22 results on '"Sharma, Mahima"'
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2. Widespread Family of NAD+-Dependent Sulfoquinovosidases at the Gateway to Sulfoquinovose Catabolism
3. A widespread family of oxidoreductive sulfoquinovosidases at the gateway to sulfoquinovose catabolism
4. Defining the molecular architecture, metal dependence, and distribution of metal-dependent class II sulfofructose-1-phosphate aldolases
5. Oxidative desulfurization pathway for complete catabolism of sulfoquinovose by bacteria
6. A microbial sulfoquinovose monooxygenase pathway enables sulfosugar assimilation
7. A microbial sulfoquinovose monooxygenase pathway that enables sulfosugar assimilation
8. A microbial sulfoquinovose monooxygenase pathway that enables sulfosugar assimilation
9. Substrate Anchoring and Flexibility Reduction in CYP153AM.aq Leads to Highly Improved Efficiency toward Octanoic Acid
10. Molecular Basis of Sulfosugar Selectivity in Sulfoglycolysis
11. The Molecular Basis of Sulfosugar Selectivity in Sulfoglycolysis
12. The Molecular Basis of Sulfosugar Selectivity in Sulfoglycolysis
13. The Molecular Basis of Sulfosugar Selectivity in Sulfoglycolysis
14. The Molecular Basis of Sulfosugar Selectivity in Sulfoglycolysis
15. Correction to “Inverted Binding of Non-natural Substrates in Strictosidine Synthase Leads to a Switch of Stereochemical Outcome in Enzyme-Catalyzed Pictet–Spengler Reactions”
16. Dynamic Structural Changes Accompany the Production of Dihydroxypropanesulfonate by Sulfolactaldehyde Reductase
17. Inverted Binding of Non-natural Substrates in Strictosidine Synthase Leads to a Switch of Stereochemical Outcome in Enzyme-Catalyzed Pictet–Spengler Reactions
18. Dynamic Structural Changes Accompany the Production of 2-Dihydroxypropanesulfonate by Sulfolactaldehyde Reductase
19. Dynamic Structural Changes Accompany the Production of 2-Dihydroxypropanesulfonate by Sulfolactaldehyde Reductase
20. Dynamic Structural Changes Accompany the Production of 2-Dihydroxypropanesulfonate by Sulfolactaldehyde Reductase
21. A Mechanism for Reductive Amination Catalyzed by Fungal Reductive Aminases
22. PEGylation Enhances Mosquito-Larvicidal Activity of Lysinibacillus sphaericus Binary Toxin
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