- The hydrophobic effect: a new insight from cold denaturation and a two-state water structure.
C. J. Tsai,
J. V. Maizel Jr.
and R. Nussinov,
Crit Rev Biochem Mol Biol, 97 (2002) 55-69.
- Comparison of protein fragments identified by limited proteolysis and by computational cutting of proteins.
C. J. Tsai, L.P. Polverino, A. Fontana, and R. Nussinov,
Protein Sci., 11 (2002) 1753-1770.
[PDF]
- Structured disorder and conformational selection.
C. J. Tsai, B. Ma, Y.Y. Sham, S. Kumar and R. Nussinov,
Proteins, 44 (2001) 418-427.
[PDF]
- The building block folding model and the kinetics of protein folding.
C. J. Tsai and R. Nussinov,
Protein Eng., 14 (2001) 723-733.
[PDF]
- Anatomy of protein structures: Visualizing how a 1-D protein chain folds into a 3-D shape,
C. J. Tsai,
J. V. Maizel Jr.
and R. Nussinov,
PNAS, 97 (2000) 12038-12043.
[PDF]
- Folding and binding cascades: Shifts in energy landscapes,
C. J. Tsai, B. Ma, and R. Nussinov,
PNAS, 96 (1999) 9970-9972.
[PDF]
- Distinguishing between sequential and non-sequentially folded proteins:
Implications for folding and misfolding,
C. J. Tsai,
J. V. Maizel Jr.
and R. Nussinov,
Protein Sci., 8 (1999) 1591-1604.
- Folding funnels, binding funnels, and protein function,
C. J. Tsai, S. Kumar, B. Ma and R. Nussinov,
Protein Sci., 8 (1999) 1181-1190.
- Protein Folding via Binding, and vice versa,
C. J. Tsai, D. Xu and R. Nussinov,
Folding & Design, 3 (1998) R71-R80.
- Hydrophobic folding units derived from dissimilar monomer structures
and their interactions,
C. J. Tsai and R. Nussinov,
Protein Sci., 6 (1997) 24-42.
- Studies of protein-protein interfaces: A statistical analysis of
the hydrophobic effect,
C. J. Tsai, S. L. Lin, H. Wolfson, and R. Nussinov,
Protein Sci., 6 (1997) 53-64.
- Hydrophobic folding units at protein-protein interfaces:
implications to protein folding and to protein-protein association,
C. J. Tsai and R. Nussinov,
Protein Sci., 6 (1997) 1426-1437.
- Structural motifs at protein-protein interfaces:
protein cores versus two-state and three-state model complexes,
C. J. Tsai, D. Xu and R. Nussinov,
Protein Sci., 6 (1997) 1793-1805.
- A dataset of protein-protein interfaces generated with a
sequence-order-independent comparison technique,
C. J. Tsai, S. L. Lin, H. Wolfson, and R. Nussinov,
J. Mol. Biol., 260 (1996) 604-620.
[PDF]
- Protein-protein interfaces: Architectures and interactions in
protein-protein interfaces and in protein cores. Their similarities
and differences,
C. J. Tsai, S. L. Lin, H. Wolfson, and R. Nussinov,
Critical Reviews in Biochemistry and Molecular Biology, 31 (1996)
127-152.
- Techniques for searching for structural similarities between protein
cores, protein surfaces and between protein surfaces and between protein-protein
interfaces,
C. J. Tsai, S. L. Lin, H. Wolfson, and R. Nussinov,
in Techniques in Protein Chemistry VII, edited by
D. R. Marshak, Academic Press, (1996) 419-429.
- Use of the histogram and jump-walking methods for overcoming slow
barrier-crossing behavior in Monte Carlo simulations: Applications to the
phase transitions in (Ar)13 and (H2O)8,
C. J. Tsai and K. D. Jordan,
J. Chem. Phys., 99 (1993) 6957-6970.
[Abstract]
- Use of an eigenmode method to locate the stationary points on the
potential energy surfaces of selected argon and water clusters,
C. J. Tsai and K. D. Jordan,
J. Phys. Chem., 97 (1993) 11227-11237.
- Theoretical study of the (H2O)6 cluster,
C. J. Tsai and K. D. Jordan,
Chem. Phys. Lett., 213 (1993) 181-187.
- Theoretical study of small water clusters: Low-energy fused cubic
structures for (H2O)n, n=8, 12, 16, and 20,
C. J. Tsai and K. D. Jordan,
J. Phys. Chem., 97 (1993) 5208-5210.
- Monte Carlo simulation of (H2O)8: Evidence for
a low-energy S4 structure and characterization of the solid <->
liquid transition,
C. J. Tsai and K. D. Jordan,
J. Chem. Phys., 95 (1991) 3850-3853.
[Abstract]
- Experimental charge density study of 1,3-Dithietane 1,1,3,3-Tetraoxide,
(CH2SO2)2,
Y. Wang,
L. W. Guo, H. C. Lin, C. T. Kao, C. J. Tsai, and J. W. Bats,
Iorg. Chem., 27 (1988) 520.
- Temperature-dependence studies of a-oxalic acid dihydrate,
Y. Wang,
C. J. Tsai, and W. L. Liu,
Acta Cryst., B41 (1985) 131.
Please send questions or suggestions to
tsai@ncifcrf.gov
Aug 06, 2002