While protein-nucleic acid interactions are pivotal for many crucial biological processes, limited experimental data has made the development of computational approaches to characterise these interactions a challenge. Consequently, most approaches to understand the effects of missense mutations on protein-nucleic acid affinity have focused on single-point mutations and have presented a limited performance on independent data sets. To overcome this, we have curated the largest dataset of experimentally measured effects of mutations on nucleic acid binding affinity to date, encompassing 856 single-point mutations and 141 multiple-point mutations across 155 experimentally solved complexes. This was used in combination with an optimized version...
Reliable prediction of binding affinity changes (ΔΔG) upon mutations in protein complexes relies not...
Protein-protein Interactions are involved in most fundamental biological processes, with disease cau...
The binding affinities of protein-nucleic acid interactions could be altered due to missense mutatio...
While protein–nucleic acid interactions are pivotal for many crucial biological processes, limited e...
While protein–nucleic acid interactions are pivotal for many crucial biological processes, limited e...
Over the past two decades, several computational methods have been proposed to predict how missense ...
Protein-protein interactions play a crucial role in all cellular functions and biological processes ...
Protein-protein interactions play a crucial role in all cellular functions and biological processes ...
Protein-protein interactions play a crucial role in all cellular functions and biological processes ...
MOTIVATION: Mutations play fundamental roles in evolution by introducing diversity into genomes. Mis...
Protein-DNA interactions play important roles in regulations of many vital cellular processes, inclu...
Protein-DNA interactions play important roles in regulations of many vital cellular processes, inclu...
Next-generation sequencing methods have not only allowed an understanding of genome sequence variati...
Reliable prediction of binding affinity changes (ΔΔG) upon mutations in protein complexes relies not...
The ability to predict how a mutation affects ligand binding is an essential step in understanding, ...
Reliable prediction of binding affinity changes (ΔΔG) upon mutations in protein complexes relies not...
Protein-protein Interactions are involved in most fundamental biological processes, with disease cau...
The binding affinities of protein-nucleic acid interactions could be altered due to missense mutatio...
While protein–nucleic acid interactions are pivotal for many crucial biological processes, limited e...
While protein–nucleic acid interactions are pivotal for many crucial biological processes, limited e...
Over the past two decades, several computational methods have been proposed to predict how missense ...
Protein-protein interactions play a crucial role in all cellular functions and biological processes ...
Protein-protein interactions play a crucial role in all cellular functions and biological processes ...
Protein-protein interactions play a crucial role in all cellular functions and biological processes ...
MOTIVATION: Mutations play fundamental roles in evolution by introducing diversity into genomes. Mis...
Protein-DNA interactions play important roles in regulations of many vital cellular processes, inclu...
Protein-DNA interactions play important roles in regulations of many vital cellular processes, inclu...
Next-generation sequencing methods have not only allowed an understanding of genome sequence variati...
Reliable prediction of binding affinity changes (ΔΔG) upon mutations in protein complexes relies not...
The ability to predict how a mutation affects ligand binding is an essential step in understanding, ...
Reliable prediction of binding affinity changes (ΔΔG) upon mutations in protein complexes relies not...
Protein-protein Interactions are involved in most fundamental biological processes, with disease cau...
The binding affinities of protein-nucleic acid interactions could be altered due to missense mutatio...