Gold and silver nanoparticles for biomolecule immobilization and enzymatic catalysis

被引:93
作者
Petkova, Galina A. [1 ]
Zaruba, Kamil [1 ]
Zvatora, Pavel [1 ]
Kral, Vladimir [1 ,2 ]
机构
[1] Prague Inst Chem Technol, Dept Analyt Chem, CR-16628 Prague 6, Czech Republic
[2] Zentiva, Prague 10237 10, Czech Republic
来源
NANOSCALE RESEARCH LETTERS | 2012年 / 7卷
关键词
Enzyme immobilization; Cofactor immobilization; Gold and silver nanoparticles; Spectroscopies; conformational change; Enantioselectivity; CIRCULAR-DICHROISM; ALCOHOL-DEHYDROGENASE; ORGANIC-SOLVENTS; CONFORMATIONAL-CHANGES; SILICA NANOPARTICLES; PROTEIN-STRUCTURE; GLUCOSE-OXIDASE; STABILITY; STABILIZATION; ADSORPTION;
D O I
10.1186/1556-276X-7-287
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
In this work, a simple method for alcohol synthesis with high enantiomeric purity was proposed. For this, colloidal gold and silver surface modifications with 3-mercaptopropanoic acid and cysteamine were used to generate carboxyl and amine functionalized gold and silver nanoparticles of 15 and 45 nm, respectively. Alcohol dehydrogenase from Thermoanaerobium brockii (TbADH) and its cofactor (NADPH) were physical and covalent (through direct adsorption and using cross-linker) immobilized on nanoparticles' surface. In contrast to the physical and covalent immobilizations that led to a loss of 90% of the initial enzyme activity and 98% immobilization, the use of a cross-linker in immobilization process promoted a loss to 30% of the initial enzyme activity and > 92% immobilization. The yield of NADPH immobilization was about 80%. The best results in terms of activity were obtained with Ag-citr nanoparticle functionalized with carboxyl groups (Ag-COOH), Au-COOH(CTAB), and Au-citr functionalized with amine groups and stabilized with CTAB (Au-NH2(CTAB)) nanoparticles treated with 0.7% and 1.0% glutaraldehyde. Enzyme conformation upon immobilization was studied using fluorescence and circular dichroism spectroscopies. Shift in ellipticity at 222 nm with about 4 to 7 nm and significant decreasing in fluorescence emission for all bioconjugates were observed by binding of TbADH to silver/gold nanoparticles. Emission redshifting of 5 nm only for Ag-COOH-TbADH bioconjugate demonstrated change in the microenvironment of TbADH. Enzyme immobilization on glutaraldehyde-treated Au-NH2(CTAB) nanoparticles promotes an additional stabilization preserving about 50% of enzyme activity after 15 days storage. Nanoparticles attached-TbADH-NADPH systems were used for enantioselective (ee > 99%) synthesis of (S)-7-hydroxy-2-tetralol.
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页数:10
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[1]   Immobilization and stabilization of glutaryl acylase on aminated sepabeads supports by the glutaraldehyde crosslinking method [J].
Alonso, N ;
López-Gallego, F ;
Betancor, L ;
Hidalgo, A ;
Mateo, C ;
Guisan, JM ;
Fernandez-Lafuente, R .
JOURNAL OF MOLECULAR CATALYSIS B-ENZYMATIC, 2005, 35 (1-3) :57-61
[2]   Potential applications of enzymes immobilized on/in nano materials: A review [J].
Ansari, Shakeel Ahmed ;
Husain, Qayyum .
BIOTECHNOLOGY ADVANCES, 2012, 30 (03) :512-523
[3]  
BRADFORD MM, 1976, ANAL BIOCHEM, V72, P248, DOI 10.1016/0003-2697(76)90527-3
[4]   Applications of gold nanoparticles in cancer nanotechnology [J].
Cai, Weibo ;
Gao, Ting ;
Hong, Hao ;
Sun, Jiangtao .
NANOTECHNOLOGY SCIENCE AND APPLICATIONS, 2008, 1 :17-32
[5]   DETERMINATION OF SECONDARY STRUCTURES OF PROTEINS BY CIRCULAR-DICHROISM AND OPTICAL ROTATORY DISPERSION [J].
CHEN, YH ;
YANG, JT ;
MARTINEZ, HM .
BIOCHEMISTRY, 1972, 11 (22) :4120-+
[6]   Entrapment of the alcohol dehydrogenase from Lactobacillus kefir in polyvinyl alcohol for the synthesis of chiral hydrophobic alcohols in organic solvents [J].
De Temiño, DM ;
Hartmeier, W ;
Ansorge-Schumacher, MB .
ENZYME AND MICROBIAL TECHNOLOGY, 2005, 36 (01) :3-9
[7]  
DEMCHENKO AP, 1988, EUR BIOPHYS J BIOPHY, V16, P121, DOI 10.1007/BF00255522
[8]   Immobilization of acetylcholinesterase on gold nanoparticles embedded in sol-gel film for amperometric detection of organophosphorous insecticide [J].
Du, Dan ;
Chen, Shizhen ;
Cai, Jie ;
Zhang, Aidong .
BIOSENSORS & BIOELECTRONICS, 2007, 23 (01) :130-134
[9]   Enabling multienzyme biocatalysis using nanoporous materials [J].
El-Zahab, B ;
Jia, HF ;
Wang, P .
BIOTECHNOLOGY AND BIOENGINEERING, 2004, 87 (02) :178-183
[10]   Stabilization of multimeric enzymes: Strategies to prevent subunit dissociation [J].
Fernandez-Lafuente, Roberto .
ENZYME AND MICROBIAL TECHNOLOGY, 2009, 45 (6-7) :405-418