Immunological crossreactivity between the retinal Na+-Ca2+,K+ and the cardiac Na+-Ca2+ exchanger proteins
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Abstract
We have used a series of monoclonal antibodies (mAbs) to determine the degree of microscopic structural homology between the retinal Na+-Ca2+, K+ and the cardiac Na+-Ca2+ exchange proteins. Sets of mAbs were raised separately to partially purified preparations of either the retinal or the recombinant myocardial exchanger. Each panel of mAbs was then screened for crossreactivity with the respective heterologous exchanger using enzyme-linked immunoassay and immunoblotting techniques. Out of 43 anti-retinal exchanger mAbs, we found 3 detecting the cardiac exchanger on immunoblots, while 4 out of 36 anti-cardiac exchanger mAbs reacted with the retinal exchanger. The strength of the crossreactions was generally weak and suggested that only low affinity epitopes were available on the heterologous proteins. For two crossreacting anti-retinal mAbs the apparent binding affinities to the cardiac exchanger were lower by more than two orders of magnitude. The overall low degree of epitope sharing among the two sets of mAbs confirms that in spite of their obvious functional and topological similarities, microscopic structural homologies between the two proteins are scarce.
Key words
Na+-Ca2+ exchanger Na+-Ca2+,K+ exchanger Monoclonal antibodies Epitope sharing Immunological crossreactivity Structural homologyPreview
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References
- Achilles, A., Friedel, U., Haase, W., Reiländer, H., Cook, N.J. 1991. Biochemical and molecular characterization of the sodium-calcium exchanger from bovine rod photoreceptors. Ann. NY Acad. Sci. 639:234–244Google Scholar
- Barzilai, A., Spanier, R., Rahamimoff, H. 1987. Immunological identification of the synaptic plasma membrane Na+-Ca2+ exchanger. J. Biol. Chem. 262:10315–10320Google Scholar
- Blaustein, M. 1988. Calcium and synaptic function. In: Calcium in Drug Action. P.F. Baker, editor. Hdb. Exp. Pharmacol. 83:275–394. Springer-Verlag, BerlinGoogle Scholar
- Cervetto, L., Lagnado, L., Perry, R.J., Robinson, D.W., McNaughton, P.A. 1989. Extrusion of calcium from rod outer segments is driven by both sodium and potassium gradients. Nature 337:740–743Google Scholar
- Cheon, J., Reeves, J.P. 1988. Site density of the sodium-calcium exchange carrier in reconstituted vesicles from bovine cardiac sarcolemma. J. Biol. Chem. 206:2309–2315Google Scholar
- Cook, N.J., Kaupp, U.B. 1988. Solubilization, purification, and reconstitution of the sodium-calcium exchanger from bovine retinal rod outer segments. J. Biol. Chem. 263:11382–11388Google Scholar
- Dahan, D., Spanier, R., Rahamimoff, H. 1991. The modulation of rat brain Na+-Ca2+ exchange by K+. J. Biol. Chem. 266:2067–2075Google Scholar
- Diano, M., LeBivic, A., Hirn, M. 1987. A method for the production of highly specific polyclonal antibodies. Anal. Biochem. 166:224–229Google Scholar
- DiPolo, R., Beaugé, L. 1990. Calcium transport in excitable cells. In: Intracellular Calcium Regulation. F. Bronner, editor. pp. 381–413. Wiley-Liss, New YorkGoogle Scholar
- Durkin, J.T., Ahrens, D.C., Pan, Y.C.E., Reeves, J.P. 1991. Purification and amino-terminal sequence of the bovine cardiac sodium calcium exchanger—evidence for the presence of a signal sequence. Arch. Biochem. Biophys. 290:369–375Google Scholar
- Haase, W., Friese, W., Gordon, R.D., Müller, H., Cook, N.J. 1990. Immunological characterization and localization of the Na+/Ca2+-exchanger in bovine retina. J. Neurosci. 10:1486–1494Google Scholar
- Harlow, E., Lane, D. 1988. Antibodies. A laboratory manual. Cold Spring Harbor Laboratory, Cold Spring Harbor, NYGoogle Scholar
- Kuwayama, H., Kanazawa, T. 1982. Purification of cardiac sarcolemmal vesicles: High sodium pump content and ATP-dependent, calmodulin-activated calcium uptake. J. Biochem. (Tokyo) 91:1419–1426Google Scholar
- Leser, G.P., Nicoll, D.A., Applebury, M.L. 1991. Distinctive properties of the purified Na-Ca exchanger from rod outer segments. Ann. NY Acad. Sci. 639:222–233Google Scholar
- Li, Z., Smith, C.D., Smolley, J.R., Bridge, J.H.B., Frank, J.S., Philipson, K.D. 1992. Expression of the cardiac Na+-Ca2+ exchanger in insect cells using a baculovirus vector. J. Biol. Chem. 267:7828–7833Google Scholar
