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1.
Colloids Surf B Biointerfaces ; 116: 201-5, 2014 Apr 01.
Artigo em Inglês | MEDLINE | ID: mdl-24480067

RESUMO

Trypsin adsorption from aqueous buffer by various copolymers of allyl glycidyl ether-ethylene glycol dimethacrylate (AGE-EGDM) copolymer with varying crosslink density increases with increasing crosslink density and the effect slowly wears off after reaching a plateau at 50% crosslink density. The copolymer with 25% crosslink density was reacted with different amines with alkyl/aryl side chains to obtain a series of copolymers with 1,2-amino alcohol functional groups and varying hydrophobicity. Trypsin binding capacity again increases with hydrophobicity of the reacting amine and a good correlation between logPoctanol of the amine and protein binding is observed. The bound trypsin is denatured to the extent of 90% in spite of the presence of hydrophilic hydroxyl and amino groups. The behavior was comparable to that in mixtures of aqueous buffer and water-miscible organic co-solvents where the solvent concentration required to deactivate 50% of the enzyme (C50) is dependent on logPoctanol of the co-solvent.


Assuntos
Polímeros/química , Tripsina/química , Adsorção , Enzimas Imobilizadas/química , Enzimas Imobilizadas/metabolismo , Interações Hidrofóbicas e Hidrofílicas , Desnaturação Proteica , Solventes/química , Propriedades de Superfície , Tripsina/metabolismo
2.
Biotechnol Prog ; 30(2): 317-23, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-24449609

RESUMO

Allyl glycidyl ether (AGE)-ethylene glycol dimethacrylate (EGDM) copolymer with 25% crosslink density (AGE-25) shows excellent bovine serum albumin (BSA) adsorption (up to 16% (w/w)) at pH 8.0 and the adsorbed BSA is strongly bound. This protein-coated polymer provides a novel matrix with naturally existing functional groups such as thiol, amino, and carboxylic acid that are available for covalent immobilization of functional enzymes. Employing appropriate strategies, trypsin as a model protein was covalently bound to BSA-coated matrix both independently, and in a stepwise manner on the same matrix, with less than 5% loss of enzyme activity during immobilization. Glutaraldehyde crosslinking after immobilization provide stable enzyme preparation with activity of 510 units/g recycled up to six times without loss of enzyme activity. AFM studies reveal that the polymer surface has protein peaks and valleys rather than a uniform monolayer distribution of the protein and the immobilized enzyme preparation can best be described as polymer supported cross-linked enzyme aggregates (CLEAs).


Assuntos
Enzimas Imobilizadas/química , Compostos de Epóxi/química , Metacrilatos/química , Soroalbumina Bovina/química , Tripsina/química , Animais , Bovinos , Estabilidade Enzimática , Enzimas Imobilizadas/metabolismo , Concentração de Íons de Hidrogênio , Ligação Proteica , Soroalbumina Bovina/metabolismo , Temperatura , Tripsina/metabolismo
3.
Colloids Surf B Biointerfaces ; 90: 184-90, 2012 Feb 01.
Artigo em Inglês | MEDLINE | ID: mdl-22056082

RESUMO

The effects of protein size on adsorption and adsorption-induced denaturation of proteins on copolymers of allyl glycidyl ether (AGE)-ethylene glycol dimethacrylate (EGDM) have been studied. Different responses were observed for the amount of protein adsorbed and denatured on the polymer surface for different proteins (trypsin, alchol dehydrogenase from baker's yeast (YADH), glucose dehydrogenase (GDH) from Gluconobacter cerinus, and alkaline phosphates from calf intestinal mucosa (CIAP). Protein adsorption on the copolymer with 25% crosslink density (AGE-25) was dependent not only on the size of the protein but also on the presence of glycoside residues on the protein surface. Adsorption and denaturation of proteins follows the order YADH>trypsin>GDH>>CIAP although the molecular weights of the proteins follow the order YADH>CIAP>GDH>trypsin. The lack of correlation between amount of adsorbed protein and its molecular weight was due to the presence of glycoside residues on CIAP and GDH which protect the enzyme surface from denaturation. Enzyme stabilities in aqueous solutions of 1-cyclohexyl-2-pyrrolidinone (CHP) correlate well with the trend in denaturation by the copolymer, strongly suggesting that hydrophobic interactions play a major role in protein binding and the mechanism of protein denaturation is similar to that for water-miscible organic solvents.


Assuntos
Álcool Desidrogenase/química , Fosfatase Alcalina/química , Biotecnologia , Glucose 1-Desidrogenase/química , Glicosídeos/química , Tripsina/química , Adsorção , Álcool Desidrogenase/metabolismo , Fosfatase Alcalina/metabolismo , Animais , Bovinos , Estabilidade Enzimática , Compostos de Epóxi/química , Compostos de Epóxi/metabolismo , Gluconobacter , Glucose 1-Desidrogenase/metabolismo , Glicosídeos/metabolismo , Interações Hidrofóbicas e Hidrofílicas , Metacrilatos/química , Metacrilatos/metabolismo , Peso Molecular , Ligação Proteica , Desnaturação Proteica , Saccharomyces cerevisiae , Soluções , Propriedades de Superfície , Tripsina/metabolismo
4.
Langmuir ; 26(2): 1096-106, 2010 Jan 19.
Artigo em Inglês | MEDLINE | ID: mdl-19994900

RESUMO

Effects of changes in hydrophobicity of polymeric support on structure and activity of alpha-chymotrypsin (E.C. 3.4.21.1) have been studied with copolymers of allyl glycidyl ether (AGE) and ethylene glycol dimethacrylate (EGDM) with increasing molar ratio of EGDM to AGE (cross-link density 0.05 to 1.5). The enzyme is readily adsorbed from aqueous buffer at room temperature following Langmuir adsorption isotherms in unexpectedly large amounts (25% w/w). Relative hydrophobicity of the copolymers has been assessed by studying adsorption of naphthalene and Fmoc-methionine by the series of copolymers from aqueous solutions. Polymer hydrophobicity appears to increase linearly on increasing cross-link density from 0.05 to 0.25. Further increase in cross-link density causes a decrease in naphthalene binding but has little effect on binding of Fmoc-Met. Binding of alpha-chymotrypsin to these copolymers follow the trend for Fmoc-methionine binding, rather than naphthalene binding, indicating involvement of polar interactions along with hydrophobic interactions during binding of protein to the polymer. The adsorbed enzyme undergoes extensive denaturation (ca. 80%) with loss of both tertiary and secondary structure on contact with the copolymers as revealed by fluorescence, CD and Raman spectra of the adsorbed protein. Comparison of enzyme adsorption behavior with Eupergit C, macroporous Amberlite XAD-2, and XAD-7 suggests that polar interactions of the EGDM ester functional groups with the protein play a significant role in enzyme denaturation.


Assuntos
Quimotripsina/química , Compostos de Epóxi/química , Metacrilatos/química , Polímeros/química , Adsorção , Dicroísmo Circular , Interações Hidrofóbicas e Hidrofílicas , Modelos Teóricos , Desnaturação Proteica , Análise Espectral Raman
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