| E.S. Huang, R. Samudrala, and J. Ponder. Distance geometry generates native-like folds for small helical proteins using the consensus distances of predicted protein structures. Protein Sci., 7:1998--2003, 1998. |
No context found.
E.S. Huang, R. Samudrala, and J. Ponder. Distance geometry generates native-like folds for small helical proteins using the consensus distances of predicted protein structures. Protein Sci., 7:1998--2003, 1998.
No context found.
E.S. Huang, R. Samudrala, and J. Ponder. Distance geometry generates native-like folds for small helical proteins using the consensus distances of predicted protein structures. Protein Sci. #in press#, 1998.
No context found.
E.S. Huang, R. Samudrala, and J. Ponder. Distance geometry generates native-like folds for small helical proteins using the consensus distances of predicted protein structures. Protein Sci., 7:1998--2003, 1998.
No context found.
E.S. Huang, R. Samudrala, and J. Ponder. Distance geometry generates native-like folds for small helical proteins using the consensus distances of predicted protein structures. Protein Sci. (in press), 1998.
No context found.
Huang, E. S., Samudrala, R. & Ponder, J. W. (1998). Distance geometry generates native-like folds for small helical proteins using the consensus distances of predicted protein structures. Protein Sci. 7, 1998 -- 2003.
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