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1.
Arch Biochem Biophys ; 596: 73-83, 2016 04 15.
Article in English | MEDLINE | ID: mdl-26946944

ABSTRACT

A glycosylated lectin (CTL) with specificity for mannose and glucose has been detected and purified from seeds of Centrolobium tomentosum, a legume plant from Dalbergieae tribe. It was isolated by mannose-sepharose affinity chromatography. The primary structure was determined by tandem mass spectrometry and consists of 245 amino acids, similar to other Dalbergieae lectins. CTL structures were solved from two crystal forms, a monoclinic and a tetragonal, diffracted at 2.25 and 1.9 Å, respectively. The carbohydrate recognition domain (CRD), metal-binding site and glycosylation site were characterized, and the structural basis for mannose/glucose-binding was elucidated. The lectin adopts the canonical dimeric organization of legume lectins. CTL showed acute inflammatory effect in paw edema model. The protein was subjected to ligand screening (dimannosides and trimannoside) by molecular docking, and interactions were compared with similar lectins possessing the same ligand specificity. This is the first crystal structure of mannose/glucose native seed lectin with proinflammatory activity isolated from the Centrolobium genus.


Subject(s)
Edema/chemically induced , Fabaceae/chemistry , Mannose-Binding Lectin , Molecular Docking Simulation , Plant Lectins , Seeds/chemistry , Amino Acid Sequence , Animals , Disease Models, Animal , Edema/pathology , Female , Glycosylation , Inflammation/chemically induced , Inflammation/pathology , Mannose-Binding Lectin/chemistry , Mannose-Binding Lectin/toxicity , Mass Spectrometry , Plant Lectins/chemistry , Plant Lectins/toxicity , Protein Footprinting , Rats , Rats, Wistar , Structure-Activity Relationship
2.
Molecules ; 18(9): 10857-69, 2013 Sep 04.
Article in English | MEDLINE | ID: mdl-24008245

ABSTRACT

Lectin from the seeds of Dioclea lasiophylla (DlyL) was purified in a single step by affinity chromatography on a Sephadex® G-50 column. DlyL strongly agglutinated rabbit erythrocytes and was inhibited by monosaccharides (D-mannose and α-methyl-D-mannoside) and glycoproteins (ovalbumin and fetuin). Similar to other Diocleinae lectins, DlyL has three chains, α, ß and γ, with mass of 25,569 ± 2, 12,998 ± 1 and 12,588 ± 1 Da, respectively, and has no disulfide bonds. The hemagglutinating activity of DlyL was optimal in pH 8.0, stable at a temperature of 70 °C and decreased in EDTA solution, indicating that lectin activity is dependent on divalent metals. DlyL exhibited low toxicity on Artemia sp. nauplii, but this effect was dependent on the concentration of lectin in solution. DlyL immobilized on cyanogen bromide-activated Sepharose® 4B bound 0.917 mg of ovalbumin per cycle, showing the ability to become a tool for glycoproteomics studies.


Subject(s)
Dioclea/chemistry , Hemagglutinins/pharmacology , Mannose-Binding Lectins/pharmacology , Plant Extracts/pharmacology , Seeds/chemistry , Animals , Artemia , Chelating Agents/chemistry , Chromatography, Affinity , Edetic Acid/chemistry , Erythrocytes/drug effects , Hemagglutination , Hemagglutinins/chemistry , Hemagglutinins/isolation & purification , Hydrogen-Ion Concentration , Lethal Dose 50 , Mannose-Binding Lectins/chemistry , Mannose-Binding Lectins/isolation & purification , Ovalbumin/chemistry , Plant Extracts/chemistry , Plant Extracts/isolation & purification , Protein Binding , Rabbits , Sepharose/chemistry
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