Helix kinks are a common feature of α-helical membrane proteins, but are thought to be rare in soluble proteins. In this study we find that kinks are a feature of long α-helices in both soluble and membrane proteins, rather than just transmembrane α-helices. The apparent rarity of kinks in soluble proteins is due to the relative infrequency of long helices (≥20 residues) in these proteins. We compare length-matched sets of soluble and membrane helices, and find that the frequency of kinks, the role of Proline, the patterns of other amino acid around kinks (allowing for the expected differences in amino acid distributions between the two types of protein), and the effects of hydrogen bonds are the same for the two types of helices. In both t...
Proline residues in the transmembrane (TM) alpha-helices of integral membrane proteins have long bee...
AbstractProline lacks an amide proton when found within proteins. This precludes hydrogen bonding be...
α Helices are a basic unit of protein secondary structure and therefore the interaction between heli...
Kinks are functionally important structural features found in the alpha-helices of many proteins, pa...
AbstractHelix-helix interactions are important for the folding, stability, and function of membrane ...
Kinks are a structural feature of alpha-helices and many are known to have functional roles. Kinks h...
Transmembrane (TM) helices in integral membrane proteins are primarily alpha-helical in structure. H...
A comparison is made between the distribution of residue preferences, three dimensional nearest neig...
-helices are amongst the most common secondary structural elements seen in membrane proteins and are...
AbstractThis article presents the results of a detailed analysis of helix-helix interactions in memb...
α-helices are amongst the most common secondary structural elements seen in membrane proteins and ar...
AbstractUnderstanding the sequence-structure relationships in globular proteins is important for rel...
Summaryα Helices are a basic unit of protein secondary structure and therefore the interaction betwe...
Despite proline being assumed to be a helix-breaker, a large number of α-helices are found to c...
The various structural variations observed in TM helices of membrane proteins have been deconstructe...
Proline residues in the transmembrane (TM) alpha-helices of integral membrane proteins have long bee...
AbstractProline lacks an amide proton when found within proteins. This precludes hydrogen bonding be...
α Helices are a basic unit of protein secondary structure and therefore the interaction between heli...
Kinks are functionally important structural features found in the alpha-helices of many proteins, pa...
AbstractHelix-helix interactions are important for the folding, stability, and function of membrane ...
Kinks are a structural feature of alpha-helices and many are known to have functional roles. Kinks h...
Transmembrane (TM) helices in integral membrane proteins are primarily alpha-helical in structure. H...
A comparison is made between the distribution of residue preferences, three dimensional nearest neig...
-helices are amongst the most common secondary structural elements seen in membrane proteins and are...
AbstractThis article presents the results of a detailed analysis of helix-helix interactions in memb...
α-helices are amongst the most common secondary structural elements seen in membrane proteins and ar...
AbstractUnderstanding the sequence-structure relationships in globular proteins is important for rel...
Summaryα Helices are a basic unit of protein secondary structure and therefore the interaction betwe...
Despite proline being assumed to be a helix-breaker, a large number of α-helices are found to c...
The various structural variations observed in TM helices of membrane proteins have been deconstructe...
Proline residues in the transmembrane (TM) alpha-helices of integral membrane proteins have long bee...
AbstractProline lacks an amide proton when found within proteins. This precludes hydrogen bonding be...
α Helices are a basic unit of protein secondary structure and therefore the interaction between heli...