SummaryWe show that amino acid covariation in proteins, extracted from the evolutionary sequence record, can be used to fold transmembrane proteins. We use this technique to predict previously unknown 3D structures for 11 transmembrane proteins (with up to 14 helices) from their sequences alone. The prediction method (EVfold_membrane) applies a maximum entropy approach to infer evolutionary covariation in pairs of sequence positions within a protein family and then generates all-atom models with the derived pairwise distance constraints. We benchmark the approach with blinded de novo computation of known transmembrane protein structures from 23 families, demonstrating unprecedented accuracy of the method for large transmembrane proteins. We...
Cells require membrane proteins for a wide spectrum of critical functions. Transmembrane proteins en...
Transmembrane proteins allow cells to extensively communicate with the external world in a very accu...
Protein folding is a process of molecular self-assembly during which a disordered polypeptide chain ...
SummaryWe show that amino acid covariation in proteins, extracted from the evolutionary sequence rec...
In the "omic" era hundreds of genomes are available for protein sequence analysis, and we may estima...
In the "omic" era hundreds of genomes are available for protein sequence analysis, and we may estima...
The evolutionary trajectory of a protein through sequence space is constrained by its function. Coll...
In the "omic" era hundreds of genomes are available for protein sequence analysis, and we may estima...
Abstract: Transmembrane proteins allow cells to extensively communicate with the external world in a...
A daring experiment is performed. Using sequence alignments to predict contacts between residues in ...
Transmembrane proteins allow cells to extensively communicate with the external world in a very accu...
α-helical membrane proteins constitute 20-30% of all proteins in a cell and are involved in many ess...
Transmembrane beta-barrels (TMBs) carry out major functions in substrate transport and protein bioge...
AbstractA reliable and widely used transmembrane protein structure prediction algorithm was applied ...
Transmembrane beta-barrels (TMBs) carry out major functions in substrate transport and protein bioge...
Cells require membrane proteins for a wide spectrum of critical functions. Transmembrane proteins en...
Transmembrane proteins allow cells to extensively communicate with the external world in a very accu...
Protein folding is a process of molecular self-assembly during which a disordered polypeptide chain ...
SummaryWe show that amino acid covariation in proteins, extracted from the evolutionary sequence rec...
In the "omic" era hundreds of genomes are available for protein sequence analysis, and we may estima...
In the "omic" era hundreds of genomes are available for protein sequence analysis, and we may estima...
The evolutionary trajectory of a protein through sequence space is constrained by its function. Coll...
In the "omic" era hundreds of genomes are available for protein sequence analysis, and we may estima...
Abstract: Transmembrane proteins allow cells to extensively communicate with the external world in a...
A daring experiment is performed. Using sequence alignments to predict contacts between residues in ...
Transmembrane proteins allow cells to extensively communicate with the external world in a very accu...
α-helical membrane proteins constitute 20-30% of all proteins in a cell and are involved in many ess...
Transmembrane beta-barrels (TMBs) carry out major functions in substrate transport and protein bioge...
AbstractA reliable and widely used transmembrane protein structure prediction algorithm was applied ...
Transmembrane beta-barrels (TMBs) carry out major functions in substrate transport and protein bioge...
Cells require membrane proteins for a wide spectrum of critical functions. Transmembrane proteins en...
Transmembrane proteins allow cells to extensively communicate with the external world in a very accu...
Protein folding is a process of molecular self-assembly during which a disordered polypeptide chain ...