Books on the topic 'Binding ligandi'

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1

H, Sawyer William, ed. Quantitative characterization of ligand binding. New York: Wiley-Liss, 1995.

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2

Bellelli, Andrea, and Jannette Carey. Reversible Ligand Binding. Chichester, UK: John Wiley & Sons, Ltd, 2017. http://dx.doi.org/10.1002/9781119238508.

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3

Khan, Masood N., and John W. A. Findlay, eds. Ligand-Binding Assays. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2009. http://dx.doi.org/10.1002/9780470541517.

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4

Woodbury, Charles P. Introduction to macromolecular binding equilibria. Boca Raton: CRC Press, 2008.

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5

Thermodynamic theory of site-specific binding processes in biological macromolecules. Cambridge, [Eng.]: Cambridge University Press, 1995.

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6

E, Harding S., and Chowdhry Babur Z, eds. Protein-ligand interactions, structure and spectroscopy: A practical approach. Oxford: Oxford University Press, 2001.

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7

1961-, Keen Mary, ed. Receptor binding techniques. Totowa, N.J: Humana Press, 1999.

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8

Stoddard, Barry L., ed. Computational Design of Ligand Binding Proteins. New York, NY: Springer New York, 2016. http://dx.doi.org/10.1007/978-1-4939-3569-7.

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9

Krishna, Mallia A., and Smith Paul K, eds. Immobilized affinity ligand techniques. San Diego: Academic Press, 1992.

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10

(Firm), Knovel, ed. Engineering biosensors: Kinetics and design applications. San Diego: Academic Press, 2002.

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11

Protein-ligand interactions: Methods and applications. 2nd ed. New York: Humana Press, 2013.

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12

N, Khan Masood, and Findlay John W. A, eds. Ligand-binding assays: Development, validation, and implementation in the drug development arena. Hoboken, N.J: Wiley, 2010.

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13

Wyman, Jeffries. Binding and linkage: Functional chemistry of biological macromolecules. Mill Valley, Calif: University Science Books, 1990.

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14

Ligand-receptor energetics: A guide for the perplexed. New York: Wiley, 1997.

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15

Podjarny, Alberto, Annick P. Dejaegere, and Bruno Kieffer, eds. Biophysical Approaches Determining Ligand Binding to Biomolecular Targets. Cambridge: Royal Society of Chemistry, 2011. http://dx.doi.org/10.1039/9781849732666.

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16

Hans-Joachim, Böhm, and Schneider Gisbert 1965-, eds. Protein-ligand interactions from molecular recognition to drug design. Weinheim: Wiley-VCH, 2003.

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17

Engineering biosensors: Kinetics and design applications. San Diego, Calif: Academic, 2002.

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18

Ulrich, Nienhaus G., ed. Protein-ligand interactions: Methods and applications. Totowa, N.J: Humana Press, 2005.

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19

Munson, Peter J. A user's guide to LIGAND: Data analysis and curve-fitting for ligand binding experiments. 2nd ed. Bethesda, Md: Laboratory of Theoretical and Physical Biology, National Institute of Child Health and Human Development, National Institutes of Health, 1987.

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20

Matejtschuk, Paul. Structure and ligand-binding properties of abnormal human albumins. [s.l.]: typescript, 1986.

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21

P, Davenport Anthony, ed. Receptor binding techniques. 2nd ed. Totowa, N.J: Humana Press, 2005.

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22

Receptor binding techniques. 3rd ed. New York, NY: Humana Press, 2012.

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23

Roterman-Konieczna, Irena, ed. Identification of Ligand Binding Site and Protein-Protein Interaction Area. Dordrecht: Springer Netherlands, 2013. http://dx.doi.org/10.1007/978-94-007-5285-6.

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24

Hans-Joachim, Böhm, and Gubernator Klaus, eds. Structure-based ligand design. Weinheim: Wiley-VCH, 1998.

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25

NATO ASI/FEBS Course on DNA-Ligand Interactions: From Drugs to Proteins (1986 Abbey of Fontevraud). DNA-ligand interactions: From drugs to proteins. New York: Plenum Press, 1987.

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26

T, Peters, and Evans S. V. 1959-, eds. Bioactive conformation. Berlin: Springer, 2007.

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27

Siegfried, Schwarz. Molecules of life & mutations: Understanding diseases by understanding proteins. Basel: Karger, 2002.

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28

1942-, Berthon Guy, ed. Handbook of metal-ligand interactions in biological fluids. New York: Marcel Dekker, 1995.

