Literature DB >> 12501190

Characterization of the monomeric form of the transmembrane and cytoplasmic domains of the integrin beta 3 subunit by NMR spectroscopy.

Renhao Li1, Charles R Babu, Kathleen Valentine, James D Lear, A Joshua Wand, Joel S Bennett, William F DeGrado.   

Abstract

We have characterized a membrane protein containing residues P688-T762 of the integrin beta3 subunit, encompassing its transmembrane and cytoplasmic domains, by nuclear magnetic resonance spectroscopy. Under conditions in which it is monomeric in dodecylphosphocholine micelles, the protein consists mainly of alpha-helical structures. An amino-terminal helix corresponding to the beta3 transmembrane helix extends into the membrane-proximal region of the cytoplasmic domain. Moreover, following an apparent hinge at residues H722-D723, residues K725-A735 are mostly alpha-helical. In the presence of membrane-mimicking detergents, the cytoplasmic domain connected to the transmembrane helix is substantially ordered at pH 4.8 and 50 degrees C. Its carboxyl-terminal end takes on a turn-helix configuration characteristic of the immunoreceptor tyrosine-based activation motif. These structural features of the beta3 subunit should help to explain its interaction with numerous cytosolic interacting proteins and begin to illuminate the mechanism of integrin activation.

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Year:  2002        PMID: 12501190     DOI: 10.1021/bi026822l

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  19 in total

1.  Src kinase activation by direct interaction with the integrin beta cytoplasmic domain.

Authors:  Elena G Arias-Salgado; Sergio Lizano; Sugata Sarkar; Joan S Brugge; Mark H Ginsberg; Sanford J Shattil
Journal:  Proc Natl Acad Sci U S A       Date:  2003-10-30       Impact factor: 11.205

2.  Membrane-mediated structural transitions at the cytoplasmic face during integrin activation.

Authors:  Olga Vinogradova; Julia Vaynberg; Xiangming Kong; Thomas A Haas; Edward F Plow; Jun Qin
Journal:  Proc Natl Acad Sci U S A       Date:  2004-03-15       Impact factor: 11.205

3.  Tyrosine phosphorylation as a conformational switch: a case study of integrin β3 cytoplasmic tail.

Authors:  Lalit Deshmukh; Nahum Meller; Nathan Alder; Tatiana Byzova; Olga Vinogradova
Journal:  J Biol Chem       Date:  2011-09-28       Impact factor: 5.157

Review 4.  Structure and function of the platelet integrin alphaIIbbeta3.

Authors:  Joel S Bennett
Journal:  J Clin Invest       Date:  2005-12       Impact factor: 14.808

5.  The structure of the integrin alphaIIbbeta3 transmembrane complex explains integrin transmembrane signalling.

Authors:  Tong-Lay Lau; Chungho Kim; Mark H Ginsberg; Tobias S Ulmer
Journal:  EMBO J       Date:  2009-03-12       Impact factor: 11.598

Review 6.  Juxtamembrane contribution to transmembrane signaling.

Authors:  Wei Deng; Renhao Li
Journal:  Biopolymers       Date:  2015-07       Impact factor: 2.505

7.  Differential Binding of Active and Inactive Integrin to Talin.

Authors:  Dongchuan Wang; Qiang Guo; Ailin Wei; Ang Li
Journal:  Protein J       Date:  2018-06       Impact factor: 2.371

8.  A Conserved Ectodomain-Transmembrane Domain Linker Motif Tunes the Allosteric Regulation of Cell Surface Receptors.

Authors:  Thomas Schmidt; Feng Ye; Alan J Situ; Woojin An; Mark H Ginsberg; Tobias S Ulmer
Journal:  J Biol Chem       Date:  2016-06-30       Impact factor: 5.157

9.  Structural diversity in integrin/talin interactions.

Authors:  Nicholas J Anthis; Kate L Wegener; David R Critchley; Iain D Campbell
Journal:  Structure       Date:  2010-12-08       Impact factor: 5.006

10.  NMR analysis of the alphaIIb beta3 cytoplasmic interaction suggests a mechanism for integrin regulation.

Authors:  Douglas G Metcalf; David T Moore; Yibing Wu; Joseph M Kielec; Kathleen Molnar; Kathleen G Valentine; A Joshua Wand; Joel S Bennett; William F DeGrado
Journal:  Proc Natl Acad Sci U S A       Date:  2010-12-14       Impact factor: 11.205

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