Characterisation of cAMP-dependent protein kinase isoforms in the brain of the crab Chasmagnathus

In the crab Chasmagnathus learning model, systemic administration of cAMP analogues that are specific activators or inhibitors of cAMP-dependent protein kinase (PKA) proved to respectively facilitate or impair long-term retention. The aims of the present work were to analyse PKA activity distributio...

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Autor principal: Locatelli, F.
Otros Autores: LaFourcade, C., Maldonado, H., Romano, A.
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: 2001
Acceso en línea:Registro en Scopus
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100 1 |a Locatelli, F. 
245 1 0 |a Characterisation of cAMP-dependent protein kinase isoforms in the brain of the crab Chasmagnathus 
260 |c 2001 
506 |2 openaire  |e Política editorial 
504 |a Altfelder, K., Müller, U., Cyclic nucleotide-dependent protein kinases in the neural tissues of the honeybee Apis mellifera (1991) Insect Biochem, 21, pp. 487-494 
504 |a Bernabeu, R., Bevilaqua, L., Ardenghi, P., Bromberg, E., Schmitz, P., Bianchin, M., Izquierdo, I., Medina, J., Involvement of hippocampal cAMP/cAMP-dependent protein kinase signaling pathways in a late memory consolidation phase of aversively motivated learning in rats (1997) Proc Natl Acad Sci USA, 94, pp. 7041-7046 
504 |a Blaustein, D.N., Derby, C.D., Simmons, R.B., Beal, A.C., Structure of the brain and medulla terminalis of the spiny lobster Panulirus argus and the crayfish Procambarus clarki, with an emphasis on olfactory centers (1988) J Custacean Biol, 8, pp. 493-519 
504 |a Brandon, E.P., Zhuo, M., Huang, Y.Y., Qi, M., Gerhold, K.A., Burton, K.A., Kandel, E.R., Idzerda, R.L., Hippocampal long-term depression and depotentiation are defective in mice carrying a targeted disruption of the gene encoding the RI beta subunit of cAMP-dependent protein kinase (1995) Proc Natl Acad Sci USA, 92, pp. 8851-8855 
504 |a Cadd, G.G., Uhler, M.D., McKnight, G.S., Holoenzymes of cAMP-dependent protein kinase containing the neural form of type I regulatory subunit have an increased sensitivity to cyclic nucleotides (1990) J Biol Chem, 265, pp. 19502-19506 
504 |a Castellucci, V.F., Nairn, A., Greengard, P., Schwartz, J.H., Kandel, E.R., Inhibitor of adenosine 3′:5′-monophosphate-dependent protein kinase blocks presynaptic facilitation in Aplysia (1982) J Neurosci, 12, pp. 1673-1681 
504 |a Corbin, J.D., Keely, S.L., Park, C.R., The distribution and dissociation of cyclic adenosine 3′:5′-monophosphate-dependent protein kinases in adipose, cardiac, and other tissues (1975) J Biol Chem, 250, pp. 218-225 
504 |a Cytrinska, M., Wojda, I., Frajnt, M., Jakubowicz, T., PKA from Saccharomyces cerevisiae can be activated by cyclic AMP and cyclic GMP (1999) Can J Microbiol, 45, pp. 31-37 
504 |a Davis, R.L., Physiology and biochemistry of Drosophila learning mutants (1996) Physiol Rev, 76, pp. 299-317 
504 |a Faux, M.C., Scott, J.D., Molecular glue: Kinase anchoring and scaffold proteins (1996) Cell, 85, pp. 9-12 
504 |a Foster, J.L., Guttman, J.J., Hall, L.M., Rosen, O.M., Drosophila cAMP-dependent protein kinase (1984) J Biol Chem, 259, pp. 13049-13055 
504 |a Francis, S.H., Corbin, J.D., Structure and function of cyclic nucleotide-dependent protein kinases (1994) Annu Rev Physiol, 56, pp. 237-272 
504 |a Frank, D.A., Greenberg, M.E., CREB: A mediator of long-term memory from mollusk to mammals (1994) Cell, 79, pp. 5-8 
504 |a Freudenthal, R., Romano, A., Participation of NF-κB transcription factors in long-term memory in the crab Chasmagnathus (2000) Brain Res, 855, pp. 274-281 
504 |a Freudenthal, R., Locatelli, F., Hermitte, G., Maldonado, H., Delorenzi, A., Lafourcade, C., Romano, A., Kappa-B like DNA-binding activity is enhanced after a spaced training that induces long-term memory in the crab Chasmagnathus (1998) Neurosci Lett, 242, pp. 143-146 
