Publications
Found 11 results
Filters: Keyword is Camels and Author is Wyns, Lode [Clear All Filters]
"Atomic structure of a nanobody-trapped domain-swapped dimer of an amyloidogenic beta2-microglobulin variant.",
Proc Natl Acad Sci U S A, vol. 108, issue 4, pp. 1314-9, 2011 Jan 25.
"Engineering a camelid antibody fragment that binds to the active site of human lysozyme and inhibits its conversion into amyloid fibrils.",
Biochemistry, vol. 47, issue 42, pp. 11041-54, 2008 Oct 21.
"Molecular basis for the preferential cleft recognition by dromedary heavy-chain antibodies.",
Proc Natl Acad Sci U S A, vol. 103, issue 12, pp. 4586-91, 2006 Mar 21.
"Antigen binding and solubility effects upon the veneering of a camel VHH in framework-2 to mimic a VH.",
J Mol Biol, vol. 350, issue 1, pp. 112-25, 2005 Jul 1.
"Identification of a universal VHH framework to graft non-canonical antigen-binding loops of camel single-domain antibodies.",
J Mol Biol, vol. 352, issue 3, pp. 597-607, 2005 Sep 23.
"Reduced global cooperativity is a common feature underlying the amyloidogenicity of pathogenic lysozyme mutations.",
J Mol Biol, vol. 346, issue 3, pp. 773-88, 2005 Feb 25.
"Strong in vivo maturation compensates for structurally restricted H3 loops in antibody repertoires.",
J Biol Chem, vol. 280, issue 14, pp. 14114-21, 2005 Apr 8.
"Chemical basis for the affinity maturation of a camel single domain antibody.",
J Biol Chem, vol. 279, issue 51, pp. 53593-601, 2004 Dec 17.
"Crystal structure of the intrinsically flexible addiction antidote MazE.",
J Biol Chem, vol. 278, issue 30, pp. 28252-7, 2003 Jul 25.
"Recognition of the intrinsically flexible addiction antidote MazE by a dromedary single domain antibody fragment. Structure, thermodynamics of binding, stability, and influence on interactions with DNA.",
J Biol Chem, vol. 278, issue 16, pp. 14101-11, 2003 Apr 18.
"Single-domain antibody fragments with high conformational stability.",
Protein Sci, vol. 11, issue 3, pp. 500-15, 2002 Mar.