On the stringent requirement of mannosyl substitution in mannooligosaccharides for the recognition by garlic (Allium sativum) lectin. A Surface Plasmon Resonance Study

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On the stringent requirement of mannosyl substitution in mannooligosaccharides for the recognition by garlic (Allium sativum) lectin. A Surface Plasmon Resonance Study is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1074/JBC.M009533200
P698PubMed publication ID11076955

P2093author name stringThomas CJ
Surolia A
Amutha B
Bachhawat K
Khan MI
Krishnasastry MV
P2860cites workTHE ATTRACTIONS OF PROTEINS FOR SMALL MOLECULES AND IONSQ26778400
Colorimetric Method for Determination of Sugars and Related SubstancesQ26778459
Insights into carbohydrate recognition by Narcissus pseudonarcissus lectin: the crystal structure at 2 A resolution in complex with alpha1-3 mannobioseQ27618879
Structure of the native (unligated) mannose-specific bulb lectin from Scilla campanulata (bluebell) at 1.7 A resolutionQ27618927
Structure of mannose-specific snowdrop (Galanthus nivalis) lectin is representative of a new plant lectin familyQ27729876
A novel mode of carbohydrate recognition in jacalin, a Moraceae plant lectin with a beta-prism foldQ27732867
Crystal structure of a dimeric mannose-specific agglutinin from garlic: quaternary association and carbohydrate specificityQ27766481
Lectin-carbohydrate interactions: fine specificity difference between two mannose-binding proteinsQ28577989
Rapid measurement of binding constants and heats of binding using a new titration calorimeterQ29547842
Surface plasmon resonance studies resolve the enigmatic endotoxin neutralizing activity of polymyxin B.Q33876349
Kinetics and the mechanism of interaction of the endoplasmic reticulum chaperone, calreticulin, with monoglucosylated (Glc1Man9GlcNAc2) substrateQ38312075
Garlic (Allium sativum) lectins bind to high mannose oligosaccharide chainsQ38338675
The closely related homomeric and heterodimeric mannose-binding lectins from garlic are encoded by one-domain and two-domain lectin genes, respectivelyQ42602608
Cloning and characterization of a monocot mannose-binding lectin from Crocus vernus (family Iridaceae).Q47839874
X-ray structure solution of amaryllis lectin by molecular replacement with only 4% of the total diffracting matterQ47984168
Structure-function relationship of monocot mannose-binding lectinsQ48057349
β-Trefoil foldQ56339973
Binding of 4-methylumbelliferyl alpha-D-mannopyranoside to dimeric concanavalin A: fluorescence temperature-jump relaxation studyQ67547488
Immobilization of proteins to a carboxymethyldextran-modified gold surface for biospecific interaction analysis in surface plasmon resonance sensorsQ67711120
P433issue8
P407language of work or nameEnglishQ1860
P921main subjectgarlicQ23400
surface plasmon resonanceQ898756
garlicQ21546392
P304page(s)5541-5546
P577publication date2000-11-13
P1433published inJournal of Biological ChemistryQ867727
P1476titleOn the stringent requirement of mannosyl substitution in mannooligosaccharides for the recognition by garlic (Allium sativum) lectin. A Surface Plasmon Resonance Study
P478volume276

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cites work (P2860)
Q36063060A supramolecular approach to protein labeling. A novel fluorescent bioassay for concanavalin a activity
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Q38304971Phylogenetic and specificity studies of two-domain GNA-related lectins: generation of multispecificity through domain duplication and divergent evolution.
Q90668130Purification, primary structure, and biological activity of the high-mannose N-glycan-specific lectin from cultivated Eucheuma denticulatum
Q38012677Receptors of garlic (Allium sativum) lectins and their role in insecticidal action
Q38305332Strict specificity for high-mannose type N-glycans and primary structure of a red alga Eucheuma serra lectin
Q42099884Surface plasmon resonance study of protein-carbohydrate interactions using biotinylated sialosides
Q27675776The Carbohydrate-Binding Site in Galectin-3 Is Preorganized To Recognize a Sugarlike Framework of Oxygens: Ultra-High-Resolution Structures and Water Dynamics
Q51528449Two carbohydrate recognizing domains from Cycas revoluta leaf lectin show the distinct sugar-binding specificity-A unique mannooligosaccharide recognition by N-terminal domain.

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