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Hydrophobic properties of Tetrahymena calmodulin related to the phosphodiesterase activity

Data up to Jan 2025

Published1983
Citations14
References17

Total Citations Per Year

Abstract

References (17)

PROTEIN MEASUREMENT WITH THE FOLIN PHENOL REAGENT

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Conformational transition accompanying the binding of calcium(2+) ion to the protein activator of 3',5'-cyclic adenosine monophosphate phosphodiesterase

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Acidic phospholipids, unsaturated fatty acids, and limited proteolysis mimic the effect of calmodulin on the purified erythrocyte Ca2+ - ATPase.

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Selective binding of antipsychotics and other psychoactive agents to the calcium-dependent activator of cyclic nucleotide phosphodiesterase.

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Hydrophobic regions function in calmodulin-enzyme(s) interactions.

1980 • 363 citations

Divalent cation binding properties of bovine brain Ca2+-dependent regulator protein.

1977 • 285 citations

Calcium-dependent cyclic nucleotide phosphodiesterase from brain: Identification of phospholipids as calcium-independent activators

1976 • 141 citations

Calcium-dependent affinity chromatography of S-100 and calmodulin on calmodulin antagonist-coupled Sepharose.

1981 • 131 citations

Ca2+-dependent modulator proteins from Tetrahymena pyriformis, sea anemone, and scallop and guanylate cyclase activation.

1981 • 129 citations

Hydrophobic interaction of the Ca2+-calmodulin complex with calmodulin antagonists. Naphthalenesulfonamide derivatives.

1982 • 113 citations

Cyclic 3':5'-nucleotide phosphodiesterase. Ca2+ confers more helical conformation to the protein activator.

1976 • 109 citations

Platelet cyclic 3':5'-nucleotide phosphodiesterase released by thrombin and calcium ionophore.

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Two forms of Ca2+-dependent cyclic 3′:5′-nucleotide phosphodiesterase from human aorta and effect of free fatty acids

1978 • 48 citations

Effect of Ca2+ on the stability of the protein activator of cyclic nucleotide phosphodiesterase

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Hydrophobic properties of Tetrahymena calmodulin related to the phosphodiesterase activity (1983) – FEBS Letters | Metascience Observatory Explorer