4Wang ZX,Ju M,Tsou CL,Number of Ways of Joining SH Group to Form Multipeptide Chain Proteins,J.Theor.Biol.,1987,124:293~301.
5Wang ZX,Tsou CL,Kinetics of Substrate Reaction during Irreversible Modification of Enzyme Activity for Enzyme Involving two Substrates, J.Theor.Biol.,1987,127:253~270.
6Wang ZX,Preiss B,Tsou CL,Kinetics of Inactivation of Creatine Kinase during Modification of Its Ghiol Groups,Biochemistry,1988,27:5095~ 5100.
7Wang ZX,Tsuruta H,Honda Y,et al,Kinetic Study on the Dimertetramer Interconversion of Phosphorylase by a Stopped Flow Xray Scattering Method,Biophys.Chem.,1989,33:153~160.
8Tsuruta H,Nagamura Y,Kimura K,et al,Stoppedflow Apparatus for X ray Scattering at Subzero Temperature,Rev Sci Ins,1989,60:2356~2358.
10Wang ZX,Tsou CL,An Alternative Method for Determining Inhibition Rate Constants by Following the Substrate Reaction,J Theor.Biol.,1990,142:531 ~549.
11Wang ZX,Two Theoretical Problems Concerning the Irreversible Modification Kinetics of Enzyme Activity,J.Theor.Biol.,1990,142:551~563.
12Wang ZX,Some Applications of Statistical Mechanics in Enzymology 1 Elementary Principle,J.Theor.Biol.,1990,143:445~453.
13Wang ZX,Kihara H,Some Applications of Statistical Mechanics in Enzymology 2 Statistical Mechanical Explanation on Allosteric Enzyme Models, J.Theor.Biol.,1990,143:455~464.
14Wang ZX,Some Applications of Statistical Mechanics in Enzymology 3 Effects of Nonspecific Inhibitors and Activators on Enzyme Reaction, J.Theor.Biol.,1990,143:465~472.
15Wang ZX,Some Applications of Statistical Mechanics in Enzymology 4 Effects of pH on Enzyme,J.Theor.Biol.,1990,143:473~484.
16Wang XC,Zhou HM,Wang ZX,et al,Is the Subunit the Minimal Function Unit of Creatine Kinase,Biochim.Biophys.Acta.,1990,1039:313~317.
17Wang ZX,Kinetics of Suicide Substrates,J.Theor.Biol.,1990,147:497~ 508.
20Wang ZX,Theoretical Considerations of the Tsou plot, J.Theor.Biol.,1991,150:437~450.
21Wang ZX,Zhao KY,Kinetics of the Irreversible Modification of Enzyme Activity in Coupled Enzyme System I Only Primary Enzyme Modified by Reagent Y,Science in China,1992,35B:404~417.
22Wang ZX,Zhao KY,Kinetics of the Irreversible Modification of Enzyme Activity in Coupled Enzyme System ⅡBoth Primary and Auxiliary Enzymes Modified by Reagent Y,Science in China,1992,35B:570~576.
23Sum ZR,Zhao KY,Wang ZX,et al,Quantitative Relation between Modification of Functional Groups of Protein and Their Biological Activity, Science in China,1992,35B:1341~1352.
24Wang ZX,Wu HB,Wang XC,et al,Kinetics of the Course of Inactivation of Aminoacylase by 1,10phenanthroline,Biochem J.,1992,281:285 ~290.
25Wang ZX,Kumar NR,Srivastava DK,A Novel Spectroscopictitration Method for Determining the Dissociation Constant and Stoichiometry of Proteinligand Complex,Anal.Biochem.,1992,206:376~381.
26Johnson JK,Wang ZX,Srivastava DK,Mechanistic Investigation of Mediumchain Fatty AcylCoA Dehydrogenase Utilizing 3Indolepropionyl/acrylolylCoA as Chromophoric Substrate Analogues, Biochemistry,1992,31:10564~10575.
27Wang ZX,Killilea SD,Srivastava DK,Kinetic Evaluation of Substratedependent Origin of Lag Phase in the Ferric Form of Soybean Lipoxygenase1 Catalyzed Reaction,Biochemistry,1993,32:1500~1509.
28Wang ZX,A Simple Method for Determining Kinetic Constants of the Slow,Tightbinding Inhibition,Anal Biochem,1993,213:310~317.
29Wang ZX,Srivastava DK,A Graphical Method to Determine the Number of Essential Sites in Enzymes With Multiple Binding Sites for a Ligand, Anal.Biochem,1994.,216:15~26.
30Wang ZX,Assessing the Accuracy of Protein Secondary Structure,Nature Structural Biology,1994,1:145~146.
32Muronetz VI,Wang ZX,Keith TJ,et al,Binding Constants and Stoichiometries of Glyceraldehyde 3phosphate Dehydrogenasetubulin Complexes,Arch Biochem Biophys,1994,313:253~260.
