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1 g mannose-binding lectin (MBL, also known as mannose-binding protein).
2 amples for the complex quadra-allelic SNP of mannose binding protein.
3 ceptors and other genes such as that for the mannose-binding protein.
4 gal pathogens in a manner analogous to serum mannose-binding protein.
5 ng geometry of alpha-methyl mannose bound to mannose-binding protein.
6 ncentrations and was preferentially bound by mannose-binding protein.
7 affect the interactions between T. cruzi and mannose-binding protein.
8 ional structure has been resolved is the rat mannose-binding protein.
9 -1 glycoproteins, as T. cruzi ligands of the mannose-binding protein.
10 o that which has been determined for the rat mannose-binding protein.
11 logous collectins, surfactant protein D, and mannose-binding protein.
12 al epithelium and (ii) expresses one or more mannose-binding proteins.
13 sults from mutations in either LMAN1 (lectin mannose-binding protein 1) or MCFD2 (multiple coagulatio
15 nc ions [e.g., thermolysin (PDB code: 3tln), mannose-binding protein (2msb), aminopeptidase (1amp)].
16 ty can be engineered into the homologous rat mannose-binding protein A by changing three amino acids
17 ed for a 230-residue dimeric fragment of rat mannose-binding protein A with the use of multiwavelengt
18 logous galactose-binding mutant of rat serum mannose-binding protein, a fourth region likely to inter
20 ding interactions that occur between the rat mannose-binding protein and its ligand (oligomannose) as
21 xplored the interaction of human recombinant mannose-binding protein and lipoteichoic acids (LTAs) by
22 racterization of the interaction between the mannose-binding protein and T. cruzi demonstrates that (
23 recent study has demonstrated that the human mannose-binding protein and the macrophage mannose recep
24 th alpha-mannosidase inhibits the binding of mannose-binding protein, and (iii) amastigote binding of
25 uctural requirements for binding through the mannose-binding protein carbohydrate recognition domain.
27 modified carbohydrate-recognition domain of mannose-binding protein forms a hydrogen bond to the imi
28 couplings from alpha-methyl mannose bound to mannose binding-protein in a dilute liquid crystalline m
31 ing protein, and (iii) amastigote binding of mannose-binding protein is stable despite the spontaneou
32 he mannose-binding lectin (MBL; also termed "mannose-binding protein") is a prototypic pattern-recogn
33 e mannose-binding lectin (MBL, also known as mannose-binding protein) is an oligomeric serum molecule
34 omastigotes but only amastigotes express the mannose-binding protein ligand, (ii) treatment of amasti
35 referential opsonization of amastigotes with mannose-binding proteins may account for their clearance
38 studies showing that acanthamoebae express a mannose-binding protein (MBP) and that free alpha-mannos
39 h-resolution crystal structures of rat serum mannose-binding protein (MBP) bound to one Ho3+ in place
40 rate recognition domain of the serum form of mannose-binding protein (MBP) from rat complexed with me
41 rties of a 53 kDa homomultimeric trimer from mannose-binding protein (MBP) have been investigated usi
45 the prevalence of mutations in the gene for mannose-binding protein (MBP), which have been associate
47 terozygous for mutant alleles encoding serum mannose-binding protein (MBP, also known as mannose-bind
48 ved by molecular replacement using rat serum mannose-binding protein (MBP-A) as a search model and wa
49 sis of carbohydrate recognition by rat liver mannose-binding protein (MBP-C) has been explored by det
50 ons within the collagen-like domain of human mannose-binding protein (MBP; also known as mannose-bind
55 s of selectin cell adhesion molecules and of mannose-binding proteins (MBPs) are similar to each othe
56 structures of the apo- and one-ion forms of mannose-binding proteins (MBPs) reveal that, when the Ca
57 ologous carbohydrate-recognition domain of a mannose-binding protein mutant that was previously alter
58 surface may involve interactions between the mannose-binding protein of Acanthamoeba and mannose-GPs
60 ding by TC14 with the mannose binding by rat mannose-binding protein reveals how monosaccharide speci
62 logous galactose-binding derivative of serum mannose-binding protein, the pH dependence of ligand bin
63 amine (GalNAc) reveal that as with wild-type mannose-binding proteins, the 3- and 4-OH groups of the
65 It has been established that the binding of mannose-binding protein to microorganisms facilitates th
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