Angiotensin-(3-4) counteracts the Angiotensin II inhibitory action on renal Ca2+-ATPase through a cAMP/PKA pathway


Autoria(s): Axelband, Flavia; Dias, Juliana; Miranda, Filipe; Ferrao, Fernanda M.; Reis, Rosana I.; Costa Neto, Claudio M.; Lara, Lucienne S.; Vieyra, Adalberto
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

26/09/2013

26/09/2013

20/08/2012

Resumo

We recently demonstrated that Angiotensin-(3-4) [Ang-(3-4)], an Ang II-derived dipeptide, overcomes inhibition of plasma membrane Ca2+-ATPase promoted by nanomolar concentrations of Ang II in basolateral membranes of renal proximal tubule cells, with involvement of a so far unknown AT(2)R-dependent and NO-independent mechanism. The present study investigates the signaling pathway triggered by Ang-(3-4) that is responsible for counteracting the inhibitory effect of Ang II, and attempts to elucidate the functional interaction of the dipeptide with Ang II at the level of AT(2)R. Stimulation by cholera toxin of G(s)alpha protein structurally linked to AT(2)R as revealed by their co-immunoprecipitation mimicked the effect of Ang-(3-4) on Ca2+-ATPase activity. Furthermore, addition of dibutyril-cAMP (db-cAMP) mimicked Ang-(3-4), whereas the specific PKA inhibitor, PKAi((5-24)) peptide, suppressed the counter-regulatory effect of Ang-(3-4) and the AT(2)R agonist, CGP42112A. Membrane-associated PKA activity was stimulated by Ang-(3-4) or CGP42112A to comparable levels as db-cAMP, and the Ang-(3-4) effect was abrogated by the AT(2)R antagonist PD123319, whereas the AT(1)R antagonist Losartan had no effect. Ang-(3-4) stimulated PKA-mediated phosphorylation of Ca2+-ATPase and activated PKA to comparable levels. Binding assays demonstrated that Ang-(3-4) could not displace H-3-Ang II from HEK 293T cells expressing AT(2)R, but 10(-10) mol/L Ang-(3-4) resulted in the appearance of a probable higher-affinity site (picomolar range) for Ang II. The results presented herein demonstrate that Ang-(3-4), acting as an allosteric enhancer, suppresses Ang II-mediated inhibition of Ca2+-ATPase through an AT(2)R/cAMP/PKA pathway, after inducing conformational changes in AT(2)R that results in generation of higher-affinity sites for Ang II. (C) 2012 Elsevier B.V. All rights reserved.

Brazilian National Research Council (CNPq)

Brazilian National Research Council (CNPq)

Carlos Chagas Filho Rio de Janeiro State Research Foundation (FAPERJ)

Carlos Chagas Filho Rio de Janeiro State Research Foundation (FAPERJ)

Sao Paulo Research Foundation (FAPESP)

Sao Paulo Research Foundation (FAPESP)

Brazilian Federal Agency for Support and Evaluation of Graduate Education (CAPES)

Brazilian Federal Agency for Support and Evaluation of Graduate Education (CAPES)

National Institutes of Science and Technology, Brazil

National Institutes of Science and Technology, Brazil

Identificador

REGULATORY PEPTIDES, AMSTERDAM, v. 177, n. 1-3, pp. 27-34, AUG 20, 2012

0167-0115

http://www.producao.usp.br/handle/BDPI/33754

10.1016/j.regpep.2012.04.004

http://dx.doi.org/10.1016/j.regpep.2012.04.004

Idioma(s)

eng

Publicador

ELSEVIER SCIENCE BV

AMSTERDAM

Relação

Regulatory Peptides

Direitos

restrictedAccess

Copyright ELSEVIER SCIENCE BV

Palavras-Chave #ANG-(3-4) #CAMP #CYCLIC AMP-DEPENDENT PROTEIN KINASE #PLASMA MEMBRANE CA2+-ATPASE #KIDNEY CELLS #PROXIMAL TUBULE BASOLATERAL MEMBRANES #HYPERTENSIVE-RATS #PROXIMAL TUBULE #CA2+ ATPASE #VAL-TYR #CALCIUM #KIDNEY #ENZYME #CELLS #DIPEPTIDE #RECEPTORS #ENDOCRINOLOGY & METABOLISM #PHYSIOLOGY
Tipo

article

original article

publishedVersion