33Wang ZX,An Exact Mathematical Expression for Describing Competitive Binding of two Different Ligands to a Protein Molecule,FEBS Letters,1995,360:111~114.
34Cheng Q,Wang ZX,Killilea SD,A Continuous Spectrophotometric Assay for Protein Phosphatases,Anal Biochem,1995,226:68~73.
36Wang ZX,Wang HR,Zhou HM,Kinetics of Inactivation of Aminoacylase by 2Chloromercuri4Nitrophenol:A New Type of Complexing Inhibitor,Biochemistry,1995,34:6863~6868.
37Wang ZX,How Many Fold Types of Protein are There in Nature? Proteins:Structure,Function and Genetics,1996,26:186~191.
38Zhao KY,Wang ZX,Kinetic Analysis of Modification Reaction at Comparable Enzyme and Modifier Concentrations,J.Theor.Biol,1996,181:319~327.
39Wang ZX,Pan XM,Kinetic Differentiation between LigandInduced and Preexistent Asymmetric Models,FEBS Letters,1996,388:73~75.
40Wang ZX,Jiang RF,A Novel Twosite Binding Equation Presented in Terms of the Total Ligand Concentration,FEBS Letters,1996,392:245~249.
41Cheng Q,Erickson AK,Wang ZX,et al,Simulation of Phosphorylase Phosphatase Activity of Protein Phosphatase 2A1 by Protamine is Ionic Strength Dependent and Involves Interaction of Protamine with Both Substrate and Enzyme ,Biochemistry,1996,35:15593~15600.
42Wang ZX,Uniqueness of Physically Reasonable Root for the Polynomial Characterizing the Multisite Binding Model,Anal Biochem,1997,247:177~178.
43Wu JW,Wang ZX,Zhou JM,Threestate Kinetic Analysis of Chinese Hamster Dihydrofolate Reductase Unfolding by Guanidine Hydrochloride, Biochim.Biophys.Acta.,1997,1343:107~116.
44Wang ZX,A Reestimation for the Total Number of Protein Folds and Superfamilies,Protein Eng,1998,11:621~626.
45Wu JW,Wang ZX,Activation Mechanism and Modification Kinetics of Chinese Hamster Dihydrofolate Reductase by Pchloromercuribenzoate,Biochem J ,1998,335:181~189.
46Wang ZX,A Novel Method for Detetmining Kinetic Parameters of Dissociating Enzyme Systems,Anal.Biochem.,1998,264:8~21.
47Wang ZX,Wu JW,Tsou CL,The Inactivation Kinetics of Papain by Guanidine Hydrochloridea Reanalysis,Biochim.Biophys.Acta.,1998,1388:84~ 92.
48Wang ZX,Kinetic Study on the Dimertetramer Interconversion of Glycogen Phosphorylase aEur.J.Biochem.,1999,259:609~617.
■ Wang, Z.X. (1994) Assessing the accuracy of protein secondary structure. Nature Structural Biology, 1, 145-146.
■Wang, Z.X., Wang, H.R., Zhou, H.M. (1995) Kinetics of inactivation of amino-acylase by 2-chloromercuri-4-nitrophenol: A new type of complexing inhibitor. Biochemistry, 34, 6863-6868.
■ Wang, Z.X. (1996) How many fold types of protein are there in nature? Proteins: Structure. Function and Genetics, 26, 186-191.
■ Wang, M.H., Wang, Z.X. and Zhao, K.Y. (1996) Kinetics of inactivation of bovine pancreatic ribonuclease A by bromopyruvic acid. Biochem. J., 320, 187-192.
■Wu, J.W. and Wang, Z.X. (1998) Activation mechanism and modification kinetics of Chinese hamster dihydrofolate reductase by p-chloromercuribenzoate. Biochem. J., 335, 181-189.
■ Wang, Z.X. (1999) Influence of substrates on in vitro dephosphorylation of glycogen phosphorylase a by protein phosphatase-1. Biochem. J., 341, 545-554.
■ Wang, Z.X. and Yuan, Z. (2000) How good is the prediction of protein structural classes by the component-coupled method? Proteins: Structure, Function and Genetics, 38, 165-175.
■ Wang, Z.X. and Wu, J.W. (2002) Autophosphorylation kinetics of protein kinases. Biochem. J., 368, 947-952.
■ Wu, H., Zheng, Y. and Wang, Z.X. (2003) Evaluation of the catalytic mechanism of the p21-activated protein kinase PAK2. Biochemistry, 42, 1129-1139.
■ Wu, H. and Wang, Z.X. (2003) The mechanism of p21-activated protein kinase 2 autoactivation. J. Biol. Chem., 278, 41768-41778.