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Biotechnology and Bioengineering|May 20, 1997
Enzymatic synthesis of sorbitan esters using a low-boiling-point azeotrope as a reaction solventD B Sarney, M J Barnard, M Virto, et al.FEBS Letters|September 23, 1985
The nucleotide binding site of F1-ATPase which carries out uni-site catalysis is one of the alternating active sites of the enzymeI A Kozlov, Milgrom YaM, M B Murataliev, et al.Proceedings of the National Academy of Sciences of the United States of America|April 16, 1996
Analysis of metabolic pathways by the growth of cells in the presence of organic solventsH E Spinnler, C Ginies, J A Khan, et al.Veterinary Microbiology|April 16, 2003
Assessment of the aerobic faecal microflora in mink (Mustela vison Schreiber) with emphasis on Escherichia coli and Staphylococcus intermediusL Vulfson, K Pedersen, M Chriel, et al.Biochemistry International|January 1, 1990
The pH-dependent conformational transition in glycogen phosphorylase b. The effect of carnosine and anserine on its activityS E Severin, L K Skolysheva, S A Shur, et al.Bio/Technology (Nature Publishing Company)|November 1, 1993
Enzyme catalysis in multiphase systems: direct determination of water distributionR A Stenning, E C Needs, B E Brooker, et al.Angewandte Chemie (International Ed. in English)|June 29, 2021
Template-Mediated Synthesis of a Polymeric Receptor Specific to Amino Acid SequencesJens U Klein, Michael J Whitcombe, Francis Mulholland, et al.Biotechnology and Bioengineering|March 5, 1996
Microencapsulation of yeast cells and their use as a biocatalyst in organic solventsK D Green, I S Gill, J A Khan, et al.Biokhimiia (Moscow, Russia)|February 1, 1982
[Properties of the catalytically active fragment obtained by limited proteolysis of phosphorylase kinase]S A Shur, A N Pegova, L K Skolysheva, et al.Biokhimiia (Moscow, Russia)|June 1, 1989
[The role of phosphorylase kinase subunits in interaction with glycogen]S A Shur, M A Zemskova, P L Vulfson, et al.Pageof 4,281