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29

Kozik, Andrzej. Thiamine-protein interaction: Chemical mechanism of ligand-binding and bioanalytical application of thiamine-binding proteins from seeds. Kraków: Nakł. Uniwersytetu Jagiellońskiego, 1996.

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30

Nualláin, Brian Ó. An investigation of ligand interactions with apoflavodoxin from Desulfovibrio vulgaris and the cell adhesion molecule LFA-3. Dublin: University College Dublin, 1998.

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31

Ren, Ke, and Ronald Dubner. The first crystal structure of an ionotropic glutamate receptor ligand-binding core. Edited by Paul Farquhar-Smith, Pierre Beaulieu, and Sian Jagger. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780198834359.003.0032.

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The known functional ionotropic glutamate receptors (iGluRs) are composed of three major subtypes: AMPA, NMDA, and kainate. In 1998, in the landmark paper discussed in this chapter, Armstrong et al. provided the first crystal structure of an iGluR-subunit ligand-binding core, the S1S2 region of the rat GluA2 ‘flop’ isoform. They solved its structure with X-ray crystallography from selenomethonine crystals. They also identified residues involved in kainate binding, analysed allosteric sites that regulate affinity and specificity of the agonist, and mapped potential subunit–subunit interaction sites. They also proposed that binding of different agonists may result in variable degrees of domain closure. This work has profound impact on the field and it has been importantly cited. Subsequently, numerous high-resolution crystal structures of ligand-binding domains of iGluRs in complex with ligands, both agonists and antagonists, have been solved.
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32

Woodbury, Charles P. Introduction to Macromolecular Binding Equilibria. Taylor & Francis Group, 2019.

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33

Introduction to Macromolecular Binding Equilibria. CRC, 2007.

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34

Woodbury, Charles P. Introduction to Macromolecular Binding Equilibria. Taylor & Francis Group, 2007.

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35

Woodbury, Charles P. Introduction to Macromolecular Binding Equilibria. Taylor & Francis Group, 2007.

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36

Woodbury, Charles P. Introduction to Macromolecular Binding Equilibria. Taylor & Francis Group, 2007.

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37

Thermodynamic Theory of Site-Specific Binding Processes in Biological Macromolecules. Cambridge University Press, 2005.

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38

Cera, Enrico Di. Thermodynamic Theory of Site-Specific Binding Processes in Biological Macromolecules. Cambridge University Press, 2011.

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39

Cera, Enrico Di. Thermodynamic Theory of Site-Specific Binding Processes in Biological Macromolecules. Cambridge University Press, 2009.

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40

(Editor), Stephen E. Harding, and Babur Z. Chowdhry (Editor), eds. Protein-Ligand Interactions: A Practical Approach Volume 2: Structure and Spectroscopy (Practical Approach Series). Oxford University Press, USA, 2001.

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41

Folkers, Gerd, Raimund Mannhold, Hugo Kubinyi, and Holger Gohlke. Protein-Ligand Interactions. Wiley & Sons, Limited, John, 2012.

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42

Folkers, Gerd, Raimund Mannhold, Hugo Kubinyi, and Holger Gohlke. Protein-Ligand Interactions. Wiley & Sons, Incorporated, John, 2012.

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43

Folkers, Gerd, Raimund Mannhold, Hugo Kubinyi, and Holger Gohlke. Protein-Ligand Interactions. Wiley & Sons, Incorporated, John, 2012.

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44

Folkers, Gerd, Raimund Mannhold, Hugo Kubinyi, and Holger Gohlke. Protein-Ligand Interactions. Wiley & Sons, Incorporated, John, 2012.

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45

Proteinligand Interactions. Wiley-VCH Verlag GmbH, 2012.

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46

Bellelli, Andrea, and Jannette Carey. Reversible Ligand Binding: Theory and Experiment. Wiley & Sons, Limited, John, 2017.

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47

Computational Design of Ligand Binding Proteins. Humana, 2018.

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48

Bellelli, Andrea, and Jannette Carey. Reversible Ligand Binding: Theory and Experiment. Wiley & Sons, Incorporated, John, 2017.

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49

Stoddard, Barry L. Computational Design of Ligand Binding Proteins. Springer New York, 2016.

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50

Bellelli, Andrea, and Jannette Carey. Reversible Ligand Binding: Theory and Experiment. Wiley & Sons, Incorporated, John, 2017.

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