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Fluorescence Polarization Assay

Figure 12 Resynthesized library hits identified from the high throughput fluorescence-polarization assay along with their Src SH2 binding data. Figure 12 Resynthesized library hits identified from the high throughput fluorescence-polarization assay along with their Src SH2 binding data.
Hubert, C.L., Sherling, S.E., Johnston, P.A., and Stancato, L.R, Data concordance from a comparison between filter binding and fluorescence polarization assay formats for identification of ROCK-II inhibitors, /. Biomol. Screen., 8, 399, 2003. [Pg.98]

Banks, P., Gosselin, M., and Prystay, L., Impact of a red-shifted dye label for high throughput fluorescence polarization assays of G protein-coupled receptors, /. Biomol. Screen., 5, 329,... [Pg.99]

Huang, W., Zhang, Y., and Sportsman, J.R., A fluorescence polarization assay for cyclic nucleotide phosphodiesterases, /. Biomol. Screen., 7, 215, 2002. [Pg.99]

Burke, T.J., Loniello, K.R., Beebe, J.A. and Ervin, K.M. (2003) Development and application of fluorescence polarization assays in drug discovery. Combinatorial Chemistry High Throughput Screening, 6, 183-194. [Pg.116]

Piper, D.R., Duff, S.R., Eliason, H.C., Erazee, W.J., Erey, E.A., Euerstenau-Sharp, M., Jachec, C., Marks, B.D., Pollok, B.A., Shekhani, M.S., Thompson, D.V., Whitney, P., Vogel, K.W. and Hess, S.D. (2008) Development of the predictor hERG fluorescence polarization assay using a membrane protein enrichment approach. ASSAY and Drug Development Technologies, 6, 213-223. [Pg.409]

Figure 4.7 Summary of the measured potencies for A-FABP and selectivities against H-FABP for analogues of BVT.1960. The numbers are based on measurements using the fluorescence polarization assay. Adapted with permission from van Dongen et al., J. Am. Chem. Soc., 124, 11874. Copyright 2002 American Chemical Society. Figure 4.7 Summary of the measured potencies for A-FABP and selectivities against H-FABP for analogues of BVT.1960. The numbers are based on measurements using the fluorescence polarization assay. Adapted with permission from van Dongen et al., J. Am. Chem. Soc., 124, 11874. Copyright 2002 American Chemical Society.
Turek-Etienne, T.C., Small, E.C. et al. 2003. Evaluation of fluorescent compound interference in 4 fluorescence polarization assays 2 kinases, 1 protease, and 1 phosphatase. J. Biomol. Screen. 8, 176-184. [Pg.24]

Flotow, H. et al. 2002. Development of a plasmepsin II fluorescence polarization assay suitable for high-throughput antimalarial drug discovery. J. Biomol. Screen. 7, 367-371. [Pg.46]

Lee, RH. and D.J. Bevis. 2000. Development of a homogeneous high-throughput fluorescence polarization assay for G protein-coupled receptor binding. J. Biomol. Screen. 5, 415—419. [Pg.80]

Du, Y. et al. 2007. High-throughput screening fluorescence polarization assay for tumor-specific Hsp90. J. [Pg.96]

Howes, R. et al. 2006. A fluorescence polarization assay for inhibitors of Hsp90. Anal. Biochem. 350, 202-213. [Pg.96]

Kim, J. et al. 2004. Development of a fluorescence polarization assay for the molecular chaperone Hsp90../. Biomol. Screen. 9, 375-381. [Pg.96]

We thank B. M. Tempter and C. A. Royer for advice on fluorescence polarization assays. This work was supported by NIH grant GM44783. BRK was supported by NIH Chemistry - Biology Interface training grant GM08505. [Pg.572]

Ashwood ER, Tait JF, Foerder CA, Benedetti TJ. Improved fluorescence polarization assay for use in evaluating fetal lung maturity III. Retrospective cEnical evaluation and comparison with the lecithin/sphingomyelin ratio. Clin Chem 1986 32 260-4. [Pg.2194]

Chen C, Roby PV, Weiss NS, Wilson JA, Benedetti TJ, Tait JF. Chnical evaluation of the NBD-PC fluorescence polarization assay for prediction of fetal lung maturity. Obstet Gynecol 1992 80 688-92. [Pg.2196]

Del Valle GO, Adair CD, Ramos EE, Gaudier EL, Sanchez-Ramos L, Morales R. Interpretation of the TDx-FLM fluorescence polarization assay in pregnancies complicated by diabetes mellitus. Am J Perinatol 1997 14 241-4. [Pg.2197]

Russell JC, A cafibrated fluorescence polarization assay for assessment of fetal lung maturity. Clin Chem 1987 33 1177-84. [Pg.2203]

Wu, J., Yarwood, D. R., Pham, Q., and Sills, M. A. Identification of a high-affinity anti-phosphoserine antibody for the development of a homogeneous fluorescence polarization assay of protein kinase C. /. Biomol. Screening 5 23—30, 2000. [Pg.56]

Knight SMetal (2002) A fluorescence polarization assay for the identification of inhibitors of the p53-DM2 protein-protein interaction. Anal Biochem 300(2) 230-236... [Pg.176]

Kenny CH, Ding W, Kelleher K et al (2003) Development of a fluorescence polarization assay to screen for inhibitors of the FtsZ/ZipA interaction. Anal Biochem 323 224—233... [Pg.49]

Zhang H, Nimmer P, Rosenberg SA et al (2002) Development of a high-throughput fluorescence polarization assay for Bcl-xL. Anal Biochem 307 70-75... [Pg.255]

Table 4.3-2 Results of the fluorescence polarization assay for the terphenyl-based Bak mimetics. Table 4.3-2 Results of the fluorescence polarization assay for the terphenyl-based Bak mimetics.

See other pages where Fluorescence Polarization Assay is mentioned: [Pg.189]    [Pg.16]    [Pg.99]    [Pg.176]    [Pg.84]    [Pg.85]    [Pg.86]    [Pg.86]    [Pg.249]    [Pg.275]    [Pg.175]    [Pg.557]    [Pg.1432]    [Pg.624]    [Pg.166]    [Pg.282]    [Pg.261]   
See also in sourсe #XX -- [ Pg.112 , Pg.244 , Pg.369 ]




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