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Updated: Aug 14, 2026

Transmembrane Domain Oligomerization Propensity determined by ToxR Assay
Published on: May 26, 2011
The integrin beta1 subunit cytoplasmic tail forms oligomers: a potential role in beta1 integrin clustering
Emmanuel Laplantine1, Patrik Maurer, Laurent Vallar
1Institute for Biochemistry II, Medical Faculty, University of Cologne, Joseph-Stelzmann-Str. 52, 50931 Cologne, Germany.
Insights
Integrin beta1 cytoplasmic tails self-associate, influencing integrin clustering. This finding suggests intracellular interactions are key to beta1 integrin clustering and cell adhesion, impacting cell signaling pathways.
Area of Science:
- Cell biology
- Molecular biology
- Biochemistry
Background:
- Integrins are cell surface receptors crucial for cell adhesion and signal transduction.
- Their function relies on interactions with intracellular proteins, but the role of intracellular tail interactions in integrin clustering is unclear.
Purpose of the Study:
- To investigate the role of intracellular events in integrin clustering.
- To determine if intracellular tails of integrins interact with each other.
Main Methods:
- Used peptides corresponding to the integrin beta1 cytoplasmic region.
- Performed cell adhesion and spreading assays.
- Conducted protein-protein interaction studies using surface plasmon resonance.
- Analyzed peptide aggregation using size exclusion chromatography and SDS-PAGE.
Main Results:
- Integrin beta1 cytoplasmic peptides self-associated, unlike beta3 cytoplasmic tails.
- Loading cells with beta1 peptides decreased cell adhesion and inhibited cell spreading.
- Beta1 cytoplasmic peptides formed oligomers with an increased alpha-helical conformation upon aggregation.
Conclusions:
- Self-association of integrin beta1 cytoplasmic regions may be central to beta1 integrin clustering.
- Intracellular tail interactions play a significant role in integrin clustering and downstream signaling.
Abstract:
Integrins are alpha/beta heterodimeric cell surface receptors devoid of enzymatic activity. Signal transduction therefore requires the association of cytosolic and cytoskeletal proteins with the integrin subunit intracellular regions. This association is initiated upon ligand binding to the integrin receptor and includes clustering of the integrins and recruitment of focal adhesion-associated proteins. Whether integrin clustering is solely dependent on ligand binding to the integrin extracellular parts or involves also interactions between the intracellular tails of integrins is so far unknown. To investigate intracellular events in integrin clustering, we have used peptides corresponding to the integrin beta1 cytoplasmic region. Loading of cells with the peptides results in a decreased cell adhesion and in an inhibition of cell spreading in agreement with the previously reported dominant negative effect of the beta1 integrin cytoplasmic tail on integrin clustering. Direct protein-protein interaction studies by surface plasmon resonance demonstrate that integrin beta1 cytoplasmic peptides self-associate in contrast to integrin beta3 cytoplasmic tails. Size exclusion chromatography and SDS-PAGE analysis of the peptides further show that the integrin beta1 cytoplasmic parts form oligomers and that they assume alpha helical conformation to the extent of about 13% and that this fraction is increased upon aggregation. Thus self-association of the integrin beta1 subunit cytoplasmic regions may be central to beta1 integrin clustering.
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