Lectins from Parkia biglobosa and Parkia platycephala: A comparative study of structure and biological effects

⿢We present the crystal structure of Parkia biglobosa seed lectin (PBL).⿢We evaluated the nociceptive effect of Parkia platycephala seed lectin (PPL) in acetic acid-induced writhes model.⿢PBL and PPL was submitted to molecular docking with carbohydrates.⿢We compared the three dimensional structures...

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Veröffentlicht in:International journal of biological macromolecules 2016-11, Vol.92, p.194-201
Hauptverfasser: Bari, Alfa Umaro, Santiago, Mayara Queiroz, Osterne, Vinicius Jose Silva, Pinto-Junior, Vanir Reis, Pereira, Lívia Paulo, Silva-Filho, Jose Caetano, Debray, Henri, Rocha, Bruno Anderson Matias, Delatorre, Plinio, Teixeira, Claudener Souza, Neto, Cornevile Correia, Assreuy, Ana Maria Sampaio, Nascimento, Kyria Santiago, Cavada, Benildo Sousa
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Sprache:eng
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Zusammenfassung:⿢We present the crystal structure of Parkia biglobosa seed lectin (PBL).⿢We evaluated the nociceptive effect of Parkia platycephala seed lectin (PPL) in acetic acid-induced writhes model.⿢PBL and PPL was submitted to molecular docking with carbohydrates.⿢We compared the three dimensional structures and biological effects of these lectins. The relation structure-activity of the Mimosoideae lectins of Parkia platycephala (PPL) and Parkia biglobosa (PBL) was analyzed in this study. PBL was solved by X-ray crystallography at a resolution of 2.1ÿ, and the crystal structure belonged to the C2221 space group. Structural organization and binding sites were also characterized. Specifically, PBL monomer consists of three β-prism domains tandemly arranged with each one presenting a different carbohydrate recognition domain (CRD). PPL showed antinociceptive activity in the mouse model of acetic acid-induced writhes with maximal inhibitory effect by 74% at 1mg/mL. PPL also demonstrated anti-inflammatory effect causing inhibition of leukocyte migration induced by both direct and indirect chemoattractants. These PPL activities were compared to that of PBL described previously. Molecular docking of both PBL and PPL demonstrated some differences in carbohydrate-lectin interaction energy. Comparing structure and biological effects of the two lectins provided new data about their structure and the relation with its biological activities.
ISSN:0141-8130
1879-0003
DOI:10.1016/j.ijbiomac.2016.07.032