Our current knowledge of protein folding is primarily based on experimental data obtained from isolated domains. In fact, because of their complexity, multidomain proteins have been elusive to the experimental characterization. Thus, the folding of a domain in isolation is generally assumed to resemble what should be observed for more complex structural architectures. Here we compared the folding mechanism of a protein domain in isolation and in the context of its supramodular multidomain structure. By carrying out an extensive mutational analysis we illustrate that while the early events of folding are malleable and influenced by the absence/presence of the neighboring structures, the late events appear to be more robust. These effects may...
A lattice model is used to study mutations and compacting effects on protein folding rates and foldi...
Biomolecules are the prime information processing elements of living matter. Most of these inanimate...
AbstractProteins are polymeric molecules with many degrees of conformational freedom whose internal ...
Our current knowledge of protein folding is primarily based on experimental data obtained from isola...
Our current knowledge of protein folding is primarily based on experimental data obtained from isola...
The funneled energy landscape theory implies that protein structures are minimally frustrated. Yet, ...
The energy landscape theory has been an invaluable theoretical framework in the understanding of bio...
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...
Nonnative interactions cause energetic frustrations in protein folding and were found to dominate ke...
The three-dimensional structures of proteins often show a modular architecture comprised of discrete...
Proteins are polymeric molecules with many degrees of conformational freedom whose internal energeti...
Proteins are polymeric molecules with many degrees of conformational freedom whose internal energeti...
To fold on biologically relevant time scales, proteins have evolved funnelled energy landscapes with...
Folding of proteins to their functional conformation is paramount to life. Though 75% of the proteom...
A lattice model is used to study mutations and compacting effects on protein folding rates and foldi...
Biomolecules are the prime information processing elements of living matter. Most of these inanimate...
AbstractProteins are polymeric molecules with many degrees of conformational freedom whose internal ...
Our current knowledge of protein folding is primarily based on experimental data obtained from isola...
Our current knowledge of protein folding is primarily based on experimental data obtained from isola...
The funneled energy landscape theory implies that protein structures are minimally frustrated. Yet, ...
The energy landscape theory has been an invaluable theoretical framework in the understanding of bio...
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...
Nonnative interactions cause energetic frustrations in protein folding and were found to dominate ke...
The three-dimensional structures of proteins often show a modular architecture comprised of discrete...
Proteins are polymeric molecules with many degrees of conformational freedom whose internal energeti...
Proteins are polymeric molecules with many degrees of conformational freedom whose internal energeti...
To fold on biologically relevant time scales, proteins have evolved funnelled energy landscapes with...
Folding of proteins to their functional conformation is paramount to life. Though 75% of the proteom...
A lattice model is used to study mutations and compacting effects on protein folding rates and foldi...
Biomolecules are the prime information processing elements of living matter. Most of these inanimate...
AbstractProteins are polymeric molecules with many degrees of conformational freedom whose internal ...