Data on diverse roles of helix perturbations in membrane proteins

Shelar, Ashish ; Bansal, Manju (2016) Data on diverse roles of helix perturbations in membrane proteins Data in Brief, 9 . pp. 781-802. ISSN 2352-3409

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Official URL: http://doi.org/10.1016/j.dib.2016.10.023

Related URL: http://dx.doi.org/10.1016/j.dib.2016.10.023

Abstract

The 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 formation and accommodation of hydrophobic residues within the bilayer. The methodology used for creation of various datasets of membrane protein families (Sodium/Calcium exchanger and Heme Copper Oxidase) has also been mentioned.

Item Type:Article
Source:Copyright of this article belongs to Elsevier Science.
Keywords:Helix interactions; Helix kink; Membrane proteins.
ID Code:129635
Deposited On:02 Dec 2022 06:12
Last Modified:02 Dec 2022 06:12

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