504 |a Frey, U., Huang, Y.Y., Kandel, E.R., Effects of cAMP simulate a late stage of LTP in hippocampal CA1 neurons (1993) Science, 260, pp. 1661-1664 
504 |a Garrison, J.C., Study of protein phosphorylation in intact cells (1993), pp. 8-9. , Grahame Hardie D (ed) Protein phosphorylation, a practical approach. Oxford University Press, New York; Goodwin, S.F., Del Vecchio, M., Velinzon, K., Hogel, C., Russell, S.R., Tully, T., Kaiser, K., Defective learning in mutants of the Drosophila gene for a regulatory subunit of cAMP-dependent protein kinase (1997) J Neurosci, 17, pp. 8817-8827 
504 |a Gray, P.C., Scott, J.D., Catterall, W.A., Regulation of ion channels by cAMP-dependent protein kinase and A-anchoring proteins (1998) Curr Opin Neurobiol, 8, pp. 330-334 
504 |a Han, J.D., Baker, N.E., Rubin, C.S., Molecular characterization of a novel A kinase anchor protein from Drosophila melanogaster (1997) J Biol Chem, 272, pp. 26611-26619 
504 |a Hanström, B., The brain, the sense organs and the incretory organs of the head in the Crustacea Malacostraca (1947) Acta Univ Lund Adv 2 NF, 43, pp. 1-44 
504 |a Huang, Y.Y., Kandel, E.R., Varshavsky, L., Brandon, E.P., Qi, M., Idzerda, R.L., McKnight, G.S., Bourtchouladze, R., A genetic test of the effects of mutations in PKA on mossy fiber LTP and its relation to spatial and contextual learning (1995) Cell, 83, pp. 1211-1222 
504 |a Huang, L.J., Durick, K., Wainer, J.A., Chun, J., Taylor, S.S., Identification of a novel dual specificity protein kinase A anchoring protein, D-AKAP1 (1997) J Biol Chem, 267, pp. 13376-13382 
504 |a Inoue, H., Yoshioka, T., Purification of a regulatory subunit of type II cAPM-dependent protein kinase from Drosophila heads (1997) Biochem Biophys Res Commun, 235, pp. 223-226 
504 |a Ishikawa, E., Ishikawa, S., Davis, J.W., Sutherland, E.W., Determination of guanosine 3′,5′-monophosphate in tissues and of guanyl cyclase in rat intestine (1969) J Biol Chem, 244, pp. 6371-6376 
504 |a Kamemoto, F.I., Neuroendocrinology of osmoregulation in crabs (1991) Zool Sci, 8, pp. 827-833 
504 |a Maldonado, H., Romano, A., Tomsic, D., Long-term habituation (LTH) in the crab Chasmagnathus: A model for behavioural and mechanistic studies of memory (1997) Braz J Med Biol Res, 30, pp. 813-826 
504 |a Mane, S.D., Darville, R.G., Sauer, J.R., Essenberg, R.C., Cyclic AMP-dependent protein kinase from salivary glands of the tick, Amblyomma americanum (1985) Insect Biochem, 15, pp. 777-787 
504 |a Menzel, R., Durst, C., Erber, J., Eichmüller, S., Hammer, M., Hildebrandt, H., Mauelshagen, J., Scheidler, A., The mushroom bodies in honeybee: From molecules to behaviour (1994), pp. 81-102. , Schildberger K, Elsner N (eds) Neural basis of behavioural adaptations. Fischer, Stuttgart; Müller, U., Neuronal cAMP-dependent protein kinase type II is concentrated in mushroom bodies of Drosophila melanogaster and the honeybee Apis mellifera (1997) J Neurobiol, 33, pp. 33-44 
504 |a Müller, U., Spatz, H.C., Ca 2+ -dependent proteolytic modification of the cAMP-dependent protein kinase in Drosophila wild type and dounce memory mutants (1989) J Neurogenet, 6, pp. 95-114 
504 |a Romano, A., Delorenzi, A., Pedreira, M.E., Tomsic, D., Maldonado, H., Acute administration of a cAMP analogue and a phosphodiesterase inhibitor improve long-term habituation of the crab Chasmagnathus (1996) Behav Brain Res, 75, pp. 119-125 
504 |a Romano, A., Locatelli, F., Pedreira, M.E., Delorenzi, A., Maldonado, H., Effect of activation and inhibition of cAMP-dependent Proteinkinase on long-term habituation of the crab Chasmagnathus (1996) Brain Res, 735, pp. 131-140 
504 |a Rosenmund, C., Carr, D.W., Bergeson, S.E., Nilaver, G., Scott, J.D., Westbrook, G.L., Anchoring of protein kinase A is required for modulation of AMPA/kainate receptors on hippocampal neurons (1994) Nature, 368, pp. 853-856 
