83, 362—366.
Sanui H. (1970). pH dependence of the effect of ATP and EDTA on Na+ and Mg++ binding by cellular membrane fragments. J. Cell. Pbysiol. 75, 361—368.
Sanui //., Pace N (1972). Sodium and potassium binding by human erythrocyte ghosts. J. Cell Comp. Physiol. 59, 251—257.
358
Sanui Я., Rubin H, (1979J* Measurement of total, intracellular and surface bound cations in animal cells grown in tissue culture. J. Cell. Physiol, 100, 215—226.
Предыдущая << 1 .. 191 192 193 194 195 196 < 197 > 198 199 200 201 202 203 .. 211 >> Следующая

Реклама

c1c0fc952cf0704ad12d6af2ad3bf47e03017fed

Есть, чем поделиться? Отправьте
материал
нам
Авторские права © 2009 BooksShare.
Все права защищены.
Rambler's Top100

c1c0fc952cf0704ad12d6af2ad3bf47e03017fed