In this paper we analyze the vibrational spectra of a large ensemble of non-homologous protein structures by means of a novel tool, that we coin Hierarchical Network Model (HNM). Our coarse-grained scheme accounts for the intrinsic heterogeneity of force constants displayed by protein arrangements and also incorporates side chain degrees of freedom. Our analysis shows that vibrational entropy per unit residue correlates with the content of secondary structure. Furthermore, we assess the individual contribution to vibrational entropy of the novel features of our scheme as compared with the predictions of state-of-the-art network models. This analysis highlights the importance of properly accounting for the intrinsic hierarchy in force streng...
The proper biological functioning of proteins often relies on the occurrence of coordinated fluctuat...
Intrinsically disordered protein regions (IDRs) make up over 30% of the human proteome and exist in ...
The problem of how a given a-amino acid sequence, in cells, most of the times, assumes the native st...
Predicting the binding affinity between protein monomers is of paramount importance for the understa...
In this article, it is investigated whether vibrational entropy (VE) is an important contribution to...
Comparison of elastic network model predictions with experimental data has provided important insigh...
Quantifying how the rugged nature of the underlying free-energy landscape determines the entropic co...
The exchange of vibrational energy in proteins is crucial for their function. Here, we establish a c...
This article concerns the modern challenge of determining a pro-tein’s tertiary structure and foldin...
SummaryTo better understand the interplay between protein-protein binding and protein dynamics, we a...
Comparison of elastic network model predictions with experimental data has provided important insigh...
Protein homodimers pose some intriguing questions about the relation between structure and stability...
The proper biological functioning of proteins often relies on the occurrence of coordinated fluctuat...
We have developed a general method to compute the structure entropy of protein sequences. Structure ...
We carry out a theoretical study of the vibrational and relaxation properties of naturally occur...
The proper biological functioning of proteins often relies on the occurrence of coordinated fluctuat...
Intrinsically disordered protein regions (IDRs) make up over 30% of the human proteome and exist in ...
The problem of how a given a-amino acid sequence, in cells, most of the times, assumes the native st...
Predicting the binding affinity between protein monomers is of paramount importance for the understa...
In this article, it is investigated whether vibrational entropy (VE) is an important contribution to...
Comparison of elastic network model predictions with experimental data has provided important insigh...
Quantifying how the rugged nature of the underlying free-energy landscape determines the entropic co...
The exchange of vibrational energy in proteins is crucial for their function. Here, we establish a c...
This article concerns the modern challenge of determining a pro-tein’s tertiary structure and foldin...
SummaryTo better understand the interplay between protein-protein binding and protein dynamics, we a...
Comparison of elastic network model predictions with experimental data has provided important insigh...
Protein homodimers pose some intriguing questions about the relation between structure and stability...
The proper biological functioning of proteins often relies on the occurrence of coordinated fluctuat...
We have developed a general method to compute the structure entropy of protein sequences. Structure ...
We carry out a theoretical study of the vibrational and relaxation properties of naturally occur...
The proper biological functioning of proteins often relies on the occurrence of coordinated fluctuat...
Intrinsically disordered protein regions (IDRs) make up over 30% of the human proteome and exist in ...
The problem of how a given a-amino acid sequence, in cells, most of the times, assumes the native st...