Structural biologists currently confront serious challenges in the effective interpretation of experimental data due to two contradictory situations: a severe lack of structural data for certain classes of proteins, and an incredible abundance of data for other classes. The challenge with small data sets is how to extract sufficient information to draw meaningful conclusions, while the challenge with large data sets is how to curate, categorize, and search the data to allow for its meaningful interpretation and application to scientific problems. Here, we develop computational strategies to address both sparse and abundant data sets. In the category of sparse data sets, we focus our attention on the problem of transmembrane (TM) protein str...
Computation has been an integral part of structural biology, ever since the first protein macromolec...
It is currently believed that the atlas of existing protein structures is faithfully represented in ...
University of Minnesota Ph.D. dissertation. July 2013. Major. Computer science. Advisor: George Kary...
Structural biologists currently confront serious challenges in the effective interpretation of exper...
Structural biologists currently confront serious challenges in the effective interpretation of exper...
Structural information for biologically and medically interesting proteins can be difficult to obtai...
Structural biology is moving into a new era by shifting its focus from static structures of single p...
Proteins propagate information within a cell by interacting with other proteins, DNA, RNA, and small...
The number of unique transmembrane (TM) protein structures doubled in the last four years, which can...
More than 100,000 protein structures are now known at atomic detail. However, far more are not yet k...
Computational protein design can generate proteins not found in nature that adopt desired structures...
A variety of methods exist for the design or selection of antibodies and other proteins that recogni...
Proteins are molecules with different levels of repeated structures or patterns. These patterns are ...
Our manuscript presents a novel approach to protein structure analyses. We have organized an 8-dimen...
Protein-protein and protein-peptide interactions play a central role in various aspects of the struc...
Computation has been an integral part of structural biology, ever since the first protein macromolec...
It is currently believed that the atlas of existing protein structures is faithfully represented in ...
University of Minnesota Ph.D. dissertation. July 2013. Major. Computer science. Advisor: George Kary...
Structural biologists currently confront serious challenges in the effective interpretation of exper...
Structural biologists currently confront serious challenges in the effective interpretation of exper...
Structural information for biologically and medically interesting proteins can be difficult to obtai...
Structural biology is moving into a new era by shifting its focus from static structures of single p...
Proteins propagate information within a cell by interacting with other proteins, DNA, RNA, and small...
The number of unique transmembrane (TM) protein structures doubled in the last four years, which can...
More than 100,000 protein structures are now known at atomic detail. However, far more are not yet k...
Computational protein design can generate proteins not found in nature that adopt desired structures...
A variety of methods exist for the design or selection of antibodies and other proteins that recogni...
Proteins are molecules with different levels of repeated structures or patterns. These patterns are ...
Our manuscript presents a novel approach to protein structure analyses. We have organized an 8-dimen...
Protein-protein and protein-peptide interactions play a central role in various aspects of the struc...
Computation has been an integral part of structural biology, ever since the first protein macromolec...
It is currently believed that the atlas of existing protein structures is faithfully represented in ...
University of Minnesota Ph.D. dissertation. July 2013. Major. Computer science. Advisor: George Kary...