Abstract Background A large proportion of an organism's genome encodes for membrane proteins. Membrane proteins are important for many cellular processes, and several diseases can be linked to mutations in them. With the tremendous growth of sequence data, there is an increasing need to reliably identify membrane proteins from sequence, to functionally annotate them, and to correctly predict their topology. Results We introduce a technique called structural fragment clustering, which learns sequential motifs from 3D structural fragments. From over 500,000 fragments, we obtain 213 statistically significant, non-redundant, and novel motifs that are highly specific to α-helical transmembrane proteins. From these 213 motifs, 58 of them were ass...
Cells require membrane proteins for a wide spectrum of critical functions. Transmembrane proteins en...
Membrane proteins are broadly represented in the genomes of all organisms and serve as the gates bet...
α-helical membrane proteins constitute 20-30% of all proteins in a cell and are involved in many ess...
Background A large proportion of an organism's genome encodes for membrane proteins. Membrane protei...
<div><p>Despite significant methodological advances in protein structure determination high-resoluti...
Despite significant methodological advances in protein structure determination high-resolution struc...
Despite significant methodological advances in protein structure determination high-resolution struc...
Cells require membrane proteins for a wide spectrum of critical functions. Transmembrane proteins en...
AbstractStudies of the dimerization of transmembrane (TM) helices have been ongoing for many years n...
It has been shown previously that some membrane proteins have a conserved core of amino acid residue...
Structural information for biologically and medically interesting proteins can be difficult to obtai...
α-helices are amongst the most common secondary structural elements seen in membrane proteins and ar...
The first atomic-resolution structure of a membrane protein was solved in 1985. After 25 years and 2...
Of the membrane proteins of known structure, we found that a remarkable 67% of the water soluble dom...
Of the membrane proteins of known structure, we found that a remarkable 67 % of the water soluble do...
Cells require membrane proteins for a wide spectrum of critical functions. Transmembrane proteins en...
Membrane proteins are broadly represented in the genomes of all organisms and serve as the gates bet...
α-helical membrane proteins constitute 20-30% of all proteins in a cell and are involved in many ess...
Background A large proportion of an organism's genome encodes for membrane proteins. Membrane protei...
<div><p>Despite significant methodological advances in protein structure determination high-resoluti...
Despite significant methodological advances in protein structure determination high-resolution struc...
Despite significant methodological advances in protein structure determination high-resolution struc...
Cells require membrane proteins for a wide spectrum of critical functions. Transmembrane proteins en...
AbstractStudies of the dimerization of transmembrane (TM) helices have been ongoing for many years n...
It has been shown previously that some membrane proteins have a conserved core of amino acid residue...
Structural information for biologically and medically interesting proteins can be difficult to obtai...
α-helices are amongst the most common secondary structural elements seen in membrane proteins and ar...
The first atomic-resolution structure of a membrane protein was solved in 1985. After 25 years and 2...
Of the membrane proteins of known structure, we found that a remarkable 67% of the water soluble dom...
Of the membrane proteins of known structure, we found that a remarkable 67 % of the water soluble do...
Cells require membrane proteins for a wide spectrum of critical functions. Transmembrane proteins en...
Membrane proteins are broadly represented in the genomes of all organisms and serve as the gates bet...
α-helical membrane proteins constitute 20-30% of all proteins in a cell and are involved in many ess...