Na+,K+-ATPase Activity in the Posterior Gills of the Blue Crab, Callinectes ornatus (Decapoda,Brachyura): Modulation of ATP Hydrolysis by the Biogenic Amines Spermidine and Spermine |
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Authors: | Daniela P. Garçon Malson N. Lucena Juliana L. França John C. McNamara Carlos F. L. Fontes Francisco A. Leone |
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Affiliation: | 1.Departamento de Química, Faculdade de Filosofia,Ciências e Letras da Universidade de S?o Paulo,Ribeir?o Preto,Brazil;2.Departamento de Bioquímica e Imunologia,Faculdade de Medicina de Ribeir?o Preto da Universidade de S?o Paulo,Ribeir?o Preto,Brazil;3.Departamento de Biologia, Faculdade de Filosofia,Ciências e Letras da Universidade de S?o Paulo,Ribeir?o Preto,Brazil;4.Instituto de Bioquímica Médica,Universidade Federal do Rio de Janeiro,Rio de Janeiro,Brazil |
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Abstract: | We investigated the effect of the exogenous polyamines spermine, spermidine and putrescine on modulation by ATP, K+, Na+, NH4 + and Mg2+ and on inhibition by ouabain of posterior gill microsomal Na+,K+-ATPase activity in the blue crab, Callinectes ornatus, acclimated to a dilute medium (21‰ salinity). This is the first kinetic demonstration of competition between spermine and spermidine for the cation sites of a crustacean Na+,K+-ATPase. Polyamine inhibition is enhanced at low cation concentrations: spermidine almost completely inhibited total ATPase activity, while spermine inhibition attained 58%; putrescine had a negligible effect on Na+,K+-ATPase activity. Spermine and spermidine affected both V and K for ATP hydrolysis but did not affect ouabain-insensitive ATPase activity. ATP hydrolysis in the absence of spermine and spermidine obeyed Michaelis–Menten behavior, in contrast to the cooperative kinetics seen for both polyamines. Modulation of V and K by K+, Na+, NH4 + and Mg2+ varied considerably in the presence of spermine and spermidine. These findings suggest that polyamine inhibition of Na+,K+-ATPase activity may be of physiological relevance to crustaceans that occupy habitats of variable salinity. |
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