Halothane and Isoflurane Alter the Calcium sup 2+ Binding Properties of Calmodulin
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[1] D. M. Wheeler,et al. The Effect of Halo thane on the Free Intracellular Calcium Concentration of Isolated Rat Heart Cells , 1988 .
[2] J. Kuźnicki,et al. Characterization of tryptic fragments obtained from bovine brain protein modulator of cyclic nucleotide phosphodiesterase. , 1977, The Journal of biological chemistry.
[3] Wang Jh,et al. Bovine heart protein activator of cyclic nucleotide phosphodiesterase. , 1975 .
[4] J Haiech,et al. Effects of cations on affinity of calmodulin for calcium: ordered binding of calcium ions allows the specific activation of calmodulin-stimulated enzymes. , 1981, Biochemistry.
[5] P. Richman. Conformation-dependent acetylation and nitration of the protein activator of cyclic adenosine 3',5'-monophosphate phosphodiesterase. Selective nitration of tyrosine residue 138. , 1978, Biochemistry.
[6] N. P. Franks,et al. Do general anaesthetics act by competitive binding to specific receptors? , 1984, Nature.
[7] D. Storm,et al. Calcium-induced exposure of a hydrophobic surface on calmodulin. , 1980, Biochemistry.
[8] E. Heitmiller,et al. Halothane does not alter Ca2+ affinity of troponin C. , 1992, Anesthesiology.
[9] C. Klee,et al. Conformation-dependent nitration of the protein activator of cyclic adenosine 3',5'-monophosphate phosphodiesterase. , 1978, Biochemistry.
[10] H. Jarrett,et al. Trifluoperazine binding to porcine brain calmodulin and skeletal muscle troponin C. , 1990, Biochemistry.
[11] A. Wüthrich,et al. R 24571: a new powerful inhibitor of red blood cell Ca++-transport ATPase and of calmodulin-regulated functions. , 1981, Biochemical and biophysical research communications.
[12] A. Fabiato,et al. Calculator programs for computing the composition of the solutions containing multiple metals and ligands used for experiments in skinned muscle cells. , 1979, Journal de physiologie.
[13] H. Kamaya,et al. Smooth Muscle Contraction and Local Anesthetics: Calmodulin‐Dependent Myosin Light‐Chain Kinase , 1989, Anesthesia and analgesia.
[14] A. Means,et al. Physicochemical properties of rat testis Ca2+-dependent regulator protein of cyclic nucleotide phosphodiesterase. Relationship of Ca2+-binding, conformational changes, and phosphodiesterase activity. , 1977, The Journal of biological chemistry.
[15] C. Lynch,et al. Differential Depression of Myocardial Contractility by Halothane and Isoflurane In Vitro , 1986, Anesthesiology.
[16] M. J. Cormier,et al. Characterization of the plant nicotinamide adenine dinucleotide kinase activator protein and its identification as calmodulin. , 1980, Biochemistry.
[17] R. Sharma,et al. Inhibition of calmodulin-activated cyclic nucleotide phosphodiesterase by Triton X-100. , 1981, Biochemical and biophysical research communications.
[18] D. Newton,et al. Agonist and antagonist properties of calmodulin fragments. , 1984, The Journal of biological chemistry.
[19] K. Seamon. Calcium- and magnesium-dependent conformational states of calmodulin as determined by nuclear magnetic resonance. , 1980, Biochemistry.
[20] H. Jarrett,et al. Calmodulin is labeled at lysine 148 by a chemically reactive phenothiazine. , 1987, The Journal of biological chemistry.
[21] M. James,et al. Crystal structures of the helix-loop-helix calcium-binding proteins. , 1989, Annual review of biochemistry.
[22] K. C. Wong,et al. Calcium, Calmodulin, and Anesthesiology , 1989, Anesthesia and analgesia.