Literature DB >> 18786582

Isolation, characterization and cloning of a cDNA encoding a new antifungal defensin from Phaseolus vulgaris L. seeds.

Patrícia D Games1, Izabela S Dos Santos, Erica O Mello, Mariângela S S Diz, André O Carvalho, Gonçalo A de Souza-Filho, Maura Da Cunha, Ilka M Vasconcelos, Beatriz Dos S Ferreira, Valdirene M Gomes.   

Abstract

The PvD1 defensin was purified from Phaseolus vulgaris (cv. Pérola) seeds, basically as described by Terras et al. [Terras FRG, Schoofs HME, De Bolle MFC, Van Leuven F, Ress SB, Vanderleyden J, Cammue BPA, Broekaer TWF. Analysis of two novel classes of plant antifungal proteins from radish (Raphanus sativus L.) seeds. J Biol Chem 1992;267(22):15301-9], with some modifications. A DEAE-Sepharose, equilibrated with 20mM Tris-HCl, pH 8.0, was initially utilized for the separation of peptides after ammonium sulfate fractionation. The basic fraction (the non-retained peak) obtained showed the presence of one unique band in SDS-Tricine gel electrophoresis with a molecular mass of approximately 6kDa. The purification of this peptide was confirmed after a reverse-phase chromatography in a C2/C18 column by HPLC, where once again only one peak was observed and denominated H1. H1 was submitted to N-terminal sequencing and the comparative analysis in databanks revealed high similarity with sequences of different defensins isolated from other plants species. The N-terminal sequence of the mature defensin isolated was used to produce a degenerated primer. This primer allowed the amplification of the defensin cDNA by RT-PCR from mRNA of P. vulgaris seeds. The sequence analysis of the cloned cDNA, named PVD1, demonstrated 314bp encoding a polypeptide of 47 amino acids. The deduced peptide presented high similarity with plant defensins of Vigna unguiculata (93%), Cicer arietinum (95%) and Pachyrhizus erosus (87%). PvD1 inhibited the growth of the yeasts, Candida albicans, Candida parapsilosis, Candida tropicalis, Candida guilliermondii, Kluyveromyces marxiannus and Saccharomyces cerevisiae. PvD1 also presented an inhibitory activity against the growth of phytopathogenic fungi including Fusarium oxysporum, Fusarium solani, Fusarium lateritium and Rizoctonia solani.

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Year:  2008        PMID: 18786582     DOI: 10.1016/j.peptides.2008.08.008

Source DB:  PubMed          Journal:  Peptides        ISSN: 0196-9781            Impact factor:   3.750


  15 in total

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2.  Antifungal activity of PvD1 defensin involves plasma membrane permeabilization, inhibition of medium acidification, and induction of ROS in fungi cells.

Authors:  Erica O Mello; Suzanna F F Ribeiro; André O Carvalho; Izabela S Santos; Maura Da Cunha; Claudete Santa-Catarina; Valdirene M Gomes
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3.  Analysis of common bean expressed sequence tags identifies sulfur metabolic pathways active in seed and sulfur-rich proteins highly expressed in the absence of phaseolin and major lectins.

Authors:  Fuqiang Yin; Agnieszka Pajak; Ralph Chapman; Andrew Sharpe; Shangzhi Huang; Frédéric Marsolais
Journal:  BMC Genomics       Date:  2011-05-26       Impact factor: 3.969

4.  Four plant defensins from an indigenous South African Brassicaceae species display divergent activities against two test pathogens despite high sequence similarity in the encoding genes.

Authors:  Abré de Beer; Melané A Vivier
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5.  Gene isolation and structural characterization of a legume tree defensin with a broad spectrum of antimicrobial activity.

Authors:  Susana Rodríguez-Decuadro; Pablo D Dans; María Alejandra Borba; Ana Maria Benko-Iseppon; Gianna Cecchetto
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Authors:  Patrícia M Silva; Sónia Gonçalves; Nuno C Santos
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8.  Functional expression and activity of the recombinant antifungal defensin PvD1r from Phaseolus vulgaris L. (common bean) seeds.

Authors:  Erica de O Mello; Izabela S dos Santos; André de O Carvalho; Luísa S de Souza; Gonçalo A de Souza-Filho; Viviane V do Nascimento; Olga L T Machado; Umberto Zottich; Valdirene M Gomes
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9.  PvD1 defensin, a plant antimicrobial peptide with inhibitory activity against Leishmania amazonensis.

Authors:  Viviane V do Nascimento; Érica de O Mello; Laís P Carvalho; Edésio J T de Melo; André de O Carvalho; Katia V S Fernandes; Valdirene M Gomes
Journal:  Biosci Rep       Date:  2015-08-18       Impact factor: 3.840

10.  Improved smallest peptides based on positive charge increase of the γ-core motif from D1 and their mechanism of action against Candida species.

Authors:  Érica de Oliveira Mello; Gabriel Bonan Taveira; André de Oliveira Carvalho; Valdirene Moreira Gomes
Journal:  Int J Nanomedicine       Date:  2019-01-09
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