Kinetic studies with myo-inositol monophosphatase from bovine brain.
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[1] A. Allison,et al. Requirement of Thymus-dependent Lymphocytes for Potentiation by Adjuvants of Antibody Formation , 1971, Nature.
[2] T. Yonetani,et al. STUDIES ON LIVER ALCOHOL HYDROGENASE COMPLEXES. 3. MULTIPLE INHIBITION KINETICS IN THE PRESENCE OF TWO COMPETITIVE INHIBITORS. , 1964, Archives of biochemistry and biophysics.
[3] W. O'Sullivan,et al. Stability constants for biologically important metal-ligand complexes. , 1979, Methods in enzymology.
[4] S. Halford. Escherichia coli alkaline phosphatase. An analysis of transient kinetics. , 1971, The Biochemical journal.
[5] P. Majerus,et al. Inositol polyphosphate 1-phosphatase from calf brain. Purification and inhibition by Li+, Ca2+, and Mn2+. , 1987, The Journal of biological chemistry.
[6] M. M. Bradford. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. , 1976, Analytical biochemistry.
[7] E. L. King,et al. A Schematic Method of Deriving the Rate Laws for Enzyme-Catalyzed Reactions , 1956 .
[8] H. Fromm,et al. Activation of brain hexokinase by magnesium ions and by magnesium ion--adenosine triphosphate complex. , 1972, The Biochemical journal.
[9] D. Koshland,et al. Models for cooperative effects in proteins containing subunits. Effects of two interacting ligands. , 1967, The Journal of biological chemistry.
[10] T. Noll,et al. Enzymic determination of inorganic phosphates, organic phosphates and phosphate-liberating enzymes by use of nucleoside phosphorylase-xanthine oxidase (dehydrogenase)-coupled reactions. , 1985, The Biochemical journal.
[11] J. Meek,et al. Rapid purification of inositol monophosphate phosphatase from beef brain. , 1988, Biochemical and biophysical research communications.
[12] C. Ragan,et al. The purification and properties of myo-inositol monophosphatase from bovine brain. , 1988, The Biochemical journal.
[13] J. Morrison,et al. Buffers of constant ionic strength for studying pH-dependent processes. , 1982, Methods in enzymology.
[14] P. Majerus,et al. Inositol phosphates: synthesis and degradation. , 1988, The Journal of biological chemistry.
[15] W. Sherman,et al. The effects of lithium ion and other agents on the activity of myo-inositol-1-phosphatase from bovine brain. , 1980, The Journal of biological chemistry.
[16] M. Stewart,et al. Reduced brain inositol in lithium-treated rats. , 1971, Nature: New biology.
[17] R G Duggleby,et al. A nonlinear regression program for small computers. , 1981, Analytical biochemistry.
[18] R. Belmaker,et al. Lithium inhibits adrenergic and cholinergic increases in GTP binding in rat cortex , 1988, Nature.
[19] A. Lorenzo,et al. Myo-inositol transport in the central nervous system. , 1975, The American journal of physiology.
[20] R. Schowen,et al. [29] Solvent isotope effects on enzyme systems , 1982 .
[21] A. Vescia,et al. Evidence for different active groups for hydrolytic and transphosphorylating activities of acid phosphatase. , 1958, Biochimica et biophysica acta.
[22] S. McClue,et al. Subacute and Chronic In Vivo Lithium Treatment Inhibits Agonist‐ and Sodium Fluoride‐Stimulated Inositol Phosphate Production in Rat Cortex , 1989, Journal of neurochemistry.
[23] W. Cleland,et al. The statistical analysis of enzyme kinetic data. , 1967, Advances in enzymology and related areas of molecular biology.
[24] M. Okada,et al. Purification and properties of myo-inositol-1-phosphatase from rat brain. , 1985, Journal of biochemistry.
[25] S. Shears,et al. Metabolism of the inositol phosphates produced upon receptor activation. , 1989, The Biochemical journal.
[26] P. Leeson,et al. Synthesis of 2- and 6-deoxyinositol 1-phosphate and the role of the adjacent hydroxy groups in the mechanism of inositol monophosphatase , 1989 .
[27] W. Cleland. [20] Substrate inhibition , 1979 .
[28] A. Fersht. Enzyme structure and mechanism , 1977 .
[29] W. Sherman,et al. Increased brain myo-inositol 1-phosphate in lithium-treated rats. , 1976, Biochemical and biophysical research communications.
[30] S. Nahorski,et al. Lithium inhibits muscarinic-receptor-stimulated inositol tetrakisphosphate accumulation in rat cerebral cortex. , 1987, The Biochemical journal.
[31] J. Sowadski,et al. Refined structure of alkaline phosphatase from Escherichia coli at 2.8 A resolution. , 1985, Journal of molecular biology.
[32] M. Berridge,et al. Lithium amplifies agonist-dependent phosphatidylinositol responses in brain and salivary glands. , 1982, The Biochemical journal.
[33] Michael J. Berridge,et al. Inositol phosphates and cell signalling , 1989, Nature.
[34] C. Ragan,et al. Modification of myo-inositol monophosphatase by the arginine-specific reagent phenylglyoxal. , 1989, The Biochemical journal.
[35] F. Eisenberg. D-myoinositol 1-phosphate as product of cyclization of glucose 6-phosphate and substrate for a specific phosphatase in rat testis. , 1967, The Journal of biological chemistry.
[36] P. Attwood,et al. Purification and properties of myo-inositol-1-phosphatase from bovine brain. , 1988, The Biochemical journal.
[37] W. Sherman,et al. L-myo-Inositol-1-phosphate synthase from bovine testis: purification to homogeneity and partial characterization. , 1980, Biochemistry.