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Assembly of the β4-integrin interactome based on proximal biotinylation in the presence and absence of heterodimerization

Myllymäki, Satu-Marja; Kämäräinen, Ulla-Reetta; Liu, Xiaonan; Pereira Cruz, Sara; Miettinen, Sini; Vuorela, Mikko; Varjosalo, Markku; Manninen, Aki (2019-02-01)

 
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URL:
https://doi.org/10.1074/mcp.RA118.001095

Myllymäki, Satu-Marja
Kämäräinen, Ulla-Reetta
Liu, Xiaonan
Pereira Cruz, Sara
Miettinen, Sini
Vuorela, Mikko
Varjosalo, Markku
Manninen, Aki
American Society for Biochemistry and Molecular Biology
01.02.2019

Myllymäki, S., Ulla-Reetta, K., Xiaonan, L., Pereira, C., Sini, M., Mikko, V., Markku, V., Aki, M. (2018) Assembly of the β4-Integrin Interactome Based on Proximal Biotinylation in the Presence and Absence of Heterodimerization. Molecular and Cellular Proteomics, 18 (2), 277-293. doi:10.1074/mcp.RA118.001095

https://rightsstatements.org/vocab/InC/1.0/
This research was originally published in Molecular & Cellular Proteomics. Myllymäki, S.-M., Kämäräinen, U.-R., Liu, X., Cruz, S. P., Miettinen, S., Vuorela, M., Varjosalo, M., Manninen, A. Assembly of the β4-integrin interactome based on proximal biotinylation in the presence and absence of heterodimerization. Mol Cell Proteomics. 2019; 18 (2): 277-293. © Myllymäki et al.
https://rightsstatements.org/vocab/InC/1.0/
doi:https://doi.org/10.1074/mcp.RA118.001095
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https://urn.fi/URN:NBN:fi-fe201902134732
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Abstract

Integrin-mediated laminin adhesions mediate epithelial cell anchorage to basement membranes and are critical regulators of epithelial cell polarity. Integrins assemble large multiprotein complexes that link to the cytoskeleton and convey signals into the cells. Comprehensive proteomic analyses of actin network-linked focal adhesions (FA) have been performed, but the molecular composition of intermediate filament-linked hemidesmosomes (HD) remains incompletely characterized. Here we have used proximity-dependent biotin identification (BioID) technology to label and characterize the interactome of epithelia-specific β4-integrin that, as α6β4-heterodimer, forms the core of HDs. The analysis identified ∼150 proteins that were specifically labeled by BirA-tagged integrin-β4. In addition to known HDs proteins, the interactome revealed proteins that may indirectly link integrin-β4 to actin-connected protein complexes, such as FAs and dystrophin/dystroglycan complexes. The specificity of the screening approach was validated by confirming the HD localization of two candidate β4-interacting proteins, utrophin (UTRN) and ELKS/Rab6-interacting/CAST family member 1 (ERC1). Interestingly, although establishment of functional HDs depends on the formation of α6β4-heterodimers, the assembly of β4-interactome was not strictly dependent on α6-integrin expression. Our survey to the HD interactome sets a precedent for future studies and provides novel insight into the mechanisms of HD assembly and function of the β4-integrin.

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