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13篇 您的检索式:作者名="Prodanovi"
    题名 作者 年代 出处 被引量
1Bubble Behavior in Subcooled Flow Boiling of Water at Low Pressures and Low Flow Rates显示文摘Prodanovie V Fraser D Salcudean M 2002Int J Multiphase Flow2002,28,:1
2Improved covalent immobilization of horseradish peroxidase on macroporous glycidyl methacrylate-based copolymers显示文摘Prodanovi'c O Prokopijevi'c M Spasojevi'c D 2012Applied biochemistry and biotechnology2012,168,:1
3A simple and efficient one-step,regioselective,enzymatic glucosylation of arbutin by α-glucosidase显示文摘Milosavi? NB Prodanovi? RM Jankov RM 2007Tetrahedron Letters2007,48,40:1
4Modeling, analysis and testing of autonomous operation of an inverter-based microgrid 显示文摘POGAKU N PRODANOVI M GREEN T C 2007IEEE Transactions on Power Electronics2007,22,2:1
5Enteritis assiated with Clo- stridium peCringens type A in 9 month old calves 显示文摘Savic B Prodanovie R Ivetic V 2012The Canadian Veterinary Journal2012,53,2:1
6Bubble Behavior in Sub- eooled Flow Boiling of Water at Low Pressures and Low Flow Rates 显示文摘Prodanovie V Fraser D Saleudean M 2002International Journal of Multiphase Flow2002,28,:1
7Control of inverter-based microgrids显示文摘Green T C Prodanovi'c M 2007Electric Power Systems Research2007,77,9:1
8Control of inverter-based microgrids显示文摘Green T C Prodanovi'c M 2007Electric Power Systems Research2007,77,9:1
9Safety of performing fiberoptic bronchoscopy in critically ill hypoxemic patients with acute respiratory failure显示文摘Christophe Cracco Muriel Fartoukh Helrne Prodanovie 2013Inten- sive Care Medicine2013,39,1:1
10Transglucosylation of hydroquinone catalysed by α-glucosidase from baker's yeast显示文摘Prodanovi(c) R Milosavi(c) N Sladi(c) D 0,,:1
11Control of inverter-based micro-grids显示文摘Green T C Prodanovi'c M 2007Electric Power Systems Research2007,,77:1
12Control of inverter-based micro-grids显示文摘GREEN T C PRODANOVI M C 2007Electric Power Systems Research2007,,77:1
13Improved degradation of azo dyes by lignin peroxidase following mutagenesis at two sites near the catalytic pocket and the application of peroxidase-coated yeast cell walls显示文摘The enzymatic degradation of azo dyes is a promising alternative to ineffective chemical and physical remediation methods.Lignin peroxidase(LiP)from Phanerochaete chrysosporium is a hemecontaining lignin-degrading oxidoreductase that catalyzes the peroxide-dependent oxidation of diverse molecules,including industrial dyes.This enzyme is therefore ideal as a starting point for protein engineering.Accordingly,we subjected two positions(165 and 264)in the environment of the catalytic Trp171 residue to saturation mutagenesis,and the resulting library of 104 independent clones was expressed on the surface of yeast cells.This yeast display library was used for the selection of variants with the ability to break down structurally-distinct azo dyes more efficiently.We identified mutants with up to 10-fold greater affinity than wild-type LiP for three diverse azo dyes(Evans blue,amido black 10B and Guinea green)and up to 13-fold higher catalytic activity.Additionally,cell wall fragments displaying mutant LiP enzymes were prepared by toluene-induced cell lysis,achieving significant increases in both enzyme activity and stability compared to a whole-cell biocatalyst.LiPcoated cell wall fragments retained their initial dye degradation activity after 10 reaction cycles each lasting 8 h.The best-performing mutants removed up to 2.5-fold more of each dye than the wild-type LiP in multiple reaction cycles.Karla IlićĐurđić Raluca Ostafe Olivera Prodanović AleksandraĐurđevićĐelmaš Nikolina Popović Rainer Fischer Stefan Schillberg Radivoje Prodanović 2021Frontiers of Environmental Science & Engineering2021,15,2:1
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