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Keyword [catalytic efficiency]
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1. Regulation Of Catalytic Efficiency And Expression Of Trehalose-6-phosphate Synthase In Arthrobacter At Low Temperature
2. Isolation Of Cellulase-Producing Strains And Catalytic Efficiency Improvement Of Endo-β-1, 4-Glucanase From Bacillus Subtilis
3. The Contrast Of Catalytic Efficiency Of Trehalose-6-phosphate Synthase From Arthrobacter Sp.Cjts And Escherichia Coli At Low Temperature
4. Characterization And Directed Evolution Of Trehalase From Marine Bacterium Zunongwangia Sp.
5. Structure-Function Relationship Of The Polygalacturonase PG8fn With High Specific Activity
6. Construction Of Xylanases And Bifunctional Chimeras Of Xylanase And Mannanase With High Catalytic Efficiency,Acidstablility And Thermostablility
7. The α-helix (L351-G378) Of Bacterial Laccase Affects Catalytic Efficiency
8. Cloning, Protein Expression And Mutagenesis Of Thermophilic Xylanase
9. Characterization, Directed Evolution And Application Of Serine Hydroxymethyi Transferase From Shewanella Algae And Arthrobacter Nicotianae
10. Heterologous Expression And Molecular Engineering Of Alkaline Amylase
11. In Vitro Directed Evolution Of Geobacillus Thermodenitrificans NG80-2LadA&Characterization Of NG80-2Facls
12. Molecular Modification Of Stenotrophomonas Maltophilia Keratinase
13. Improving The Catalytic Efficiency Of Bacillus Pumilus CotA-laccase By Protein Engineering
14. Enzymatic Properties And In-vitro Directed Evolution Of Trehalase From Enterobacter Cloacae
15. Fungal Thermophilic Polygalacturonase Gene Exploit And Catalytic Efficiency Molecular Modification
16. Stabilities And Catalytic Properties Of Cellulase In GH45 And GH12 Families
17. Molecular Engineering Of Pullulanase For Enhancement Of Catalytic Efficiency And Its Extracellular Expression Regulation
18. Effects Of Glycosylation On The Enzymatic Properties Of ?-Glucosidase Bgl3A Expressed In Pichia Pastoris
19. Catalytic Performance Of Covalent Oligomeric Enzyme And The Renaturation Of Cyclized Enzyme
20. Improving The Catalytic Efficiency Of Methyl Parathion Hydrolyse By In Vitro Molecular Evolution
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