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1.
BMC Biotechnol ; 11: 14, 2011 Feb 07.
Artigo em Inglês | MEDLINE | ID: mdl-21299880

RESUMO

BACKGROUND: Asian rust (Phakopsora pachyrhizi) is a common disease in Brazilian soybean fields and it is difficult to control. To identify a biochemical candidate with potential to combat this disease, a new chitinase-like xylanase inhibitor protein (XIP) from coffee (Coffea arabica) (CaclXIP) leaves was cloned into the pGAPZα-B vector for expression in Pichia pastoris. RESULTS: A cDNA encoding a chitinase-like xylanase inhibitor protein (XIP) from coffee (Coffea arabica) (CaclXIP), was isolated from leaves. The amino acid sequence predicts a (ß/α)8 topology common to Class III Chitinases (glycoside hydrolase family 18 proteins; GH18), and shares similarity with other GH18 members, although it lacks the glutamic acid residue essential for catalysis, which is replaced by glutamine. CaclXIP was expressed as a recombinant protein in Pichia pastoris. Enzymatic assay showed that purified recombinant CaclXIP had only residual chitinolytic activity. However, it inhibited xylanases from Acrophialophora nainiana by approx. 60% when present at 12:1 (w/w) enzyme:inhibitor ratio. Additionally, CaclXIP at 1.5 µg/µL inhibited the germination of spores of Phakopsora pachyrhizi by 45%. CONCLUSIONS: Our data suggests that CaclXIP belongs to a class of naturally inactive chitinases that have evolved to act in plant cell defence as xylanase inhibitors. Its role on inhibiting germination of fungal spores makes it an eligible candidate gene for the control of Asian rust.


Assuntos
Basidiomycota/efeitos dos fármacos , Quitinases/farmacologia , Café/enzimologia , Xilosidases/antagonistas & inibidores , Sequência de Aminoácidos , Basidiomycota/fisiologia , Quitinases/química , Quitinases/genética , Quitinases/metabolismo , Clonagem Molecular , Café/genética , Eletroforese em Gel de Poliacrilamida , Germinação/efeitos dos fármacos , Anotação de Sequência Molecular , Dados de Sequência Molecular , Proteínas de Plantas/química , Proteínas de Plantas/genética , Proteínas de Plantas/metabolismo , Proteínas de Plantas/farmacologia , Alinhamento de Sequência , Glycine max/microbiologia , Esporos Fúngicos/efeitos dos fármacos
2.
J Biotechnol ; 125(2): 198-209, 2006 Sep 01.
Artigo em Inglês | MEDLINE | ID: mdl-16621087

RESUMO

The conversion of lignocellulosic biomass to fuel ethanol typically involves a disruptive pretreatment process followed by enzyme-catalyzed hydrolysis of the cellulose and hemicellulose components to fermentable sugars. Attempts to improve process economics include protein engineering of cellulases, xylanases and related hydrolases to improve their specific activity or stability. However, it is recognized that enzyme performance is reduced during lignocellulose hydrolysis by interaction with lignin or lignin-carbohydrate complex (LCC), so the selection or engineering of enzymes with reduced lignin interaction offers an alternative means of enzyme improvement. This study examines the inhibition of seven cellulase preparations, three xylanase preparations and a beta-glucosidase preparation by two purified, particulate lignin preparations derived from softwood using an organosolv pretreatment process followed by enzymatic hydrolysis. The two lignin preparations had similar particle sizes and surface areas but differed significantly in other physical properties and in their chemical compositions determined by a 2D correlation HSQC NMR technique and quantitative 13C NMR spectroscopy. The various cellulases differed by up to 3.5-fold in their inhibition by lignin, while the xylanases showed less variability (< or = 1.7-fold). Of all the enzymes tested, beta-glucosidase was least affected by lignin.


Assuntos
Celulases/antagonistas & inibidores , Lignina/farmacologia , Madeira , Xilosidases/antagonistas & inibidores , beta-Glucosidase/antagonistas & inibidores , Celulases/metabolismo , Ativação Enzimática/efeitos dos fármacos , Lignina/química , Lignina/isolamento & purificação , Espectroscopia de Ressonância Magnética , Estrutura Molecular , Peso Molecular , Preparações de Plantas/química , Preparações de Plantas/isolamento & purificação , Preparações de Plantas/farmacologia , Xilosidases/metabolismo , beta-Glucosidase/metabolismo
3.
J Biol Chem ; 277(50): 49055-64, 2002 Dec 13.
Artigo em Inglês | MEDLINE | ID: mdl-12368281

RESUMO

Pollen coat contains ingredients that interact with the stigma surface during sexual reproduction. In maize (Zea mays L.) pollen coat, the predominant protein is a 35-kDa endoxylanase, whose mRNA is located in the tapetum cells enclosing the maturing pollen in the anthers. This 2.0-kb mRNA was found to have an open reading frame of 1,635 nucleotides encoding a 60-kDa pre-xylanase. In developing anthers, the pre-xylanase protein appeared prior to the 35-kDa xylanase protein and enzyme activity and then peaked and declined, whereas the 35-kDa xylanase protein and activity continued to increase until anther maturation. An acid protease in the anther extract converted the inactive pre-xylanase to the active 35-kDa xylanase in vitro. The protease activity was inhibited by inhibitors of serine proteases but unaffected by inhibitors of cysteine, aspartic, or metallic proteases. Sequence analysis revealed that the 60-kDa pre-xylanase was converted to the 35-kDa xylanase with the removal of 198 and 48 residues from the N and C termini, respectively. During in vitro and in vivo conversions, no intermediates of 60-35 kDa were observed, and the 35-kDa xylanase was highly stable. The pre-xylanase was localized in the tapetum-containing anther wall, whereas the 35-kDa xylanase was found in the pollen coat. The significance of having a large non-active pre-xylanase and the mode of transfer of the xylanase to the pollen coat are discussed. A gene encoding the barley (Hordeum vulgare L.) tapetum xylanase was cloned; this gene and the gene encoding the seed aleurone-layer xylanase had strict tissue-specific expressions.


Assuntos
Precursores Enzimáticos/biossíntese , Pólen/enzimologia , Xilosidases/biossíntese , Zea mays/enzimologia , Sequência de Aminoácidos , Sequência de Bases , DNA de Plantas , Ativação Enzimática , Precursores Enzimáticos/metabolismo , Hordeum/genética , Dados de Sequência Molecular , Fases de Leitura Aberta , RNA Mensageiro/genética , Homologia de Sequência de Aminoácidos , Xilano Endo-1,3-beta-Xilosidase , Xilosidases/antagonistas & inibidores , Xilosidases/genética , Xilosidases/metabolismo
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