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A Hopf

Showing results (51-60 of 68) with videos related to

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Cell|May 15, 2012
Three-dimensional structures of membrane proteins from genomic sequencingThomas A Hopf, Lucy J Colwell, Robert Sheridan, et al.
Schweizerische Medizinische Wochenschrift|September 22, 1979
[Heparin treatment. Comparison between intravenous and subcutaneous administration]B Krähenbühl, C A Simon, C A Bouvier, et al.
Nature Methods|June 30, 2015
Protein structure determination by combining sparse NMR data with evolutionary couplingsYuefeng Tang, Yuanpeng Janet Huang, Thomas A Hopf, et al.
Cell|September 24, 2016
Structured States of Disordered Proteins from Genomic SequencesAgnes Toth-Petroczy, Perry Palmedo, John Ingraham, et al.
Journal Fur Hirnforschung|January 1, 1982
The Yakovlev Collection. A unique resource for brain research and the basis for a multinational data bankH J Kretschmann, G Kammradt, E C Cowart, et al.
Plos One|December 14, 2011
Protein 3D structure computed from evolutionary sequence variationDebora S Marks, Lucy J Colwell, Robert Sheridan, et al.
Pflugers Archiv : European Journal of Physiology|February 15, 2002
Cystic fibrosis and CFTRR Greger, R Schreiber, M Mall, et al.
Nature Biotechnology|January 17, 2017
Mutation effects predicted from sequence co-variationThomas A Hopf, John B Ingraham, Frank J Poelwijk, et al.
Molecular Cell|September 8, 2018
A Systematic p53 Mutation Library Links Differential Functional Impact to Cancer Mutation Pattern and Evolutionary ConservationEran Kotler, Odem Shani, Guy Goldfeld, et al.
Molecular Cell|July 7, 2018
A Systematic p53 Mutation Library Links Differential Functional Impact to Cancer Mutation Pattern and Evolutionary ConservationEran Kotler, Odem Shani, Guy Goldfeld, et al.
Pageof 7

Showing results (51-60 of 68) with videos related to

Sort By:
Pageof 7
Cell|May 15, 2012
Three-dimensional structures of membrane proteins from genomic sequencingThomas A Hopf, Lucy J Colwell, Robert Sheridan, et al.
Schweizerische Medizinische Wochenschrift|September 22, 1979
[Heparin treatment. Comparison between intravenous and subcutaneous administration]B Krähenbühl, C A Simon, C A Bouvier, et al.
Nature Methods|June 30, 2015
Protein structure determination by combining sparse NMR data with evolutionary couplingsYuefeng Tang, Yuanpeng Janet Huang, Thomas A Hopf, et al.
Cell|September 24, 2016
Structured States of Disordered Proteins from Genomic SequencesAgnes Toth-Petroczy, Perry Palmedo, John Ingraham, et al.
Journal Fur Hirnforschung|January 1, 1982
The Yakovlev Collection. A unique resource for brain research and the basis for a multinational data bankH J Kretschmann, G Kammradt, E C Cowart, et al.
Plos One|December 14, 2011
Protein 3D structure computed from evolutionary sequence variationDebora S Marks, Lucy J Colwell, Robert Sheridan, et al.
Pflugers Archiv : European Journal of Physiology|February 15, 2002
Cystic fibrosis and CFTRR Greger, R Schreiber, M Mall, et al.
Nature Biotechnology|January 17, 2017
Mutation effects predicted from sequence co-variationThomas A Hopf, John B Ingraham, Frank J Poelwijk, et al.
Molecular Cell|September 8, 2018
A Systematic p53 Mutation Library Links Differential Functional Impact to Cancer Mutation Pattern and Evolutionary ConservationEran Kotler, Odem Shani, Guy Goldfeld, et al.
Molecular Cell|July 7, 2018
A Systematic p53 Mutation Library Links Differential Functional Impact to Cancer Mutation Pattern and Evolutionary ConservationEran Kotler, Odem Shani, Guy Goldfeld, et al.
Pageof 7