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Science (New York, N.Y.)|December 12, 2001
Structural basis for selective recognition of oligosaccharides by DC-SIGN and DC-SIGNRH Feinberg, D A Mitchell, K Drickamer, et al.The Journal of Biological Chemistry|August 10, 2000
Mechanism of pH-dependent N-acetylgalactosamine binding by a functional mimic of the hepatocyte asialoglycoprotein receptorH Feinberg, D Torgersen, K Drickamer, et al.Structure (London, England : 1993)|December 15, 1994
Trimeric structure of a C-type mannose-binding proteinW I Weis, K DrickamerAnnual Review of Biochemistry|January 1, 1996
Structural basis of lectin-carbohydrate recognitionW I Weis, K DrickamerThe Journal of Biological Chemistry|January 12, 1996
Structural analysis of monosaccharide recognition by rat liver mannose-binding proteinK K Ng, K Drickamer, W I WeisImmunological Reviews|August 13, 1998
The C-type lectin superfamily in the immune systemW I Weis, M E Taylor, K DrickamerNature|November 12, 1992
Structure of a C-type mannose-binding protein complexed with an oligosaccharideW I Weis, K Drickamer, W A HendricksonScience (New York, N.Y.)|December 13, 1991
Structure of the calcium-dependent lectin domain from a rat mannose-binding protein determined by MAD phasingW I Weis, R Kahn, R Fourme, et al.The Journal of Biological Chemistry|June 1, 2001
A novel mechanism of carbohydrate recognition by the C-type lectins DC-SIGN and DC-SIGNR. Subunit organization and binding to multivalent ligandsD A Mitchell, A J Fadden, K DrickamerThe Journal of Biological Chemistry|June 3, 1994
Binding of sugar ligands to Ca(2+)-dependent animal lectins. I. Analysis of mannose binding by site-directed mutagenesis and NMRS T Iobst, M R Wormald, W I Weis, et al.Pageof 35