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Biochemistry|June 30, 1987
GTP hydrolysis during microtubule assemblyE T O'Brien, W A Voter, H P EricksonStructure (London, England : 1993)|July 15, 1997
Backbone dynamics of homologous fibronectin type III cell adhesion domains from fibronectin and tenascinP A Carr, H P Erickson, A G PalmerAmerican Journal of Hematology|January 1, 1980
Fibrinogen Chapel Hill: hypodysfibrinogenemia with a tertiary polymerization defectR P McDonagh, N A Carrell, H R Roberts, et al.The New England Journal of Medicine|April 9, 1981
A naturally occurring antibody that inhibits fibrin polymerizationW K Hoots, N A Carrell, R H Wagner, et al.The Journal of Biological Chemistry|May 21, 1999
The compact conformation of fibronectin is determined by intramolecular ionic interactionsK J Johnson, H Sage, G Briscoe, et al.The EMBO Journal|June 19, 2001
Bimodal activation of SMC ATPase by intra- and inter-molecular interactionsM Hirano, D E Anderson, H P Erickson, et al.Molecular Biology of the Cell|June 1, 1996
Mitogenesis, cell migration, and loss of focal adhesions induced by tenascin-C interacting with its cell surface receptor, annexin IIC Y Chung, J E Murphy-Ullrich, H P EricksonJournal of Cell Science|November 1, 2001
XMAP215 is a long thin molecule that does not increase microtubule stiffnessL Cassimeris, D Gard, P T Tran, et al.Journal of Cell Science|September 1, 1993
Endothelial cells adhere to the RGD domain and the fibrinogen-like terminal knob of tenascinP Joshi, C Y Chung, I Aukhil, et al.The Journal of Cell Biology|April 18, 2000
Defining fibronectin's cell adhesion synergy site by site-directed mutagenesisS D Redick, D L Settles, G Briscoe, et al.Pageof 12