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Trends in Biochemical Sciences|January 1, 1997
Catalytic hydroxyl/amine dyads within serine proteasesM Paetzel, R E DalbeyProtein Science : a Publication of the Protein Society|December 14, 1999
Common protein architecture and binding sites in proteases utilizing a Ser/Lys dyad mechanismM Paetzel, N C StrynadkaEnvironmental Pollution (Barking, Essex : 1987)|January 1, 1994
Do decreased trace metal concentrations in surficial skagerrak sediments over the last 15-30 years indicate decreased pollution?M Paetzel, H Schrader, K BjerkliPharmacology & Therapeutics|August 5, 2000
The structure and mechanism of bacterial type I signal peptidases. A novel antibiotic targetM Paetzel, R E Dalbey, N C StrynadkaNature|November 21, 1998
Crystal structure of a bacterial signal peptidase in complex with a beta-lactam inhibitorM Paetzel, R E Dalbey, N C StrynadkaBiochemistry|August 2, 2001
Effect of divalent metal cations on the dimerization of OXA-10 and -14 class D beta-lactamases from Pseudomonas aeruginosaF Danel, M Paetzel, N C Strynadka, et al.Biochemistry|June 14, 2000
Mutational evidence of transition state stabilization by serine 88 in Escherichia coli type I signal peptidaseJ L Carlos, P A Klenotic, M Paetzel, et al.Biochemistry|March 28, 1995
Characterization of a soluble, catalytically active form of Escherichia coli leader peptidase: requirement of detergent or phospholipid for optimal activityW R Tschantz, M Paetzel, G Cao, et al.Proteins|September 1, 1995
Crystallization of a soluble, catalytically active form of Escherichia coli leader peptidaseM Paetzel, M Chernaia, N Strynadka, et al.Nature Structural Biology|October 4, 2000
Crystal structure of the class D beta-lactamase OXA-10M Paetzel, F Danel, L de Castro, et al.Pageof 2