Preparation of N6-[N-(6-Aminohexyl)carbamoyl]-Adenine Nucleotides and Their Application to Coenzymically Active Immobilized ADP and ATP, and Affinity Adsorbents
Author:
Publisher
Wiley
Subject
Biochemistry
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1111/j.1432-1033.1977.tb11693.x/fullpdf
Reference39 articles.
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2. A New Immobilized NAD+ Analogue, Its Application in Affinity Chromatography and as a Functioning Coenzyme
3. The Synthesis of Adenine-Substituted Derivatives of NADP+ and Their Potential as Active Coenzymes and Affinity Adsorbents
4. Synthesis of Coenzymically Active Soluble and Insoluble Macromolecularized NAD+ Derivatives
5. 5. M. K. Weibel, C. W. Fuller, J. M. Stadel, A. F. E. P. Buckmann, T. Doyle, H. J. Bright, E. K. Pye, and L. B. Wingard (1974 ) inEnzyme Engineering () vol. 2 , pp.203 -208 , Plenum Press, New York.
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2. Investigation of Glucose 6-Phosphate Production and Simultaneous Carboxy-Terminated PAMAM-Bound Adenine Nucleotides Regeneration by Conjugated Enzymes in a Batch Reactor;JOURNAL OF CHEMICAL ENGINEERING OF JAPAN;2004
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4. Synthesis and characterization of soluble dextran-adenosine phosphate complexes: Kinetic effects of coenzyme loading;Enzyme and Microbial Technology;1990-03
5. Direct Immobilization of NAD to Sepharose 4B by Using the Bifunctional Reagent Glutaraldehyde;Agricultural and Biological Chemistry;1989-01
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