To fold on biologically relevant time scales, proteins have evolved funnelled energy landscapes with minimal energetic trapping. However, the polymeric nature of proteins and the spatial arrangement of secondary structural elements can create topological traps and slow folding. It is challenging to identify, visualize, and quantify such topological trapping. Designed proteins have not had the benefit of evolution, and it has been hypothesized that de novo designed protein topologies may therefore feature more topological trapping. Structure-based models (SBMs) are inherently funnelled, removing most energetic trapping, and can thus be used to isolate the effect of protein topology on the landscape. Here, we compare Top7, a designed protein ...
We recently introduced a physical model [T.X. Hoang, A. Trovato, F. Seno, J.R. Banavar, A. Maritan, ...
The energy landscape approach has played a fundamental role in advancing our understanding of protei...
We present a simple physical model that demonstrates that the native-state folds of proteins can eme...
To fold on biologically relevant time scales, proteins have evolved funnelled energy landscapes with...
esp ze rly domains apply also to these extended topologies? Using a simplified ug n evolution of pro...
We explore the correlation between the energy landscape and topology in the folding of a model prote...
The energy landscape theory has been an invaluable theoretical framework in the understanding of bio...
We explore the correlation between the energy landscape and topology in the folding of a model prote...
We explore the correlation between the energy landscape and topology in the folding of a model prote...
Energetic frustration is becoming an important topic for understanding the mechanisms of protein fol...
Energetic frustration is becoming an important topic for understanding the mechanisms of protein fol...
The funneled energy landscape theory implies that protein structures are minimally frustrated. Yet, ...
It has been noted by scientists that certain native, protein structures occur more frequently than o...
This thesis discusses our efforts in using the energy landscape theory and coarse-grained molecular ...
The three projects discussed in this thesis are unified by the common goal of understanding and mani...
We recently introduced a physical model [T.X. Hoang, A. Trovato, F. Seno, J.R. Banavar, A. Maritan, ...
The energy landscape approach has played a fundamental role in advancing our understanding of protei...
We present a simple physical model that demonstrates that the native-state folds of proteins can eme...
To fold on biologically relevant time scales, proteins have evolved funnelled energy landscapes with...
esp ze rly domains apply also to these extended topologies? Using a simplified ug n evolution of pro...
We explore the correlation between the energy landscape and topology in the folding of a model prote...
The energy landscape theory has been an invaluable theoretical framework in the understanding of bio...
We explore the correlation between the energy landscape and topology in the folding of a model prote...
We explore the correlation between the energy landscape and topology in the folding of a model prote...
Energetic frustration is becoming an important topic for understanding the mechanisms of protein fol...
Energetic frustration is becoming an important topic for understanding the mechanisms of protein fol...
The funneled energy landscape theory implies that protein structures are minimally frustrated. Yet, ...
It has been noted by scientists that certain native, protein structures occur more frequently than o...
This thesis discusses our efforts in using the energy landscape theory and coarse-grained molecular ...
The three projects discussed in this thesis are unified by the common goal of understanding and mani...
We recently introduced a physical model [T.X. Hoang, A. Trovato, F. Seno, J.R. Banavar, A. Maritan, ...
The energy landscape approach has played a fundamental role in advancing our understanding of protei...
We present a simple physical model that demonstrates that the native-state folds of proteins can eme...