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Solvent structure
Mattos, C. and Ringe, D.  International Tables for Crystallography (2012). Vol. F, ch. 23.5, pp. 800-820 [ doi:10.1107/97809553602060000894 ]
... main-chain O, (b) main-chain N, (c) Ser OG, (d) Tyr ring, (e) Asp OD1 and OD2, (f) Asn OD1 ... the periphery of the protein-ligand interface. Finally, Fig. 23.5.3.5(d) illustrates the situation where clusters of water molecules occupy elongated ... the protein-ligand interface and on the ligand surface; and (d) water molecules bound in clusters in elongated grooves with ...

Summary
Mattos, C. and Ringe, D.  International Tables for Crystallography (2012). Vol. F, Section 23.5.6.4, p. 817 [ doi:10.1107/97809553602060000894 ]
... role of this universal solvent. References Quiocho, F. A., Wilson, D. K. & Vyas, N. K. (1989). Substrate specificity and affinity ...
     [more results from section 23.5.6 in volume F]

Summary
Mattos, C. and Ringe, D.  International Tables for Crystallography (2012). Vol. F, Section 23.5.5.3, p. 815 [ doi:10.1107/97809553602060000894 ]
Summary 23.5.5.3. Summary In general, small proteins serve as important models through which more precise details of protein-water interactions can be obtained due to the very high resolution to which their structures can be solved. With respect to understanding solvent structure, the two major contributions of these very high resolution ...
     [more results from section 23.5.5 in volume F]

Summary
Mattos, C. and Ringe, D.  International Tables for Crystallography (2012). Vol. F, Section 23.5.4.3, p. 814 [ doi:10.1107/97809553602060000894 ]
... References Mattos, C., Bellamacina, C., Peisach, E., Pereira, A., Vitkup, D., Petsko, G. A. & Ringe, D. (2006). Multiple solvent crystal structures: probing binding sites, ...
     [more results from section 23.5.4 in volume F]

Water mediation of protein-ligand interactions
Mattos, C. and Ringe, D.  International Tables for Crystallography (2012). Vol. F, Section 23.5.3.4, pp. 807-808 [ doi:10.1107/97809553602060000894 ]
... the periphery of the protein-ligand interface. Finally, Fig. 23.5.3.5(d) illustrates the situation where clusters of water molecules occupy elongated ... the protein-ligand interface and on the ligand surface; and (d) water molecules bound in clusters in elongated grooves with micro ... M. A., Pique, M. E., Fisher, C. L., Getzoff, E. D. & Tainer, J. A. (1992). The interdependence of protein ...
     [more results from section 23.5.3 in volume F]

Determination of water molecules
Mattos, C. and Ringe, D.  International Tables for Crystallography (2012). Vol. F, Section 23.5.2, pp. 801-802 [ doi:10.1107/97809553602060000894 ]
... in cubic insulin crystals. Biophys. J. 65, 1656-1659. Beglov, D. & Roux, B. (1997). An integral equation to describe the ... 29-53. Gunsteren, W. F. van, Luque, F. J., Timms, D. & Torda, A. E. (1994). Molecular mechanics in biology: from ... Struct. Biol. 4, 770-776. Kossiakoff, A. A., Sintchak, M. D., Shpungin, J. & Presta, L. G. (1992). Analysis of ...

Introduction
Mattos, C. and Ringe, D.  International Tables for Crystallography (2012). Vol. F, Section 23.5.1, pp. 800-801 [ doi:10.1107/97809553602060000894 ]
... N., Bentley, G. A., Boulot, G., Greene, M. I., Tello, D., Dall'Acqua, W., Souchon, H., Schwarz, F. P., Maiuzza, R. ... P. T., Taylor, I. W. F., Pauptit, R. A. & Timms, D. (1997). The entropic penalty of ordered water accounts for ... C., Liu, K., Sugio, S., Zhang, Z., Petsko, G. A. & Ringe, D. (1995). The structural basis for pseudoreversion of ...

Conclusions and future perspectives
Mattos, C. and Ringe, D.  International Tables for Crystallography (2012). Vol. F, Section 23.5.7, pp. 817-818 [ doi:10.1107/97809553602060000894 ]
... Ding, X., Jeffery, C. J., Mattos, C., Petsko, G. A. & Ringe, D. (1996). An experimental approach to mapping the binding surfaces ... C. A., Pique, M. E., Tainer, J. A. & Getzoff, E. D. (1995). Atomic and residue hydrophilicity in the context ...

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