AbstractThe various structural variations observed in TM helices of membrane proteins have been deconstructed into 9 distinct types of helix perturbations. These perturbations are defined by the deviation of TM helices from the predominantly observed linear α-helical conformation, to form 310- and π-helices, as well as adopting curved and kinked geometries. The data presented here supplements the article ‘Helix perturbations in Membrane Proteins Assist in Inter-helical Interactions and Optimal Helix Positioning in the Bilayer’ (A. Shelar, M. Bansal, 2016) [1]. This data provides strong evidence for the role of various helix perturbations in influencing backbone torsion angles of helices, mediating inter-helical interactions, oligomer format...
Kinks are functionally important structural features found in the alpha-helices of many proteins, pa...
α-helices are amongst the most common secondary structural elements seen in membrane proteins and ar...
Summary: Integral membrane proteins that form helical pores and bundles constitute major drug target...
The various structural variations observed in TM helices of membrane proteins have been deconstructe...
Transmembrane (TM) helices in integral membrane proteins are primarily alpha-helical in structure. H...
AbstractThis article presents the results of a detailed analysis of helix-helix interactions in memb...
AbstractThe packing structures of transmembrane helices are traditionally attributed to patterns in ...
The structures of an increasing number of channels and other a-helical membrane proteins have been d...
SummaryThe environment and unique balance of molecular forces within lipid bilayers has a profound i...
AbstractFolding of polytopic transmembrane proteins involves interactions of individual transmembran...
This is the publisher's version. Copyright 2010 by Elsevier.Protein-lipid interaction and bilayer re...
Summaryα Helices are a basic unit of protein secondary structure and therefore the interaction betwe...
AbstractHydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membra...
-helices are amongst the most common secondary structural elements seen in membrane proteins and are...
AbstractLoops connecting the transmembrane (TM) α-helices in membrane proteins are expected to affec...
Kinks are functionally important structural features found in the alpha-helices of many proteins, pa...
α-helices are amongst the most common secondary structural elements seen in membrane proteins and ar...
Summary: Integral membrane proteins that form helical pores and bundles constitute major drug target...
The various structural variations observed in TM helices of membrane proteins have been deconstructe...
Transmembrane (TM) helices in integral membrane proteins are primarily alpha-helical in structure. H...
AbstractThis article presents the results of a detailed analysis of helix-helix interactions in memb...
AbstractThe packing structures of transmembrane helices are traditionally attributed to patterns in ...
The structures of an increasing number of channels and other a-helical membrane proteins have been d...
SummaryThe environment and unique balance of molecular forces within lipid bilayers has a profound i...
AbstractFolding of polytopic transmembrane proteins involves interactions of individual transmembran...
This is the publisher's version. Copyright 2010 by Elsevier.Protein-lipid interaction and bilayer re...
Summaryα Helices are a basic unit of protein secondary structure and therefore the interaction betwe...
AbstractHydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membra...
-helices are amongst the most common secondary structural elements seen in membrane proteins and are...
AbstractLoops connecting the transmembrane (TM) α-helices in membrane proteins are expected to affec...
Kinks are functionally important structural features found in the alpha-helices of many proteins, pa...
α-helices are amongst the most common secondary structural elements seen in membrane proteins and ar...
Summary: Integral membrane proteins that form helical pores and bundles constitute major drug target...