504 |a Sandeman, D.C., Scholtz, G., Sandeman, R.E., Brain evolution in decapod crustacea (1993) J Exp Zool, 265, pp. 112-133 
504 |a Schumacher, H., Müller, D., Mukhopadhyay, A.K., Stimulation of testosterone production by atrial natriuretic peptide in isolated mouse Leydig cells results from a promiscuous activation of cyclic AMP-dependent protein kinase by cyclic GMP (1992) Mol Cell Endocrinol, 90, pp. 47-52 
504 |a Shirakawa, F., Yamashita, U., Chedid, M., Mizel, S.B., Cyclic AMP-an intracellular second messenger for interleukin 1 (1988) Proc Natl Acad Sci USA, 85, pp. 8201-8205 
504 |a Shirakawa, F., Chedid, M., Suttles, J., Pollok, B.A., Mizel, S.B., Interleukin 1 and cyclic AMP induce kappa immunoglobulin light-chain expression via activation of an NF-kappa B-like DNA-binding protein (1989) Mol Cell Biol, 9, pp. 959-964 
504 |a Skålhegg, B.S., Landmark, B.F., Doøskeland, S.O., Hansson, V., Lea, T., Jahnsen, T., Cyclic AMP-dependent protein kinase type I mediates the inhibitory effects of 3′,5′-cyclic adenosine monophosphate on cell replication in human T lymphocytes (1992) J Biol Chem, 267, pp. 15707-15714 
504 |a Tomsic, D., Massoni, V., Maldonado, H., Habituation to a danger stimulus in two semiterrestrial crabs: Ontogenic, ecological and opioid modulation correlates (1993) J Comp Physiol A, 173, pp. 621-633 
504 |a Tomsic, D., Romano, A., Maldonado, H., Behavioural and mechanistic bases of long-term habituation in the crab Chasmagnathus (1999), pp. 60-66. , Ehrlich Y (ed) Molecular and cellular mechanisms of neuronal plasticity: basic and clinical applications. Advances in experimental medicine and biology series, Plenum, New York; Vardanis, A., A unique cyclic nucleotide-dependent protein kinase (1980) J Biol Chem, 255, pp. 7238-7243 
504 |a Zhong, H., Voll, R.E., Ghosh, S., Phosphorylation of NF-κB p65 by PKA stimulates transcriptional activity by promoting a novel bivalent interaction with the coactivator CBP/p300 (1998) Mol Cell, 1, pp. 661-671 
520 3 |a In the crab Chasmagnathus learning model, systemic administration of cAMP analogues that are specific activators or inhibitors of cAMP-dependent protein kinase (PKA) proved to respectively facilitate or impair long-term retention. The aims of the present work were to analyse PKA activity distribution in the crab brain and to characterise PKA isoforms. The neuropils from the eyestalk showed higher levels of induced PKA activity when compared with other neuropils of the central nervous system. Two PKA isoforms, homologous to mammalian PKA I and PKA II, were detected from central brain protein extracts using DEAE chromatography. Only PKA II was found in lateral protocerebrum extracts, suggesting a role of this isoform in the processing of visual inputs and in the integration of this information with other sensory inputs. PKA I was observed to be ten-fold more sensitive to cAMP than PKA II. cGMP induced a high activation of both PKA isoforms, similar to that obtained with cAMP. PKA I showed a two-fold greater sensitivity for cGMP than PKA II. An autophosphorylation assay was performed and a protein of 55 kDa, corresponding to phosphorylated R II regulatory subunit, was detected. The presence of a PKA I isoform with high sensitivity for cAMP in the central brain suggests a role of this subtype in long-term memory.  |l eng 
593 |a Laboratorio de Neurobiología de la Memoria, Departamento de Ciencias Biológicas, Ciudad Universitaria, Pab II (1428) Buenos Aires, Argentina 
690 1 0 |a CAMP AND CGMP 
690 1 0 |a CRAB BRAIN 
690 1 0 |a MEMORY 
690 1 0 |a PKA AUTOPHOSPHORYLATION 
690 1 0 |a PKA ISOFORMS 
700 1 |a LaFourcade, C. 
700 1 |a Maldonado, H. 
700 1 |a Romano, A. 
773 0 |d 2001  |g v. 171  |h pp. 33-40  |k n. 1  |p J. Comp. Physiol. B Biochem. Syst. Environ. Physiol.  |x 01741578  |w (AR-BaUEN)CENRE-234  |t Journal of Comparative Physiology - B Biochemical, Systemic, and Environmental Physiology 
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