A computer modeling postulated mechanism for angiotensin II receptor activation

Marie-Pierre Joseph1, Bernard Maigret2, Jean‐Claude Bonnafous3, Jacky Marie3, Harold A. Scheraga4
1Laboratoire de Chimie Théorique, Université de Nancy I, Faculté des Sciences, Vandoeuvre-lès-Nancy, France.
2Laboratoire de Chimie Théorique, Université de Nancy I, Faculté des Sciences, Vandœuvre-lès-Nancy Cedex, France
3Centre CNRS-INSERM de Pharmacologie-Endocrinologie, Montpellier Cedex, France
4Baker Laboratory of Chemistry, Cornell University, Ithaca,

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Armstrong, K. M., Fairman, R., and Baldwin, R. L. (1993).J. Mol. Biol. 230, 284–291.

Baldwin, J. M. (1993).EMBO J. 12, 1693–1703.

Bernstein, F. C., Koetzle, T. F., Williams, G. J. B., Meyer, Jr., E. F., Brice, M. D., Rodgers, J. R., Kennard, O., Shimanouchi, T., and Tasumi, M. (1977).J. Mol. Biol. 112, 535–542.

Bihoreau, C., Monnot, C., Davies, E., Teutsch, B., Bernstein, K. E., Corvol, P., and Clauser, E. (1993).Proc. Natl. Acad. Sci. USA 90, 5133–5137.

Blin, N., Camoin, L., Maigret, B., and Strosberg, D. (1994).Mol. Pharmacol. 44, 1094–1104.

Chiu, A. T., Dunscomb, J., Kosierowski, J., Burton, C. R. A., Santomenna, L. D., Corjay, M. H., and Benfield, B. (1993).Biochem. Biophys. Res. Commun. 197, 440–449.

Chou, K. C., Maggiora, G. M., and Scheraga, H. A. (1992).Proc. Natl. Acad. Sci. USA 89, 7315–7319.

Cronet, P., Sander, C., and Vriend, G. (1993).Prot. Eng. 6, 59–64.

Cserzo, M., Bernassau, J.-M., Simon, I., and Maigret, B. (1994).J. Mol. Biol. 243, 388–396.

Deber, C. M., Glibowicka, M., and Woolley, G. A. (1990).Biopolymers 29, 149–157.

Desarnaud, F., Marie, J., Lombard, C., Larguier, R., Seyer, R., Lorca, T., Jard, S., and Bonnafous, J.-C. (1993).Biochem. J. 289, 289–297.

Dixon, R. A. F., Kobilka, B. K., Strader, D. J., Benovic, J. L., Dohlman, H. G., Frielle, T., Bolanowski, M. A., Bennett, C. D., Rands, E., Diehl, R. E., Mumford, R. A., Slater, E. E., Sigal, I. S., Caron, M. G., Lefkowitz, R. J., and Strader, C. D. (1986).Nature 321, 75–79.

Donnelly, D., and Findlay, J. B. C. (1994).Curr. Opin. Struct. Biol. 4, 582–589.

Elton, T. S., Stephan, C. C., Taylor, G. R., Kimball, M. G., Martin, M. M., Durand, J. N., and Oparil, S. (1992).Biochem. Biophys. Res. Commun. 184, 1067–1073.

Fong, T. M., Yu, H., Huang, R.-R. C., and Strader, C. D. (1992).Biochemistry 31, 11806–11811.

Furuta, H., Guo, D.-F., and Inagami, T. (1992).Biochem. Biophys. Res. Commun. 183, 8–13.

Henderson, R., Baldwin, J. M., Ceska, T. A., Zemlin, F., Beckmann, E., and Downing, K. H. (1990).J. Mol. Biol. 213, 899–929.

Hibert, M. F., Trumpp-Kallmeyer, S., Hoflack, J., and Bruinvels, A. (1993).Trends Pharmacol. Sci. 14, 7–12.

Horovitz, A., Serrano, L., Avron, B., Bycroft, M., and Fersht, A. R. (1990).J. Mol. Biol. 216, 1031–1044.

Hunter, C. A., Singh, J., and Thornton, J. M. (1991).J. Mol. Biol. 218, 837–846.

Huss, K. M., and Lybrand, T. P. (1992).J. Mol. Biol. 225, 859–871.

Huyghues-Despointes, B. M. P., Scholtz, J. M., and Baldwin, R. L. (1993).Protein Sci. 2, 80–85.

Ijzerman, A. P., Van Galen, P. J. M., and Jacobson, K. A. (1992).Drug Design and Discovery 9, 49–67.

Iwai, N., and Inagami, T. (1992).FEBS Lett. 298, 257–260.

Iwai, N., Yamano, Y., Chaki, S., Konishi, F., Bardhan, S., Tibbetts, C., Sasaki, K., Hasegawa, M., Matsuda, Y., and Inagami, T. (1991).Biochem. Biophys. Res. Commun. 177, 299–304.

Jacobson, B. L., He, J. J., Lemon, D. D., and Quiocho, F. A. (1992).J. Mol. Biol. 223, 27–30.

Ji, H., Leung, M., Zhang, Y., Catt, K. J., and Sandberg, K. (1994).J. Biol. Chem. 269, 16533–16536.

Joseph, M.-P., Robin, J., Maigret, B., and Scheraga, H. A. (1995a).Theochem, submitted.

Joseph, M.-P., Maigret, B., and Scheraga, H. A. (1995b).Int. J. Peptide Protein Res., submitted.

