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Journal of Inorganic Biochemistry|March 26, 2004
Pyrococcus abyssi alkaline phosphatase: the dimer is the active formS Zappa, J Boudrant, E R KantrowitzApplied and Environmental Microbiology|September 26, 2001
Characterization of a highly thermostable alkaline phosphatase from the euryarchaeon Pyrococcus abyssiS Zappa, J L Rolland, D Flament, et al.Enzyme and Microbial Technology|May 1, 1990
Microbial processes for ascorbic acid biosynthesis: a reviewJ BoudrantBiotechnology and Bioengineering|December 1, 1976
Continuous proteolysis with a stabilized protease. II. Continuous experimentsJ Boudrant, C CheftelBiochimie|January 1, 1975
[Application of the theory of oxygen transfer: determination of the Michaelis constant of glucose oxidase with respect to oxygen]J Boudrant, C CheftelThe Journal of Biological Chemistry|November 25, 1991
The synergistic inhibition of Escherichia coli aspartate carbamoyltransferase by UTP in the presence of CTP is due to the binding of UTP to the low affinity CTP sitesY Zhang, E R KantrowitzThe Journal of Biological Chemistry|August 15, 1992
The importance of aspartate 327 for catalysis and zinc binding in Escherichia coli alkaline phosphataseX Xu, E R KantrowitzBiochemistry|September 5, 1989
Lysine-60 in the regulatory chain of Escherichia coli aspartate transcarbamoylase is important for the discrimination between CTP and ATPY Zhang, E R KantrowitzBiochemistry|June 24, 1998
The influence of the regulatory chain amino acids Glu-62 and IIe-12 on the heterotropic properties of Escherichia coli aspartate transcarbamoylaseM Dutta, E R KantrowitzThe Journal of Biological Chemistry|December 16, 1994
Mutations at histidine 412 alter zinc binding and eliminate transferase activity in Escherichia coli alkaline phosphataseL Ma, E R KantrowitzPageof 14