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Binding biochemical

A. Miklavc, D. Kocjan, J. Mavri, J. Roller and D. Hadzi, On the fundamental difference in thermodynamics of agonist and antagonist interactions with P-adrenergic receptors and the mechanism of entropy-driven binding. Biochem. Pharmacol., 40 (1990) 663-669. [Pg.417]

Mayo KH, Ilyina E, Roongta V, et al. Heparin binding to platelet factor-4. An NMR and site-directed mutagenesis study arginine residues are crucial for binding. Biochem J 1995 312 357-65. [Pg.30]

Kourounakis A, Visser C, de Groote M, Ijzerman AP. Allosteric modulation of the rat adenosine A, receptor differential effects on agonist and antagonist binding. Biochem Pharmacol 2001 51 207-215. [Pg.249]

Boyer, J. L Martinez-Carcamo, M Monroy-Sanchez, J. A., Posadas, C., and Garcia-Sainz, J. A. (1986) Guanine nucleotide-induced positive cooperativity in muscarinic-cholinergic antagonist binding. Biochem. Biophys. Res. Commun. 134,172-177. [Pg.259]

Wester, M.R., Johnson, E.F., Marques-Soares, C., Dijols, S., Dansette, P.M., Mansuy, D., and Stout, C.D. Structure of mammalian cytochrome P450 2C5 complexed with diclofenac at 2.1 A resolution evidence for an induced fit model of substrate binding. Biochem. 2003, 42, 9335-9345. [Pg.378]

Glycosaminoglycans can influence fibroblast growth factor-2 mitogenicity without significant growth factor binding. Biochem Biophys Res Commun 235 369-373, 1997. [Pg.309]

Salvi, A. et ah. Structural damage to proteins caused by free radicals assessment, protection by antioxidants, and influence of protein binding, Biochem. Pharmacol., 61, 1237, 2001. [Pg.469]

Soderlund, E.J., Gordon, W.P, Nelson, S.D. Omichinski, J.G, Dybing, E. (1984) Metabolism in vitro of tris(2,3-dibromopropyl) phosphate Oxidative debromination and bis(2.3-dibromopropyl) phosphate formation as correlates of mutagenicity and covalent protein binding. Biochem. Pharmacol., 33, 4017-4023... [Pg.920]

Freissmuth M, Selzer E, Schtitz W (1991) Interactions of purified bovine brain Al-adenosine receptors with G-proteins. Reciprocal modulation of agonist and antagonist binding. Biochem J 275(Pt 3) 651-656... [Pg.56]

McNall, S.J. and Mansour, T.E. (1984) Novel serotonin receptors in Fasciola characterization by studies on adenylate cyclase activation and [3H]LSD binding. Biochemical Pharmacology 33, 2789-2797. [Pg.384]

Mackenzie GG, Delfino JM, Keen CL, Fraga CG, Oteiza PI. 2009. Dimeric procyanidins are inhibitors of NF-kB-DNA binding. Biochem Pharmacol, in press (doi 10.1016/j.bcp.2009.06.111). [Pg.131]

Cheung, P. C., Salt, I. P., Davies, S. P., Hardie, D. G. and Carling, D., 2000, Characterization of AMP-activated protein kinase gamma-subunit isoforms and their role in AMP binding, Biochem J, 346 Pt 3, pp 659-69. [Pg.206]

Riviere S., Lartigue A., Quennedey B., Campanacci V., Farine J. P., Tegoni M., Cambillau C. and Brossut R. (2003) A pheromone-binding protein from the cockroach Leucophaea maderae cloning, expression and pheromone binding. Biochem J. 371, 573-579. [Pg.441]

Haining RL, Jones JP, Henne KR, et al. Enzymatic determinants of the substrate specificity of CYP2C9 role of B -C loop residues in providing the pi-stacking anchor site for warfarin binding. Biochem J 1999 38 3285-3292. [Pg.78]

Campanero-Rhodes MA, Childs RA, Kiso M, Komba S, Le Narvor C, Warren J, Otto D, Crocker PR, Feizi T. Carbohydrate microarrays reveal sulphation as a modulator of siglec binding. Biochem. Biophys. Res. Comm. 2006 344 1141-1146. [Pg.50]

