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Journal of Chemical Information and Modeling
|
September 6, 2012
ALiBERO: evolving a team of complementary pocket conformations rather than a single leader
Manuel Rueda, Max Totrov, Ruben Abagyan
Advances and Applications in Bioinformatics and Chemistry : AABC
|
September 16, 2011
Computer applications for prediction of protein-protein interactions and rational drug design
Solène Grosdidier, Max Totrov, Juan Fernández-Recio
Future Medicinal Chemistry
|
November 20, 2014
Docking to multiple pockets or ligand fields for screening, activity prediction and scaffold hopping
Yu-Chen Chen, Max Totrov, Ruben Abagyan
Plos One
|
October 21, 2009
A new method for publishing three-dimensional content
Eugene Raush, Max Totrov, Brian D Marsden, et al.
Proteins
|
October 21, 2004
Optimal docking area: a new method for predicting protein-protein interaction sites
Juan Fernandez-Recio, Max Totrov, Constantin Skorodumov, et al.
Current Medicinal Chemistry
|
February 9, 2017
Discovery of Species-selective and Resistance-breaking Anticholinesterase Insecticides for the Malaria Mosquito
Paul R Carlier, Jeffrey R Bloomquist, Max Totrov, et al.
Nucleic Acids Research
|
September 23, 2021
Structural dissection of sequence recognition and catalytic mechanism of human LINE-1 endonuclease
Ian Miller, Max Totrov, Lioubov Korotchkina, et al.
Journal of Virology
|
October 23, 2015
Structure/Function Studies Involving the V3 Region of the HIV-1 Envelope Delineate Multiple Factors That Affect Neutralization Sensitivity
Susan Zolla-Pazner, Sandra Sharpe Cohen, David Boyd, et al.
International Journal of Environmental Research and Public Health
|
May 1, 2019
Mosquito Acetylcholinesterase as a Target for Novel Phenyl-Substituted Carbamates
James M Mutunga, Ming Ma, Qiao-Hong Chen, et al.
Journal of Virology
|
October 7, 2016
Rationally Designed Immunogens Targeting HIV-1 gp120 V1V2 Induce Distinct Conformation-Specific Antibody Responses in Rabbits
Xunqing Jiang, Max Totrov, Wei Li, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 13) with videos related to
Sort By:
Page
of 2
Journal of Chemical Information and Modeling
|
September 6, 2012
ALiBERO: evolving a team of complementary pocket conformations rather than a single leader
Manuel Rueda, Max Totrov, Ruben Abagyan
Advances and Applications in Bioinformatics and Chemistry : AABC
|
September 16, 2011
Computer applications for prediction of protein-protein interactions and rational drug design
Solène Grosdidier, Max Totrov, Juan Fernández-Recio
Future Medicinal Chemistry
|
November 20, 2014
Docking to multiple pockets or ligand fields for screening, activity prediction and scaffold hopping
Yu-Chen Chen, Max Totrov, Ruben Abagyan
Plos One
|
October 21, 2009
A new method for publishing three-dimensional content
Eugene Raush, Max Totrov, Brian D Marsden, et al.
Proteins
|
October 21, 2004
Optimal docking area: a new method for predicting protein-protein interaction sites
Juan Fernandez-Recio, Max Totrov, Constantin Skorodumov, et al.
Current Medicinal Chemistry
|
February 9, 2017
Discovery of Species-selective and Resistance-breaking Anticholinesterase Insecticides for the Malaria Mosquito
Paul R Carlier, Jeffrey R Bloomquist, Max Totrov, et al.
Nucleic Acids Research
|
September 23, 2021
Structural dissection of sequence recognition and catalytic mechanism of human LINE-1 endonuclease
Ian Miller, Max Totrov, Lioubov Korotchkina, et al.
Journal of Virology
|
October 23, 2015
Structure/Function Studies Involving the V3 Region of the HIV-1 Envelope Delineate Multiple Factors That Affect Neutralization Sensitivity
Susan Zolla-Pazner, Sandra Sharpe Cohen, David Boyd, et al.
International Journal of Environmental Research and Public Health
|
May 1, 2019
Mosquito Acetylcholinesterase as a Target for Novel Phenyl-Substituted Carbamates
James M Mutunga, Ming Ma, Qiao-Hong Chen, et al.
Journal of Virology
|
October 7, 2016
Rationally Designed Immunogens Targeting HIV-1 gp120 V1V2 Induce Distinct Conformation-Specific Antibody Responses in Rabbits
Xunqing Jiang, Max Totrov, Wei Li, et al.
Page
of 2