Transmembrane and Juxtamembrane Structure of αL Integrin in Bicelles.

The accepted model for the interaction of α and β integrins in the transmembrane (TM) domain is based on the pair αIIbβ3. This involves the so-called outer and inner membrane association clasps (OMC and IMC, respectively). In the α chain, the OMC involves a GxxxG-like motif, whereas in the IMC a con...

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Main Authors: Wahyu Surya, Yan Li, Oscar Millet, Tammo Diercks, Jaume Torres
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3771934?pdf=render
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spelling doaj-7c91a4834d0d4717a0652f49277e73b52020-11-25T02:22:53ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0189e7428110.1371/journal.pone.0074281Transmembrane and Juxtamembrane Structure of αL Integrin in Bicelles.Wahyu SuryaYan LiOscar MilletTammo DiercksJaume TorresThe accepted model for the interaction of α and β integrins in the transmembrane (TM) domain is based on the pair αIIbβ3. This involves the so-called outer and inner membrane association clasps (OMC and IMC, respectively). In the α chain, the OMC involves a GxxxG-like motif, whereas in the IMC a conserved juxtamembrane GFFKR motif experiences a backbone reversal that partially fills the void generated by TM separation towards the cytoplasmic half. However, the GFFKR motif of several α integrin cytoplasmic tails in non-bicelle environments has been shown to adopt an α-helical structure that is not membrane-embedded and which was shown to bind a variety of cytoplasmic proteins. Thus it is not known if a membrane-embedded backbone reversal is a conserved structural feature in α integrins. We have studied the system αLβ2 because of its importance in leukocytes, where integrin deactivation is particularly important. Herein we show that the backbone reversal feature is not only present in αIIb but also in αL-TM when reconstituted in bicelles. Additionally, titration with β2 TM showed eight residues clustering along one side of αL-TM, forming a plausible interacting face with β2. The latter orientation is consistent with a previously predicted reported polar interaction between αL Ser-1071 and β2 Thr-686.http://europepmc.org/articles/PMC3771934?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Wahyu Surya
Yan Li
Oscar Millet
Tammo Diercks
Jaume Torres
spellingShingle Wahyu Surya
Yan Li
Oscar Millet
Tammo Diercks
Jaume Torres
Transmembrane and Juxtamembrane Structure of αL Integrin in Bicelles.
PLoS ONE
author_facet Wahyu Surya
Yan Li
Oscar Millet
Tammo Diercks
Jaume Torres
author_sort Wahyu Surya
title Transmembrane and Juxtamembrane Structure of αL Integrin in Bicelles.
title_short Transmembrane and Juxtamembrane Structure of αL Integrin in Bicelles.
title_full Transmembrane and Juxtamembrane Structure of αL Integrin in Bicelles.
title_fullStr Transmembrane and Juxtamembrane Structure of αL Integrin in Bicelles.
title_full_unstemmed Transmembrane and Juxtamembrane Structure of αL Integrin in Bicelles.
title_sort transmembrane and juxtamembrane structure of αl integrin in bicelles.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description The accepted model for the interaction of α and β integrins in the transmembrane (TM) domain is based on the pair αIIbβ3. This involves the so-called outer and inner membrane association clasps (OMC and IMC, respectively). In the α chain, the OMC involves a GxxxG-like motif, whereas in the IMC a conserved juxtamembrane GFFKR motif experiences a backbone reversal that partially fills the void generated by TM separation towards the cytoplasmic half. However, the GFFKR motif of several α integrin cytoplasmic tails in non-bicelle environments has been shown to adopt an α-helical structure that is not membrane-embedded and which was shown to bind a variety of cytoplasmic proteins. Thus it is not known if a membrane-embedded backbone reversal is a conserved structural feature in α integrins. We have studied the system αLβ2 because of its importance in leukocytes, where integrin deactivation is particularly important. Herein we show that the backbone reversal feature is not only present in αIIb but also in αL-TM when reconstituted in bicelles. Additionally, titration with β2 TM showed eight residues clustering along one side of αL-TM, forming a plausible interacting face with β2. The latter orientation is consistent with a previously predicted reported polar interaction between αL Ser-1071 and β2 Thr-686.
url http://europepmc.org/articles/PMC3771934?pdf=render
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AT oscarmillet transmembraneandjuxtamembranestructureofalintegrininbicelles
AT tammodiercks transmembraneandjuxtamembranestructureofalintegrininbicelles
AT jaumetorres transmembraneandjuxtamembranestructureofalintegrininbicelles
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