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Titlebook: Cell Calcium Metabolism; Physiology, Biochemi Gary Fiskum Book 1989 Plenum Press, New York 1989 ATP.Calcium.biochemistry.chemistry.clinical

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Phosphorylation of Dihydropyridine-Sensitive Calcium Channels from Cardiac and Skeletal Musclennels in skeletal muscle and some neuronal preparations (Schmid.., 1985; Chad and Eckert, 1986). The regulation of Ca channels by mechanisms implicating protein kinases other than cAMP-dependent protein kinase also has been reported (Di Virgilio.., 1986; Paupardin-Tritsch.., 1986; Rane and Dunlap, 1
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Molecular Structure of Canine Cardiac Phospholamban, the Regulatory Protein of Ca Pump ATPase of Sara pump ATPase of SR by augmenting the key elementary steps of ATPase (Tada.., 1979, 1980). Based on steady-state and presteady-state kinetic analysis of the Ca pump ATPase, phospholamban was proposed to function as a regulatory cofactor of the Ca pump ATPase type I, found in SR of cardiac and slow-c
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Two cases of benign lacrimal gland tumorsrange. An energy-dependent Ca. transporter in the plasma membrane is therefore important in maintaining the concentration gradient. Studies on the biochemical properties of a Ca. pump were first carried out with sarcoplasmic reticulum membrane that is enriched with a Ca. pump (for review, see Tada..
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J. Fukiyama,N. Nao-I,F. Maruiwa,A. Sawadatosolic concentration (about 0.2.M). The ATPase can therefore be considered as a fine regulator of cell Ca, as opposed to the other Ca-exporting system, the Na/Ca exchanger, which is particularly active in excitable tissues, and handles much larger amounts of Ca with lower affinity. A number of regu
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