RÉFÉRENCES
429
P.F. BRODE III, C.R. ERWIN, D.S. RAUCH, B.L. BARNETT, J.M. ARMPRIESTER,
E.S.F. WANG et D.N. RUBINGH (1996) Biochemistry 25, 3162–3169 [3.6.3]
J.N. BRØNSTED (1923) Rec. Trav. Chim. Pays-Bas 42, 718–728 [8.2]
A.J. BROWN (1892) J. Chem. Soc. (Trans.) 61, 369–385 [3.1.3]
A.J. BROWN (1902) J. Chem. Soc. (Trans.) 81, 373–388 [3.1.3]
G.C. BROWN, R. HAFNER et M.D. BRET (1990)
Eur. J. Biochem. 188, 321–325 [Problème 10.4]
J. BUC, J. RICARD, J.-C. MEUNIER (1977) Eur. J. Biochem. 80, 593–601 [11.3.5]
E. BUCHNER (1897) Ber. Dt. Chem. Ges. 30, 117–124 [3.1.3]
J.J. BURKE, G.G. HAMMES et T.B. LEWIS (1965) J. Chem. Phys. 42, 3520–3525 [11.3.5]
P. BUTZ, K.O. GREULICH et H. LUDWIG (1988) Biochemistry 27, 1556–1563 [8.8.3]
M.L. CÁRDENAS et A. CORNISH-BOWDEN (1989) Biochem. J. 257, 339–345 [10.9.2]
M.L. CÁRDENAS et A. CORNISH-BOWDEN (1993) Biochem. J. 292, 37–40 [12.5]
M.L. CÁRDENAS, E. RABAJILLE et H. NIEMEYER (1978)
Arch. Biochem. Biophys. 190, 142–148 [9.5]
M.L. CÁRDENAS, E. RABAJILLE et H. NIEMEYER (1984) Biochem. J. 222, 263–273 [9.5]
M.L. CÁRDENAS (1995) Glucokinase: its regulation and role in liver metabolism,
30 [Figure 3.9], 41–80 [9.5] R.G. Landes, Austin, Texas
T.R. CECH, D. HERSCHLAG, J.A. PICCIRILLI et A.M. PYLE (1992)
J. Biol. Chem. 267, 17479–17482 [3.1.1]
H. CEDAR et J.H. SCHWARTZ (1969) J. Biol. Chem. 244, 4122–4127 [7.4]
S. CHA (1968) J. Biol. Chem. 243, 820–825 [6.3.5]
B. CHANCE (1940) J. Franklin Inst. 229, 455–476 [11.3.3]
B. CHANCE (1951) Advances Enzymol. 12, 153–190 [11.3.3]
Y.-C. CHENG et W.H. PRUSOFF (1973) Biochem. Pharmacol. 22, 3099–3108 [5.4]
C. CHEVILLARD, M.L. CÁRDENAS et A. CORNISH-BOWDEN (1993)
Biochem. J. 289, 599–604 [5.5.2]
J.W. CHIN, T.A. CROPP, S. CHU, E. MEGGERS et P.G. SCHULTZ (2003)
Chem. & Biol. 10, 511–519 [5.9]
P.B. CHOCK et E.R. STADTMAN (1977)
Proc. Natl. Acad. Sci. U.S.A. 74, 2766–2770 [10.9.2]
P.B. CHOCK, S.G. RHEE et E.R. STADTMAN (1980)
Ann. Rev. Biochem. 49, 813–843 [10.9.2]
429
P.F. BRODE III, C.R. ERWIN, D.S. RAUCH, B.L. BARNETT, J.M. ARMPRIESTER,
E.S.F. WANG et D.N. RUBINGH (1996) Biochemistry 25, 3162–3169 [3.6.3]
J.N. BRØNSTED (1923) Rec. Trav. Chim. Pays-Bas 42, 718–728 [8.2]
A.J. BROWN (1892) J. Chem. Soc. (Trans.) 61, 369–385 [3.1.3]
A.J. BROWN (1902) J. Chem. Soc. (Trans.) 81, 373–388 [3.1.3]
G.C. BROWN, R. HAFNER et M.D. BRET (1990)
Eur. J. Biochem. 188, 321–325 [Problème 10.4]
J. BUC, J. RICARD, J.-C. MEUNIER (1977) Eur. J. Biochem. 80, 593–601 [11.3.5]
E. BUCHNER (1897) Ber. Dt. Chem. Ges. 30, 117–124 [3.1.3]
J.J. BURKE, G.G. HAMMES et T.B. LEWIS (1965) J. Chem. Phys. 42, 3520–3525 [11.3.5]
P. BUTZ, K.O. GREULICH et H. LUDWIG (1988) Biochemistry 27, 1556–1563 [8.8.3]
M.L. CÁRDENAS et A. CORNISH-BOWDEN (1989) Biochem. J. 257, 339–345 [10.9.2]
M.L. CÁRDENAS et A. CORNISH-BOWDEN (1993) Biochem. J. 292, 37–40 [12.5]
M.L. CÁRDENAS, E. RABAJILLE et H. NIEMEYER (1978)
Arch. Biochem. Biophys. 190, 142–148 [9.5]
M.L. CÁRDENAS, E. RABAJILLE et H. NIEMEYER (1984) Biochem. J. 222, 263–273 [9.5]
M.L. CÁRDENAS (1995) Glucokinase: its regulation and role in liver metabolism,
30 [Figure 3.9], 41–80 [9.5] R.G. Landes, Austin, Texas
T.R. CECH, D. HERSCHLAG, J.A. PICCIRILLI et A.M. PYLE (1992)
J. Biol. Chem. 267, 17479–17482 [3.1.1]
H. CEDAR et J.H. SCHWARTZ (1969) J. Biol. Chem. 244, 4122–4127 [7.4]
S. CHA (1968) J. Biol. Chem. 243, 820–825 [6.3.5]
B. CHANCE (1940) J. Franklin Inst. 229, 455–476 [11.3.3]
B. CHANCE (1951) Advances Enzymol. 12, 153–190 [11.3.3]
Y.-C. CHENG et W.H. PRUSOFF (1973) Biochem. Pharmacol. 22, 3099–3108 [5.4]
C. CHEVILLARD, M.L. CÁRDENAS et A. CORNISH-BOWDEN (1993)
Biochem. J. 289, 599–604 [5.5.2]
J.W. CHIN, T.A. CROPP, S. CHU, E. MEGGERS et P.G. SCHULTZ (2003)
Chem. & Biol. 10, 511–519 [5.9]
P.B. CHOCK et E.R. STADTMAN (1977)
Proc. Natl. Acad. Sci. U.S.A. 74, 2766–2770 [10.9.2]
P.B. CHOCK, S.G. RHEE et E.R. STADTMAN (1980)
Ann. Rev. Biochem. 49, 813–843 [10.9.2]
