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Advances in Enzymology and Related Areas of Molecular Biology|April 28, 1999
Nucleoside monophosphate kinases: structure, mechanism, and substrate specificityH Yan, M D TsaiBiochemistry|July 14, 1992
Mechanism of adenylate kinase. Structural and functional roles of the conserved arginine-97 and arginine-132T Dahnke, Z Shi, H Yan, et al.Biochemistry|November 11, 1980
Stereochemistry of the hydrolysis of adenosine 5'-thiophosphate catalyzed by venom 5'-nucleotidaseM D TsaiBiochemistry|November 23, 1993
Mechanism of adenylate kinase. 1H, 13C, and 15N NMR assignments, secondary structures, and substrate binding sitesI J Byeon, H Yan, A S Edison, et al.The Journal of Biological Chemistry|March 18, 1994
Mechanism of adenylate kinase. The conserved aspartates 140 and 141 are important for transition state stabilization instead of substrate-induced conformational changesT Dahnke, M D TsaiBiochemistry|April 10, 1984
Phospholipids chiral at phosphorus. Synthesis of chiral phosphatidylcholine and stereochemistry of phospholipase DK Bruzik, M D TsaiBiochemistry|March 2, 1982
Does the magnesium(II) ion interact with the alpha-phosphate of adenosine triphosphate? An investigation by oxygen-17 nuclear magnetic resonanceS L Huang, M D TsaiPageof 141