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1 139-substituted SIVmac239 gp120 did not bind jacalin.
2  strain NL4-3 was resistant to inhibition by jacalin.
3  were resistant to the inhibitory effects of jacalin.
4                                              Jacalin (a lectin) inhibits ookinete attachment by maski
5 .6 +/- 1.7 x 10(6) M(-)(1) were obtained for jacalin adsorbing to a galactose surface and ConA adsorb
6 emonstrating that the core 1-specific lectin jacalin almost completely abrogated laminin-induced AChR
7 ation (K(D)) constant for the interaction of jacalin and galactose was found to be 16 +/- 5 microM, a
8 O-glycosylation as detected by staining with jacalin and peanut agglutinin lectins after 30 min of tr
9 hymal apoptosis that followed a reduction in jacalin and peanut agglutinin staining.
10 chain of the Artocarpus integrifolia lectin, jacalin, and to several proteins that contain multiple r
11 interactions between ABA, MIR842, MIR846 and jacalins are similar in A. lyrata.
12 with accumulation of an ABA-inducible target jacalin At5g28520 mRNA, whose cleavage was shown by modi
13  that alpha-dystroglycan was the predominant jacalin-binding protein detected in C2C12 myotube lysate
14 ated that the O-glycan-specific plant lectin jacalin binds Dsg1 and inhibits the interaction of Dsg1/
15 g by directly binding to alpha-dystroglycan, jacalin had no effect on laminin binding to the myotube
16  hyposialylated glycans, used WGA, SNA, PNA, Jacalin, HPA, and VVA, indicating glomerular hyposialyla
17                    Subcutaneous injection of jacalin into neonatal mice drastically reduced PF IgG de
18 e mixtures of lectins concanavalin A (ConA), jacalin (JAC), and wheat germ agglutinin (WGA).
19     The carbohydrate-binding protein VER2, a jacalin lectin, promotes TaVRN1 upregulation by physical
20 e monoclonal antibodies HMFG-2 and OC125 and jacalin lectin, respectively.
21  previously cloned and characterized a novel jacalin-like lectin gene from wheat (Triticum aestivum)
22  proteins that contain multiple repeats of a jacalin-like sequence.
23                                     Although jacalin likely inhibited laminin-induced AChR clustering
24 by RNA interference abolished the effects of jacalin on PP2A activation and MEK inhibition.
25 n is not involved in the interaction of Dsg1/jacalin or Dsg1/PF IgG.
26                                         Like jacalin, peanut agglutinin lectin also binds the core 1
27 isease response or "dirigent" domain and the jacalin-related lectin (JRL) domain.
28                      The identification of a jacalin-related lectin in a true fern reveals for the fi
29                                  BanLec is a jacalin-related lectin isolated from the fruit of banana
30 identity and showed structural similarity to jacalin-related lectins.
31 taining modular organizations of one or more jacalin repeat units and are implicated in defense again
32  a 128-to-139-substituted variant gp120 from jacalin-resistant SIV lacked O-linked carbohydrate.
33                               Selection of a jacalin-resistant SIVmac239 variant population resulted
34 ements with A. thaliana and candidate target jacalins, similar primary transcript structures and intr
35 20s from four SIVmac and SIVsm strains bound jacalin strongly in an enzyme-linked immunosorbent assay
36 aminopeptidase N (AgAPN1) as the predominant jacalin target on the mosquito midgut luminal surface an
37             The ability or inability to bind jacalin thus correlated with the presence of the serine-
38 e-binding proteins concanavalin A (ConA) and jacalin to arrays composed of the monosaccharides mannos
39 y, these results suggest that the binding of jacalin to O-linked TF carbohydrate motifs on Dsg1 impai
40 n isotherms for the interactions of ConA and jacalin to the carbohydrate surfaces, (ii) monitor prote
41 ilibrium dissociation constants for ConA and jacalin toward mannose and galactose, respectively.
42 how that lectin protein from jackfruit seed (jacalin), which binds to non- and monosialylated core 1
43 iproliferative effect of the dietary lectin, jacalin, which binds the Thomsen-Friedenreich antigen (g
44 sequence predictions, two HIV-2 gp120s bound jacalin, while one did not.
45 e-fold pseudo-symmetry of the related lectin jacalin, with the 21-residue beta-chains in the center o

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