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1.
Biochimie ; 93(3): 513-8, 2011 Mar.
Article in English | MEDLINE | ID: mdl-21108987

ABSTRACT

The LYS49-PLA2s myotoxins have attracted attention as models for the induction of myonecrosis by a catalytically independent mechanism of action. Structural studies and biological activities have demonstrated that the myotoxic activity of LYS49-PLA2 is independent of the catalytic activity site. The myotoxic effect is conventionally thought to be to due to the C-terminal region 111-121, which plays an effective role in membrane damage. In the present study, Bn IV LYS49-PLA2 was isolated from Bothrops neuwiedi snake venom in complex with myristic acid (CH3(CH2)12COOH) and its overall structure was refined at 2.2 Å resolution. The Bn IV crystals belong to monoclinic space group P21 and contain a dimer in the asymmetric unit. The unit cell parameters are a = 38.8, b = 70.4, c = 44.0 Å. The biological assembly is a "conventional dimer" and the results confirm that dimer formation is not relevant to the myotoxic activity. Electron density map analysis of the Bn IV structure shows clearly the presence of myristic acid in catalytic site. The relevant structural features for myotoxic activity are located in the C-terminal region and the Bn IV C-terminal residues NKKYRY are a probable heparin binding domain. These findings indicate that the mechanism of interaction between Bn IV and muscle cell membranes is through some kind of cell signal transduction mediated by heparin complexes.


Subject(s)
Bothrops , Lysine , Myristic Acid/metabolism , Phospholipases A2/chemistry , Phospholipases A2/metabolism , Viper Venoms/enzymology , Amino Acid Sequence , Animals , Binding Sites , Crystallography, X-Ray , Heparin/metabolism , Models, Molecular , Molecular Sequence Data , Protein Multimerization , Protein Structure, Quaternary , Sequence Analysis, DNA
2.
J Struct Biol ; 164(2): 177-82, 2008 Nov.
Article in English | MEDLINE | ID: mdl-18682294

ABSTRACT

The legume lectins from the subtribe Diocleinae, often referred to as concanavalin A-like lectins, are a typical example of highly similar proteins that show distinct biological activities. The pH-dependent oligomerization that some of these lectins undergo and the relative position of amino acids within the carbohydrate-binding site are factors that have been reported to contribute to these differences in the activities of Diocleinae lectins. In the present work, we determined the amino acid sequence and the crystal structure of the lectin of Dioclea rostrata seeds (DRL), with the aim of investigating the structural bases of the different behavior displayed by this lectin in comparison to other Diocleinae lectins and determining the reason for the distinct pH-dependent dimer-tetramer equilibrium. In addition, we discovered a novel multimeric arrangement for this lectin.


Subject(s)
Carbohydrates/chemistry , Dioclea/chemistry , Protein Multimerization , Amino Acid Sequence , Crystallography, X-Ray , Hydrogen-Ion Concentration , Plant Lectins/chemistry , Plant Lectins/metabolism , Protein Binding , Protein Conformation , Seeds/chemistry
3.
Appl Biochem Biotechnol ; 150(1): 97-111, 2008 Jul.
Article in English | MEDLINE | ID: mdl-18568300

ABSTRACT

A lectin-like protein from the seeds of Acacia farnesiana was isolated from the albumin fraction, characterized, and sequenced by tandem mass spectrometry. The albumin fraction was extracted with 0.5 M NaCl, and the lectin-like protein of A. farnesiana (AFAL) was purified by ion-exchange chromatography (Mono-Q) followed by chromatofocusing. AFAL agglutinated rabbit erythrocytes and did not agglutinate human ABO erythrocytes either native or treated with proteolytic enzymes. In sodium dodecyl sulfate gel electrophoresis under reducing and nonreducing conditions, AFAL separated into two bands with a subunit molecular mass of 35 and 50 kDa. The homogeneity of purified protein was confirmed by chromatofocusing with a pI = 4.0 +/- 0.5. Molecular exclusion chromatography confirmed time-dependent oligomerization in AFAL, in accordance with mass spectrometry analysis, which confers an alteration in AFAL affinity for chitin. The protein sequence was obtained by a liquid chromatography quadrupole time-of-flight experiment and showed that AFAL has 68% and 63% sequence similarity with lectins of Phaseolus vulgaris and Dolichos biflorus, respectively.


Subject(s)
Acacia/chemistry , Plant Lectins/isolation & purification , Seeds/chemistry , Amino Acid Sequence , Chitin/chemistry , Chromatography, Affinity , Chromatography, Gel , Chromatography, Ion Exchange , Fabaceae , Mass Spectrometry , Molecular Sequence Data , Molecular Weight , Plant Lectins/analysis , Plant Lectins/chemistry , Sequence Alignment , Sequence Analysis, Protein , Tandem Mass Spectrometry
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