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Results 11-20 of 22 (Search time: 0.002 seconds).
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PreviewIssue DateTitleAuthor(s)
2008In silico screening and biological evaluation of inhibitors of Src-SH3 domain interaction with a proline-rich ligandAtatreh, N.; Stojkoski, C.; Smith, P.; Booker, G.; Dive, C.; Frenkel, A.; Freeman, S.; Bryce, R.
2009Differences in hydroxylation and binding of Notch and HIF-1 alpha demonstrate substrate selectivity for factor inhibiting HIF-1 (FIH-1)Wilkins, S.; Hyvarinen, J.; Chicher, J.; Gorman, J.; Peet, D.; Bilton, R.; Koivunen, P.
2004Role of N- and C-terminal residues of insulin-like growth factor (IGF)-binding protein-3 in regulating IGF complex formation and receptor activationYan, X.; Forbes, B.; McNeil, K.; Baxter, R.; Firth, S.
2012Factor Inhibiting HIF (FIH) recognizes distinct molecular features within hypoxia-inducible factor-α (HIF-α) versus ankyrin repeat substratesWilkins, S.; Karttunen, S.; Hampton-Smith, R.; Murchland, I.; Chapman-Smith, A.; Peet, D.
2009The structure of an integrin/talin complex reveals the basis of inside-out signal transductionAnthis, N.; Wegener, K.; Ye, F.; Kim, C.; Goult, B.; Lowe, E.; Vakonakis, I.; Bate, N.; Critchley, D.; Ginsberg, M.; Campbell, I.
2009The structure of an interdomain complex that regulates talin activityGoult, B.; Bate, N.; Anthis, N.; Wegener, K.; Gingras, A.; Patel, B.; Barsukov, I.; Campbell, I.; Roberts, G.; Critchley, D.
2007Conserved Glu40 and Glu433 of the biotin carboxylase domain of yeast pyruvate carboxylase I isoenzyme are essential for the association of tetramersJitrapakdee, S.; Surinya, K.; Adina-Zada, A.; Polyak, S.; Stojkoski, C.; Smyth, R.; Booker, G.; Cleland, W.; Attwood, P.; Wallace, J.
2006The molecular basis of filamin binding to integrins and competition with talinKiema, T.; Lad, Y.; Jiang, P.; Oxley, C.; Baldassarre, M.; Wegener, K.; Campbell, I.; Ylanne, J.; Calderwood, D.
2008Alanine scanning of a putative receptor binding surface of insulin-like growth factor-IGauguin, L.; Delaine, C.; Alvino, C.; McNeil, K.; Wallace, J.; Forbes, B.; De Meyts, P.
2011Structural analysis of the essential resuscitation promoting factor YeaZ suggests a mechanism of nucleotide regulation through dimer reorganizationAydin, I.; Saijo-Hamano, Y.; Namba, K.; Thomas, C.; Roujeinikova, A.; van Veen, H.W.