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1.
Int J Biol Macromol ; 64: 435-42, 2014 Mar.
Article in English | MEDLINE | ID: mdl-24393613

ABSTRACT

A novel lectin, HGA-2, was isolated from the sea cucumber Holothuria grisea. The protein was isolated by a single chromatographic step using a column of Guar Gum as affinity. HGA-2 showed an apparent molecular mass of 17 kDa and 34 kDa under reducing and nonreducing conditions, respectively. The hemagglutinating activity was specific for rabbit erythrocytes, showing no activity for human blood A, B and O. Its hemagglutinating activity was inhibited by carbohydrates containing galactose, with higher affinity for GalNAc and glycoprotein porcine stomach mucin (PSM). HGA-2 was stable at pH 6-10, significantly declining at pH 5 and a temperature of 40°C, with its activity being abolished at 100 °C. The HGA-2 protein was found to be Ca(2+)-dependent; it was highly toxic against Artemia nauplii and able to recognize and agglutinate cells of Escherichia coli. Amino acid sequences of tryptic peptides of HGA-2 strongly suggest that HGA-2 is a member of the C-type lectin family.


Subject(s)
Agglutinins/chemistry , Agglutinins/metabolism , Escherichia coli/metabolism , Galactosides/metabolism , Holothuria/chemistry , Lectins/chemistry , Lectins/metabolism , Agglutinins/isolation & purification , Agglutinins/toxicity , Amino Acid Sequence , Animals , Hemagglutination , Hemagglutination Tests , Humans , Hydrogen-Ion Concentration , Ions , Lectins/isolation & purification , Lectins/toxicity , Lectins, C-Type , Molecular Sequence Data , Rabbits , Sequence Alignment , Temperature
2.
Int J Biochem Cell Biol ; 45(12): 2864-73, 2013 Dec.
Article in English | MEDLINE | ID: mdl-24144578

ABSTRACT

A new lectin from the marine sponge Haliclona caerulea (H-3) was isolated using a combination of hydrophobic interaction chromatography and ion-exchange chromatography. H-3 is a protein with three distinct bands on SDS-PAGE: 9 kDa, 16 kDa and 18 kDa. Nevertheless, on gel filtration and N-PAGE, H-3 showed a symmetrical peak and a unique band, respectively. Hemagglutinating activity of H-3 was stable at neutral pH and temperatures up to 60 °C. N-Acetylgalactosamine and porcine stomach mucin were the most potent inhibitors of H-3. Primary structure of the lectin was determined using tandem mass spectrometry, and it showed no similarity to any members of the animal lectin families. Top down fragmentation revealed some posttranslational modifications in H-3, including glycosylation. The glycan composition of H-3 was determined, and its structure was predicted. Furthermore, H-3 is a blue protein, binding to a chromophore(-597) by weak interactions, and this is the first time that the interaction between one lectin and a natural chromophore has been shown.


Subject(s)
Haliclona/chemistry , Lectins/chemistry , Animals , Chromatography, Gel , Glycosylation , Lectins/isolation & purification , Lectins/pharmacology , Mass Spectrometry/methods
3.
J Mol Recognit ; 26(1): 51-8, 2013 Jan.
Article in English | MEDLINE | ID: mdl-23280618

ABSTRACT

Two new lectins named Halilectin 1 (H-1) and Halilectin 2 (H-2) were isolated from the marine sponge Haliclona caerulea using a combination of affinity chromatography on stroma fixed onto Sephadex G-25 and cation and anion exchange chromatography. H-1 is a monomeric protein with a molecular mass of 40 kDa estimated using sodium dodecyl sulfate polyacrylamide gel electrophoresis and 15 kDa estimated using a TSK gel. Conversely, H-2 is a homodimeric protein with 15 kDa monomers linked via weak interactions. H-1 more effectively agglutinates trypsinized rabbit erythrocytes, whereas H-2 more effectively agglutinates native rabbit erythrocytes. The hemagglutinating activity of H-1 could be not inhibited by any tested sugars, but H-2 was inhibited by orosomucoid and porcine stomach mucin. Neither lectin was dependent on divalent ions. H-1 was stable at basic pH range and temperatures up to 50 °C, whereas H-2 was stable at acid pH range and temperatures up to 80 °C. The H. caerulea lectins exhibited dose-dependent toxicity against Artemia nauplii. Additionally, 76% of the primary structure of H-2 was determined using tandem mass spectrometry to contain a unique amino acid sequence with no similarity to any members of the animal lectin family.


Subject(s)
Haliclona/chemistry , Lectins/chemistry , Lectins/pharmacology , Porifera/chemistry , Amino Acid Sequence , Animals , Artemia/drug effects , Base Sequence , Chromatography/methods , Erythrocytes/drug effects , Hemagglutination/drug effects , Hemagglutination Tests/methods , Hydrogen-Ion Concentration , Molecular Sequence Data , Molecular Weight , Rabbits , Tandem Mass Spectrometry/methods , Temperature
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