- Michaelis, M.L., Nunley, E.W., Jayawickreme, C., Hurlbert, M., Schueler, S., Guilly, C. 1992. Purification of a synaptic membrane Na+/Ca2+ antiporter and immunoextraction with antibodies to a 36-kDa protein. J. Neurochem. 58:147–157Google Scholar
- Nicoll, D.A., Barrios, B.R., Philipson, K.D., 1991. Na+-Ca2+ exchangers from rod outer segments and cardiac sarcolemma: comparison of properties. Am. J. Physiol. 260:C1212-C1216Google Scholar
- Nicoll, D.A., Longoni, S., Philipson, K.D. 1990. Molecular cloning and functional expression of the cardiac sarcolemmal Na+-Ca2+ exchanger. Science 250:562–565Google Scholar
- Nicoll, D.A., Philipson, K.D. 1991. Molecular studies of the cardiac sarcolemmal sodium-calcium exchanger. Ann. NY Acad. Sci. 639:181–188Google Scholar
- Peterson, G.L. 1977. A simplification of the protein assay method of Lowry et al. which is more generally applicable. Anal. Biochem. 83:346–356Google Scholar
- Philipson, K.D., Longoni, S., Ward, R. 1988. Purification of the cardiac Na+-Ca2+ exchange protein. Biochim. Biophys. Acta 945:298–306Google Scholar
- Philipson, K.D., McDonough, A.A., Frank, J.S., Ward, R. 1987. Enrichment of Na+-Ca2+ exchange in cardiac sarcolemmal vesicles by alkaline extraction. Biochim. Biophys. Acta 899:59–66Google Scholar
- Philipson, K.D., Ward, R. 1987. Modulation of Na+-Ca2+ exchange and Ca2+ permeability in cardiac sarcolemmal vesicles by doxylstearic acids. Biochim. Biophys. Acta 897:152–158Google Scholar
- Porzig, H. 1991. Characterization of monoclonal antibodies crossreacting with myocardial and retinal sodium-calcium exchange proteins. Ann. NY Acad. Sci. 639:202–209Google Scholar
- Porzig, H., Li, Z., Nicoll, D.A., Philipson, D.K. 1993. Mapping of the cardiac sodium-calcium exchanger with monoclonal antibodies. Am. J. Physiol. (in press)Google Scholar
- Rahamimoff, H., Dahan, D., Furman, I., Spanier, R., Tessari, M. 1991. Molecular and mechanistic heterogeneity of the Na+-Ca2+ exchanger. Ann. NY Acad. Sci. 639:210–221Google Scholar
- Reeves, J.P. 1990. Sodium-calcium exchange. In: Intracellular Calcium Regulation. F. Bronner, editor. pp 305–347. Wiley-Liss, New YorkGoogle Scholar
- Reeves, J.P. 1992. Molecular aspects of sodium-calcium exchange. Arch. Biochem. Biophys. 292:329–334Google Scholar
- Reeves, J.P., Hale, C.C. 1984. The stoichiometry of the cardiac sodium-calcium exchange system. J. Biol. Chem. 259:7733–7739PubMedGoogle Scholar
- Reid, D.M., Friedel, U., Molday, R.S., Cook, N.J. 1990. Identification of the sodium-calcium exchanger as the major ricinbinding glycoprotein of bovine rod outer segments and its localisation to the plasma membrane. Biochemistry 29:1601–1606Google Scholar
- Reiländer, H., Achilles, A., Friedel, U., Maul, G., Lottspeich, F., Cook, N.J. 1992. Primary structure and functional expression of the Na/Ca,K-exchanger from bovine rod photoreceptors. EMBO J. 11:1689–1695Google Scholar
- Schnetkamp, P.P.M., Basu, D.K., Szerencsei, R.T. 1989. Na+-Ca2+ exchange in bovine rod outer segments requires and transports K+. Am. J. Physiol. 257:C153-C157Google Scholar
- Schnetkamp, P.M., Daemen, F.J.M. 1982. Isolation and characterization of osmotically sealed bovine rod outer segments. Methods Enzymol. 81:110–116Google Scholar
- Slaughter, R.S., Sutko, J.L., Reeves, J.P. 1983. Equilibrium calcium-calcium exchange in cardiac sarcolemmal vesicles. J. Biol. Chem. 258:3183–3190Google Scholar
- Tainer, J.A., Getzoff, E.D., Paterson, Y., Olson, A.J., Lerner, R.A. 1985. The atomic mobility component of protein antigenicity. Annu. Rev. Immunol. 3:501–535Google Scholar
- Towbin, H., Staehelin, T., Gordon, J. 1979. Electrophoretic transfer of proteins from polyacrylamide gels to nitrocellulose: Procedure and some applications. Proc. Natl. Acad. Sci. USA 76:4350–4354Google Scholar
- Vemuri, R., Haberland, M.E., Fong, D., Philipson, K.D. 1990. Identification of the cardiac sarcolemmal Na+-Ca2+ exchanger using monoclonal antibodies. J. Membrane Biol. 118:279–283Google Scholar
- Yip, R.K., Blaustein, M.P., Philipson, K.D. 1992. Immunologic identification of Na/Ca exchange protein in rat brain synaptic plasma membrane. Neurosci. Lett. 136:123–126Google Scholar