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Biochemistry|July 10, 1990
Mechanism of adenylate kinase. Structural and functional demonstration of arginine-138 as a key catalytic residue that cannot be replaced by lysineH G Yan, Z T Shi, M D TsaiSurgical Neurology|January 1, 1989
Primary intraspinal dura mesenchymal chondrosarcomaS T Lee, T N Lui, M D TsaiJournal of Protein Chemistry|July 1, 1996
Splase: a new class IIS zinc-finger restriction endonuclease with specificity for Sp1 binding sitesB Huang, C J Schaeffer, Q Li, et al.Biochemistry|November 21, 1995
Phospholipase A2 engineering. The roles of disulfide bonds in structure, conformational stability, and catalytic functionH Zhu, C M Dupureur, X Zhang, et al.Biochemistry|March 13, 1999
Structural analysis of phospholipase A2 from functional perspective. 1. Functionally relevant solution structure and roles of the hydrogen-bonding networkC Yuan, I J Byeon, Y Li, et al.The Journal of Biological Chemistry|July 25, 1979
Stereochemistry and mechanism of reactions catalyzed by indolyl-3-alkane alpha-hydroxylaseM D Tsai, H G Floss, H J Rosenfeld, et al.The Journal of Biological Chemistry|August 10, 1978
Stereochemistry and mechanism of reactions catalyzed by tryptophanase Escherichia coliJ C Vederas, E Schleicher, M D Tsai, et al.Biochemistry|March 13, 1999
Structural analysis of phospholipase A2 from functional perspective. 2. Characterization of a molten globule-like state induced by site-specific mutagenesisC Yuan, I J Byeon, M J Poi, et al.Biochemistry|June 29, 1993
Mechanism of adenylate kinase. What can be learned from a mutant enzyme with minor perturbation in kinetic parameters?Z Shi, I J Byeon, R T Jiang, et al.Biochemistry|October 8, 1997
DNA polymerase beta: multiple conformational changes in the mechanism of catalysisX Zhong, S S Patel, B G Werneburg, et al.Pageof 141