Co-factor Regeneration and Simple Transformation
Bibliographic References tagged with Co-factor Regeneration and Simple Transformation
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K. L. Gudiksen, A. R. Urbach, I. Gitlin, J. Yang, J.A. Vasquez, C.E. Costello, and G. M. Whitesides. 2004. “The Influence of the Zn(II) Cofactor on the Refolding of Bovine Carbonic Anhydrase After Denaturation With Sodium Dodecyl Sulfate”. Analytical Chemistry, 76, Pp. 7151-61
K. L. Gudiksen, A. R. Urbach, I. Gitlin, J. Yang, J.A. Vasquez, C.E. Costello, and G. M. Whitesides. 2004. “The Influence of the Zn(II) Cofactor on the Refolding of Bovine Carbonic Anhydrase After Denaturation With Sodium Dodecyl Sulfate”. Analytical Chemistry, 76, Pp. 7151-61
C-H. Wong and G. M. Whitesides. 1994. “Enzymes in Synthetic Organic Chemistry”. In Tetrahedron Organic Chemistry Series, edited by J. E. Baldwin and P. D. Magnus, 1st ed. Vol. 12. London: Pergamon Press
C-H. Wong and G. M. Whitesides. 1994. “Enzymes in Synthetic Organic Chemistry”. In Tetrahedron Organic Chemistry Series, edited by J. E. Baldwin and P. D. Magnus, 1st ed. Vol. 12. London: Pergamon Press
C-H. Wong and G. M. Whitesides. 1983. “Synthesis of Sugars by Aldolase-Catalyzed Condensation Reactions”. J. Org. Chem., 48, Pp. 3199-3205
C-H. Wong and G. M. Whitesides. 1983. “Synthesis of Sugars by Aldolase-Catalyzed Condensation Reactions”. J. Org. Chem., 48, Pp. 3199-3205
H. Bertschy, H. K. Chenault, and G. M. Whitesides. 1995. “Reduction of Aldehydes and Ketones”. In Enzyme Catalysis in Organic Synthesis: A Comprehensive Handbook, edited by K. Drauz and H. J. Waldmann, ll:Pp. 595-628. Weinheim: VCH
H. Bertschy, H. K. Chenault, and G. M. Whitesides. 1995. “Reduction of Aldehydes and Ketones”. In Enzyme Catalysis in Organic Synthesis: A Comprehensive Handbook, edited by K. Drauz and H. J. Waldmann, ll:Pp. 595-628. Weinheim: VCH
C-H. Wong and G. M. Whitesides. 1983. “Enzyme-Catalyzed Organic Synthesis: Regeneration of Deuterated Nicotinamide Cofactors for Use in Large-Scale Enzymatic Synthesis of Deuterated Substances”. J. Am. Chem. Soc., 105, Pp. 5012-14
C-H. Wong and G. M. Whitesides. 1983. “Enzyme-Catalyzed Organic Synthesis: Regeneration of Deuterated Nicotinamide Cofactors for Use in Large-Scale Enzymatic Synthesis of Deuterated Substances”. J. Am. Chem. Soc., 105, Pp. 5012-14
H. Bertschy, G. Baudin, and G. M. Whitesides. 1995. “Formation and Cleavage of P-O Bonds”. In Enzyme Catalysis in Organic Synthesis: A Comprehensive Handbook, edited by K. Drauz and H. J. Waldmann, II:Pp. 505-45. Weinheim: VCH
H. Bertschy, G. Baudin, and G. M. Whitesides. 1995. “Formation and Cleavage of P-O Bonds”. In Enzyme Catalysis in Organic Synthesis: A Comprehensive Handbook, edited by K. Drauz and H. J. Waldmann, II:Pp. 505-45. Weinheim: VCH
D.C. Crans and G. M. Whitesides. 1983. “A Convenient Synthesis of Disodium Acetyl Phosphate for Use in Situ ATP Cofactor Regeneration”. J. Org. Chem., 26, Pp. 3130-32
D.C. Crans and G. M. Whitesides. 1983. “A Convenient Synthesis of Disodium Acetyl Phosphate for Use in Situ ATP Cofactor Regeneration”. J. Org. Chem., 26, Pp. 3130-32
G. M. Whitesides and C-H. Wong. 1983. “Enzymes As Catalysts in Organic Synthesis”. Aldrichimica Acta, 16, Pp. 27-34
G. M. Whitesides and C-H. Wong. 1983. “Enzymes As Catalysts in Organic Synthesis”. Aldrichimica Acta, 16, Pp. 27-34
A. Gross, O. Abril, J.M. Lewis, S. Geresh, and G. M. Whitesides. 1983. “Practical Synthesis of 5-Phospho-D-Ribosyl-a-1-Pyrophosphate (PRPP): Enzymatic Routes from Ribose-5-Phosphate or Ribose”. J. Am. Chem. Soc., 105, Pp. 7428-34
A. Gross, O. Abril, J.M. Lewis, S. Geresh, and G. M. Whitesides. 1983. “Practical Synthesis of 5-Phospho-D-Ribosyl-a-1-Pyrophosphate (PRPP): Enzymatic Routes from Ribose-5-Phosphate or Ribose”. J. Am. Chem. Soc., 105, Pp. 7428-34
D.R. Walt, V.M. Rios-Mercadillo, J. Augé, and G. M. Whitesides. 1984. “An Efficient Chemical and Enzymatic Synthesis of Nicotinamide Adenine Dinucleotide (NAD+)”. J. Am. Chem. Soc., 106, Pp. 234-39
D.R. Walt, V.M. Rios-Mercadillo, J. Augé, and G. M. Whitesides. 1984. “An Efficient Chemical and Enzymatic Synthesis of Nicotinamide Adenine Dinucleotide (NAD+)”. J. Am. Chem. Soc., 106, Pp. 234-39