Sorisky A, Kucera GL, and Rittenhouse SE. (1990). Stimulated cholesterol-eiiriched platelets display increased cytosolic Ca2+ and jdiospholipase A activity independent of dtanges in inositol trisphoqthates and agonist/reoeptor binding. Biochem. J. 265,747-754. [Pg.314]

Arakawa T, Timasheff SN. Mechanism of protein salting in and salting out by divalent cation salts balance between hydration and salt binding. Biochem 1984 23 5912-5923. [Pg.388]

Himms Hagen, J. Desautels, M. (1978) A mitochondrial defect in brown adipose tissue of the obese (ob/ob) mouse reduced binding of purine nucleotides and a failure to respond to cold by an increase in binding. Biochem. Biophys. Res. Commun. 83, 628-634. [Pg.33]

Tanner J, Mitchell D, Tu S-C, Miller S. Structure of bacterial luciferase homodimer Implications for flavin binding. Biochem 1997 36 665-72. [Pg.38]

The relative chemical properties of Ru(II) versus Ru(III) suggest that animlneruthenlum(III) Ions should be far less active toward binding biochemical ligands than analogous RuCIi) complexes. In the case of most nitrogen ligands a wealth of chemical evidence exists In support of this (11). [Pg.170]

Istrate MA, Nussler AK, Eichelbaum M, Burk O (2010) Regulation of CYP3A4 by pregnane X receptor the role of nuclear receptors competing for response element binding. Biochem Biophys Res Commun 393 688-693... [Pg.724]

Burridge K, Nuckolls G, Otey C et al (1990) Actin-membrane interaction in focal adhesions. Cell Differ Dev 32 337-342 Calalb MB, Polte TR, Hanks SK (1995) Tyrosine phosphorylation of focal adhesion kinase at sites in the catalytic domain regulates kinase activity a role for Src family kinases. Mol Cell Biol 15 954-963 Calderwood DA, Tuckwell DS, Humphries MJ (1995) Specificity of integrin I-domain-ligand binding. Biochem Soc Trans 23 504S... [Pg.110]

Patterson, S. D., and Bell, K. (1990) The carbohydrate side chains of the major plasma serpins of horse and wallaby Analyses of enzymatic and chemically treated (including Smith degradation ) protein blots by lectin binding. Biochem. Int. 20, 429-436. [Pg.257]

Cammarata KV, and Schmidt GW. In-vitro reconstitution of a light harvesting gene product-deletion mutagenesis and analyses of pigment binding. Biochem 1992 31 2779-2789. [Pg.129]

Hodgkiss, R. J. Begg, A. C. Middleton, R. W. Parrick, J. Stratford, M. R. L. Wardman, R Wilson, G. D. Fluorescent markers for hypoxic cells a study of novel heterocyclic compounds that undergo bioreductive binding. Biochem. Pharmacol. 1991, 41, 533-541. [Pg.406]

Wendland, M., A. Hiile, G. Nagel, A. Waheed, K. von Figura, and R. Pohlmann. 1989. Synthesis of a tmncated Mr 46,000 mannose 6-phosphate receptor that is secreted and retains ligand binding. Biochem J. 260 ( JJ 201 206. [Pg.1682]

Handa, K., Nudelman, E. D., Stroud, M. R., Shiozawa, T., and Hakomori, S.-i., 1991, Selectin GMP-140 (CD62 PADGEM) binds to sialosyl-Le and sialosyl-Le , and sulfated glycans modulate this binding, Biochem. Biophys. Res. Commun. 181 1223-1230. [Pg.53]

Ballard, F.J., Francis, G.L., Ross, M., et aL (1987) Natural and synthetic forms of insnlin-like growth factor-1 (IGF-1) and the potent derivative, destripeptide IGF-1 Biological activities and receptor binding. Biochemical Biophysical Research Communications, 149,398 04. [Pg.273]


See other pages where Binding biochemical is mentioned: [Pg.396]    [Pg.438]    [Pg.237]    [Pg.99]    [Pg.42]    [Pg.362]    [Pg.438]    [Pg.89]    [Pg.512]    [Pg.276]   
See also in sourсe #XX -- [ Pg.269 ]




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Binding Affinity and Specificity Based on Biochemical Studies

Binding Biochemical buffers

Effects of pH and ion binding on biochemical reaction thermodynamics

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