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Receptor biochemistry

Hnlme, E. C. (1990). Receptor biochemistry A practical approach. Oxford University Press, Oxford. [Pg.78]

Receptor Biochemistry, Glaxo Wellcome Research, Research Triangle Park, NC, USA... [Pg.450]

Soskic, V., Gorlach, M., Poznanovic, S., Boehmer, F. D., and Godovac-Zimmermann, J. (1999). Functional proteomics analysis of signal transduction pathways of the platelet-derived growth factor b receptor. Biochemistry 38, 1757-1764. [Pg.122]

Boulay, F., Tardif, M., Brouchon, L., Vignais, P. (1990b). The human / /-formylpeptide receptor Characterisation of two cDNA isolates and evidence for a new subfamily of G-protein-coupled receptors. Biochemistry 29, 11123-33. [Pg.124]

Zhang H, Karlin A. 1998. Contribution of the [3-subunit M2 segment to the ion-conducting pathway of the acetylcholine receptors. Biochemistry 37 7952-7964. [Pg.454]

Simoni, M., GromoU, J., and Nieschlag, E. (1997) The foUicle-stimulating hormone receptor biochemistry, molecular biology, physiology, and pathophysiology. Endocr. Rev. 18,739-773. [Pg.134]

Cui Y, Rajasethupathy P, Hess GP (2004) Selecrion of stable RNA molecules that can regulate the channel-opening equilibrium of the membrane-bound gamma-aminobutyric acid receptor. Biochemistry 43 16442-16449... [Pg.38]

Ottensmeyer FP et al Mechanism of transmembrane signalling Insulin binding and the insulin receptor. Biochemistry 2000 39 12103. [PMID ... [Pg.952]

Spiess, M. (1990). The asialoglycoprotein receptor model for endocytic transport receptors. Biochemistry, 29, 1009-1018. [Pg.376]

Figure 14-12 Spectroscopic measurement of log [Fe(lll)Trfc]/[Fe(ll)Trfc] versus potential at pH 5.8. [S. Dhungana. C. H. Taboy, O. Zak, M. Larvie. A L Crumbliss, and RAisen, Redox Properties of Human Transferrin Bound to Its Receptor,Biochemistry, 2004, 43,205.]... Figure 14-12 Spectroscopic measurement of log [Fe(lll)Trfc]/[Fe(ll)Trfc] versus potential at pH 5.8. [S. Dhungana. C. H. Taboy, O. Zak, M. Larvie. A L Crumbliss, and RAisen, Redox Properties of Human Transferrin Bound to Its Receptor,Biochemistry, 2004, 43,205.]...
Gehring, U., Steroid hormone receptors Biochemistry, genetics and molecular biology. Trends Biochem. Sci. 12 399-402, 1987. [Pg.827]

Moro S, Hoffmann C, Jacobson KA (1999) Role of the extracellular loops of G protein-coupled receptors in ligand recognition A molecular modeling study of the human P2Y1 receptor. Biochemistry 38 3498-3507... [Pg.163]

Nikiforovich, G. V., and Marshall, G. R. (2003). Three-dimensional model for meta-II rhodopsin, an activated G-protein-coupled receptor. Biochemistry 42, 9110-9120. [Pg.92]

Lim WK, Myung C-S, Garrison JC et al (2001) Receptor-G protein y specificity yll shows unique potency for Ai adenosine and 5-HTia receptors. Biochemistry 40 10532-41 Limberger N, Spath L, Starke K (1988) Presynaptic a2-adrenoceptor, opioid K-receptor and adenosine Al-receptor interactions on noradrenaline release in rabbit brain cortex. Naunyn-Schmiedberg s Arch Pharmacol 338 53-61... [Pg.367]

Sher T, YiH-F, McBride OW, et al. 1993. cDNAcloning, chromosomal mapping, and fimctbnal characterization of the human peroxisome proliferator activated receptor. Biochemistry 325598-5604. [Pg.291]

Sher, T., Yt H. F McBride, O. W., and Gonzalez, F. J. (1993). cDNA Cloning, Chromosomal Mapping, and Functional Characterization of the Human Peroxisome Proliferator Activated Receptor. Biochemistry 32, 5598-5604. [Pg.204]

Barak LS, Menard L, Ferguson SS, Colapietro AM, Caron MG. The conserved seven-transmembrane sequence NP(X)2,3Y of the G protein-coupled receptor superfamily regulates multiple properties of the beta 2-adreneigic receptor. Biochemistry 1995 34 15,407-15,414. [Pg.29]

Gettys TW, Fields TA, Raymond JR. Selective activation of inhibitory G protein alpha-subunits by partial agonists of the human 5-HT1A receptor. Biochemistry 1994 33 4283-4290. [Pg.234]

Rigler P, Ulrich WP, Hovius R, Ilegems E, Pick H, Vogel H. Downscaling Fourier transform infrared spectroscopy to the micrometer and nanogram scale secondaiy stmcture of serotonin and acetylcholine receptors. Biochemistry 2003 42(47) 14,017-14,022. [Pg.455]

Graf, X, Ogle, R. C., Robey, F. A., Sasaki, M., Martin, G. R., Yamada, Y., and Kleinman, H. K., A pentapeptide from the laminin B1 chain mediates cell adhesion and binds the 67000 laminin receptor. Biochemistry 26, 6896 (1987). [Pg.162]

Im, D. S., Clemens, J., Macdonald, T. L., and Lynch, K. R. (2001). Characterization of the human and mouse sphingosine 1-phosphate receptor, S1P5 (Edg-8) Structure-activity relationship of sphingosinel-phosphate receptors. Biochemistry 40(46), 14053-14060. [Pg.174]

Liu G, Bryant RT, Hilderman RH, Isolation of a tripeptide from a random phage peptide library that inhibits PI, P4-diadenosine 5 -tetraphosphate binding to its receptor, Biochemistry, 35 197-201, 1996. [Pg.408]

Ploug M, Ellis V, Dano K. Ligand interaction between urokinase-type plasminogen activator and its receptor probed with 8-anilino-l-naphthalenesulfonate. Evidence for a hydrophobic binding site exposed only on the intact receptor. Biochemistry 1994 33(30) 8991-8997. [Pg.97]

Sweet taste receptor biochemistry include Louis sugar metabolism... [Pg.405]


See other pages where Receptor biochemistry is mentioned: [Pg.262]    [Pg.99]    [Pg.380]    [Pg.274]    [Pg.65]    [Pg.74]    [Pg.312]    [Pg.83]    [Pg.194]    [Pg.241]    [Pg.131]    [Pg.90]    [Pg.7]    [Pg.107]    [Pg.111]    [Pg.111]    [Pg.65]    [Pg.64]    [Pg.147]   
See also in sourсe #XX -- [ Pg.111 , Pg.112 ]




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