| Regression analysis of multiple protein structures |
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Annual Conference on Research in Computational Molecular Biology
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Proceedings of the second annual international conference on Computational molecular biology
table of contents
New York, New York, United States
Pages: 276 - 284
Year of Publication: 1998
ISBN:0-89791-976-9
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Authors
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Thomas D. Wu
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Departments of Biochemistry, Stanford University, Stanford, CA
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Trevor Hastie
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Departments of Statistics, Stanford University, Stanford, CA
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Scott C. Schmidler
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Departments of Biochemistry and Section on Medical Informatics, Stanford University, Stanford, CA
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Douglas L. Brutlag
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Departments of Biochemistry, Stanford University, Stanford, CA
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Downloads (6 Weeks): 2, Downloads (12 Months): 13, Citation Count: 1
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REFERENCES
Note: OCR errors may be found in this Reference List extracted from the full text article. ACM has opted to expose the complete List rather than only correct and linked references.
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Donald Bashford, Cyrus Chothia, and Arthur M. Lesk. Determinants of a protein fold: Unique features of the globin amino acid sequences. J. Mol. BioL, 196:199-216, 1987.
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R. Diamond. On the comparison of conformations using linear and quadratic transformations. Acta Cryst., A32:1-10, 1976.
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R. Diamond. On the multiple simultaneous superposition of molecular structures by rigid body transformations. Protein Sci., 1:1279-1287, 1992.
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Paul R. Gerber and Klaus M~dler. Superimposing several sets of atomic coordinates. Acta Cryst., A43:426--428, 1987.
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Mark Gerstein and Russ B. Altman. Using a measure of structural variation to define a core for the globins. Comp. Appl. Biosci., 11(6):633-644, 1995.
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Colin Goodall. Procrustes methods in the statistical analysis of shape. J. Royal $tat. Soc. B, 53(2):285--339, 1991.
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Osamu Gotoh. An improved algorithm for matching biological sequences. J. Mol. Biol., 162:705- 708, 1982.
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9
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Trevor Hastie, Eyal Kishon, Malcolm Clark, and Jason Fan. A model for signature verification. Technical report, AT~T Bell Laboratories, 1992.
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Liisa Holm and Chris Sander. Protein structure alignment by alignment of distance matrices. J. Mol. Biol., 233:123-138, 1993.
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D. Sankoff and J. B. Kruskal. Time Warps, String Edits, and Macromolecules: The Theory and Practice of Sequence Comparison. Addison-Wesley, 1983.
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A. Shapiro, J. D. Botha, A. Pastore, and A. M. Lesk. A method for multiple superposition of structures. Acta Cryst., A48:11-14, 1992.
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William R. Taylor, Tomas P. Flores, and Christine A. Orengo. Multiple protein structure alignment. Protein Sci., 3:1858-1870, 1994.
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William R. Taylor and Christine A. Orengo. Protein structure alignment. J. Mol. Biol., 208:1-22, 1989.
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Andrej Sali and Tom L. Blundell. Definition of general topological equivalence in protein structures: A procedure involving comparison of properties and relationships through simulated annealing and dynamic programming. J. Mol. Biol., 212:403- 428, 1990.
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Sanford Weisberg. Applied Linear Regression, second edition. John Wiley and Sons, 1985.
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Thomas D. Wu, Scott C. Schmidler, Trevor Hastie, and Douglas L. Brutlag. In Pacific Symposium on Biocomputing, 3:507-518, 1998.
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