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Results: 1-25 | 26-35

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Results: 1-25/35

Authors: Cagney, G Uetz, P Fields, S
Citation: G. Cagney et al., High-throughput screening for protein-protein interactions using two-hybrid assay, METH ENZYM, 328, 2000, pp. 3-14

Authors: Fashena, SJ Serebriiskii, IG Golemis, EA
Citation: Sj. Fashena et al., LexA-based two-hybrid systems, METH ENZYM, 328, 2000, pp. 14-26

Authors: Kolonin, MG Zhong, JH Finley, RL
Citation: Mg. Kolonin et al., Interaction mating methods in two-hybrid systems, METH ENZYM, 328, 2000, pp. 26-46

Authors: Aronheim, A Karin, M
Citation: A. Aronheim et M. Karin, Analysis and identification of protein-protein interactions using protein recruitment systems, METH ENZYM, 328, 2000, pp. 47-59

Authors: Karimova, G Ullmann, A Ladant, D
Citation: G. Karimova et al., Bacterial two-hybrid system that exploits a cAMP signaling cascade in Escherichia coli, METH ENZYM, 328, 2000, pp. 59-73

Authors: Endoh, H Walhout, AJM Vidal, M
Citation: H. Endoh et al., A green fluorescent protein-based reverse two-hybrid system: Application to the characterization of large numbers of potential protein-protein interactions, METH ENZYM, 328, 2000, pp. 74-88

Authors: Griffith, EC Licitra, EJ Liu, JO
Citation: Ec. Griffith et al., Yeast three-hybrid system for detecting ligand-receptor interactions, METH ENZYM, 328, 2000, pp. 89-103

Authors: Zhang, J
Citation: J. Zhang, Use of a yeast three-hybrid system to clone bridging proteins, METH ENZYM, 328, 2000, pp. 103-110

Authors: Kochan, JP Volpers, C Osborne, MA
Citation: Jp. Kochan et al., The yeast tribrid system: cDNA expression cloning of protein interactions dependent on posttranslational modifications, METH ENZYM, 328, 2000, pp. 111-127

Authors: DeMaggio, AJ Goldman, P Shih, HM Goodman, RH Hoekstra, MF
Citation: Aj. Demaggio et al., The yeast split-hybrid system, METH ENZYM, 328, 2000, pp. 128-137

Authors: Burgess, RR Arthur, TM Pietz, BC
Citation: Rr. Burgess et al., Mapping protein-protein interaction domains using ordered fragment ladder far-western analysis of hexahistidine-tagged fusion proteins, METH ENZYM, 328, 2000, pp. 141-157

Authors: Yaffe, MB Cantley, LC
Citation: Mb. Yaffe et Lc. Cantley, Mapping specificity determinants for protein-protein association using protein fusions and random peptide libraries, METH ENZYM, 328, 2000, pp. 157-170

Authors: Geyer, CR Brent, R
Citation: Cr. Geyer et R. Brent, Selection of genetic agents from random peptide aptamer expression libraries, METH ENZYM, 328, 2000, pp. 171-208

Authors: Michnick, SW Remy, I Campbell-Valois, FX Vallee-Belisle, A Pelletier, JN
Citation: Sw. Michnick et al., Detection of protein-protein interactions by protein fragment complementation strategies, METH ENZYM, 328, 2000, pp. 208-230

Authors: Rossi, FMV Blakely, BT Charlton, CA Blau, HM
Citation: Fmv. Rossi et al., Monitoring protein-protein interactions in live mammalian cells by beta-galactosidase complementation, METH ENZYM, 328, 2000, pp. 231-251

Authors: Park, SH Raines, RT
Citation: Sh. Park et Rt. Raines, Green fluorescent protein chimeras to probe protein-protein interactions, METH ENZYM, 328, 2000, pp. 251-261

Authors: Muller, KM Arndt, KM Alber, T
Citation: Km. Muller et al., Protein fusions to coiled-coil domains, METH ENZYM, 328, 2000, pp. 261-282

Authors: Rieker, JD Hu, JC
Citation: Jd. Rieker et Jc. Hu, Molecular applications of fusions to leucine zippers, METH ENZYM, 328, 2000, pp. 282-296

Authors: Kraemer, B Zhang, BL SenGupta, D Fields, S Wickens, M
Citation: B. Kraemer et al., Using the yeast three-hybrid system to detect and analyze RNA-protein interactions, METH ENZYM, 328, 2000, pp. 297-321

Authors: Cullen, BR
Citation: Br. Cullen, Principles and applications of a tat-based assay for analyzing specific RNA-protein interactions in mammalian cells, METH ENZYM, 328, 2000, pp. 322-329

Authors: Sidhu, SS Lowman, HB Cunningham, BC Wells, JA
Citation: Ss. Sidhu et al., Phage display for selection of novel binding peptides, METH ENZYM, 328, 2000, pp. 333-363

Authors: Arndt, KM Jung, S Krebber, C Pluckthun, A
Citation: Km. Arndt et al., Selectively infective phage technology, METH ENZYM, 328, 2000, pp. 364-388

Authors: Widersten, M Hansson, LO Tronstad, L Mannervik, B
Citation: M. Widersten et al., Use of phage display and transition-state analogs to select enzyme variants with altered catalytic properties: Glutathione transferase as an example, METH ENZYM, 328, 2000, pp. 389-404

Authors: Hanes, J Jermutus, L Pluckthun, A
Citation: J. Hanes et al., Selecting and evolving functional proteins in vitro by ribosome display, METH ENZYM, 328, 2000, pp. 404-430

Authors: Boder, ET Wittrup, KD
Citation: Et. Boder et Kd. Wittrup, Yeast surface display for directed evolution of protein expression, affinity, and stability, METH ENZYM, 328, 2000, pp. 430-444
Risultati: 1-25 | 26-35