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Surface plasmon resonance proteins

Choi, S., Yang, Y, and Chae, J. 2008. Surface plasmon resonance protein sensor using Vroman effect. Biosens. Bioelectron. 24 893-899. [Pg.958]

Gershon P.D., Khilko S., Stable chelating linkage for reversible immobilization of oligohistidine tagged proteins in the BIAcore surface plasmon resonance detector, J Immun Methods 1995 183 65-76. [Pg.236]

Hirata I, Hioki Y, Toda M, Kitazawa T, Murakami Y, Kitano E, Kitamura H, Ikada Y, Iwata H (2003) Deposition of complement protein C3b on mixed self-assembled monolayers carrying surface hydroxyl and methyl groups studied by surface plasmon resonance. J Biomed Mater Res 66A 669-676... [Pg.195]

Brockman JM, Fmtos AG, Com RM (1999) A multistep chemical modification procedure to create DNA arrays on gold surfaces for the study of protein-DNA interactions with surface plasmon resonance imaging. J Am Chem Soc 121 8044-8051... [Pg.195]

Shumaker-Parry JS, Aebersold R, Campbell CT (2004) Parallel, quantitative measurement of protein binding to a 120-element double-stranded DNA array in real time using surface plasmon resonance microscopy. Anal Chem 76 2071-2082... [Pg.195]

Wegner GJ, Lee NJ, Marriott G, Com RM (2003) Fabrication of histidine-tagged fusion protein arrays for surface plasmon resonance imaging studies of protein-protein and protein-DNA interactions. Anal Chem 75 4740-4746... [Pg.195]

The techniques developed to study protein interactions can be divided into a number of major categories (Table 31.1), including bioconjugation, protein interaction mapping, affinity capture, two-hybrid techniques, protein probing, and instrumental analysis (i.e., NMR, crystallography, mass spectrometry, and surface plasmon resonance). Many of these methods are dependent on the use of an initial bioconjugation step to discern key information on protein interaction partners. [Pg.1005]

U. Kunz, A. Katerkamp, R. Renneberg, F. Spener, and K. Cammann, Sensing fatty acid binding protein with planar and fiber-optical surface plasmon resonance spectroscopy devices. Sens. Actuators B 32, 149-155 (1996). [Pg.281]

Q. Hong, J.-L. Popot, J. H. Lakey (2003) Stabilising a membrane protein with amphipols for surface plasmon resonance ligand binding studies. In preparation... [Pg.159]

Alternative methods to MS for the analysis of protein phosphorylation would involve immunoaffinity techniques using antibodies specific for phosphorylated residues. Surface plasmon resonance technology has been recently used for the determination of active concentration of phosphotyrosine-containing proteins at picomolar levels.117... [Pg.254]

Rytdmaa, M., and Kinnunen, P.K.J., 1995, ReversibUity of the binding of cytochrome c to Uposomes. Implications for lipid-protein interactions./. B/oZ. Chem., 270 3197-3202 Salamon, Z., and ToUin, G., 1996, Surface plasmon resonance studies of complex formation between cytochrome c and bovine cytochrome c oxidase incorporated into a supported planar Upid bUayer. II. Binding of cytochrome c to oxidase-containing cardiohpin /phosphatidylcholine membranes. Biophys. J., 71 858-867 Salamon, Z., and ToUin, G., 1997, Interaction ofhorse heart cytochrome c with Upid bilayer membranes effects on redox potentials. J. Bioenerg. Biomembr. 29 211-221 Scarlett, J.L., and Murphy, M.P., 1997, Release of apoptogenic proteins from the... [Pg.36]

Kim, K.-P., Jagadeesan, B., Burkholder, K. M., Jaradat, Z. W., Wampler, J. L., Lathrop, A. A., Morgan, M. T., and Bhunia, A. K. (2006a). Adhesion characteristics of Listeria adhesion protein (LAP)-expressing Escherichia coli to Caco-2 cells and of recombinant LAP to eukaryotic receptor Flsp60 as examined in a surface plasmon resonance sensor. FEMS Microbiol. Lett. 256,324-332. [Pg.38]


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See also in sourсe #XX -- [ Pg.340 , Pg.341 , Pg.342 , Pg.343 , Pg.344 , Pg.345 ]




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Protein resonance

Surface Plasmon

Surface plasmon resonance

Surface plasmons

Surface resonances

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