Kakar, S. S., Sellers, J. C., Devor, D. C., Musgrove, L. C., and Neill, J. D. (1992).Biochem. Biophys. Res. Commun. 183, 1090–1096.

Lee, R. H. (1992).Nature 356, 543–544.

Levitt, M., and Perutz, M. F. (1988).J. Mol. Biol. 201, 751–754.

Lewell, X. Q. (1992).Drug Design and Discovery 9, 29–48.

Li, S-.C., and Deber, C. M. (1992).FEBS Lett. 311, 217–220.

Loewenthal, R., Sancho, J., and Fersht, A. R. (1992).J. Mol. Biol. 224, 759–770.

Lyu, P. C., Gans, P. J., and Kallenbach, N. R. (1992).J. Mol. Biol. 223, 343–350.

Marie, J., Maigret, B., Joseph, M.-P., Larguier, R., Nouet, S., Lombard, C., and Bonnafous, J.-C. (1994).J. Biol. Chem. 269, 20815–20818.

Matsoukas, J. M., Hondrelis, J., Keramida, M., Mavromoustakos, T., Makriyannis, A., Yamdagni, R., Wu, Q., and Moore, G. J. (1994).J. Biol. Chem. 269, 5303–5312.

Mitchell, J. B. O., Thornton, J. M., Singh, J., and Price, S. L. (1992).J. Mol. Biol. 226, 251–262.

Murphy, T. J., Alexander, R. W., Griendling, K. K., Runge, M. S., and Bernstein, K. E. (1991).Nature 351, 233–236.

Nathans, J., and Hogness, D. S. (1984).Proc. Natl. Acad. Sci. USA 81, 4851–4855.

Nordvall, G., and Hacksell, U. (1993).J. Med. Chem. 36, 967–976.

Ohyama, K., Yamano, Y., Chaki, S., Kondo, T., and Inagami, T. (1992).Biochem. Biophys. Res. Commun. 189, 677–683.

Pardo, L., Ballesteros, J. A., Osman, R., and Weinstein, H. (1992).Proc. Natl. Acad. Sci. USA 89, 4009–4012.

Röper, D., Jacoby, E., Krüger, P., Engels, M., Grötzinger, J., Wollmer, A., and Strassburger, W. (1994).J. Recept. Res. 14, 167–186.

Sakmar, T. P., Franke, R. R., and Khorana, H. G. (1989).Proc. Natl. Acad. Sci. USA 86, 8309–8313.

Sandberg, K., Ji, H., Clark, A. J. L., Shapira, H., and Catt, K. J. (1992).J. Biol. Chem. 267, 9455–9458.

Sankararamakrishnan, R., and Vishveshwara, S. (1990).Biopolymers 1990 (30), 287–298.

Sansom, M. S. P. (1992).Protein Eng. 5, 53–60.

Sapse, A.-M., Schweitzer, B. S., Dicker, A. P., Bertino, J. R., and Frecer, V. (1992).Int. J. Peptide Protein Res. 39, 18–23.

Sasaki, K., Yamano, Y., Bardhan, S., Iwai, N., Murray, J. J., Hasegawa, M., Matsuda, Y., and Inagami, T. (1991).Nature 351, 230–233.

Sasamura, H., Hein, L., Krieger, J. E., Pratt, R. E., Kobilka, B. K., and Dzau, V. J. (1992).Biochem. Biophys. Res. Commun. 185, 253–259.

Scanlon, M. N., Matsoukas, J.-M., Franklin, K. J., and Moore, G. J. (1984).Life Sci. 34, 317–321.

Schambye, H. T., Hjorth, S. A., Bergsma, D. J., Sathe, G., and Schwartz, T. W. (1994).Proc. Natl. Acad. Sci. USA 91, 7046–7050.

Schertler, G. F. X., Villa, C., and Henderson, R. (1993).Nature 362, 770–772.

Serrano, L., Bycroft, M., and Fersht, A. R. (1991).J. Mol. Biol. 218, 465–475.

Sheriff, S., Silverton, E. W., Padlan, E. A., Cohen, G. H., Smith-Gill, S. J., Finzel, B. C., and Davis, D. R. (1987).Proc. Natl. Acad. Sci. USA 84, 8075–8079.

Singh, J., Thornton, J. M., Snarey, M., and Campbell, S. F. (1987).FEBS Lett. 224, 161–171.

Steckelings, U. M., Bottari, S. P., and Unger, T. (1992).Trends Pharmacol. Sci. 13, 365–368.

Strader, C. D., Fong, T. M., Tota, M. R., and Underwood, D. (1994).Annu. Rev. Biochem. 63, 101–132.

Strosberg, A. D., Camoin, L., Blin, N., and Maigret, B. (1993).Drug Design and Discovery 9, 199–211.

Summers, R. J., and McMartin, L. R. (1993).J. Neurochem. 60, 10–23.

Trumpp-Kallmeyer, S., Hoflack, J., Bruinvels, A., and Hibert, M. (1992).J. Med. Chem. 35, 3448–3462.

Vásquez, M., and Scheraga, H. A. (1988).Biopolymers 27, 41–58.

Von Heijne, G. (1991).J. Mol. Biol. 218, 499–503.

Woolfson, D. N., Mortishire-Smith, R. J., and Williams, D. H. (1991).Biochem. Biophys. Res. Commun. 175, 733–737.

Yamano, Y., Ohyama, K., Chaki, S., Guo, D.-F., and Inagami, T. (1992).Biochem. Biophys. Res. Commun. 187, 1426–1431.

Yun, R. H., Anderson, A., and Hermans, J. (1991).Proteins: Structure Function Genet. 10, 219–228.