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NPXY motifs control the recruitment of the alpha5beta1 integrin in focal adhesions independently of the association of talin with the beta1 chain
- Source :
- Europe PubMed Central
- Publication Year :
- 1997
-
Abstract
- With the exception of the divergent beta4 and beta8 chains, the integrin beta subunit cytoplasmic domains are short and highly conserved sequences. Consensus motifs are found among the different cytoplasmic beta chains. Experiments using chimeric receptors demonstrated that the 47 amino acids of the beta1 subunit cytoplasmic domain contain sufficient information to target integrins to adhesion plaques. Three clusters of amino acids, named cyto-1, cyto-2 and cyto-3, seem to contribute to this localization. Cyto-2 and cyto-3 exhibit NPXY motifs. At present, the exact function of these motifs remains unknown but it is likely that these sequences are involved in protein-protein interactions. Although NPXY motifs often act as internalization signals at the cytoplasmic tail of membrane receptors, our previous results showed that the two NPXY motifs are not responsible for the alpha5beta1 integrin endocytosis. Herein, we address the question of the role of the two highly conserved NPXY motifs found in the beta1 cytoplasmic domain, and which correspond to the conserved domains cyto-2 and cyto-3. We demonstrate that, within the integrin beta1 cytoplasmic tail, the two NPXY motifs are required for the recruitment of the integrin in focal adhesions. In addition, our results indicate that these two motifs control but do not belong to the talin-binding sites. Finally, the analysis of the phenotypes of NPXY mutants reveals that the interaction of talin with the beta1 cytosolic domain is not sufficient to target the integrins to focal adhesions.
- Subjects :
- Talin
media_common.quotation_subject
Protein subunit
Integrin
Molecular Sequence Data
CHO Cells
Biology
Endocytosis
Transfection
Conserved sequence
Focal adhesion
Receptors, Fibronectin
Cricetinae
Cell Adhesion
Animals
Humans
Amino Acid Sequence
Internalization
Fluorescent Antibody Technique, Indirect
media_common
chemistry.chemical_classification
Integrin beta1
Cell Biology
Cell biology
Amino acid
Fibronectins
Microscopy, Electron
Biochemistry
chemistry
Cytoplasm
Mutation
biology.protein
Subjects
Details
- ISSN :
- 00219533
- Volume :
- 110
- Database :
- OpenAIRE
- Journal :
- Journal of cell science
- Accession number :
- edsair.doi.dedup.....5d74ecd1d5d6b0cca8d94460b8631081