Retrograde trafficking of β-dystroglycan from the plasma membrane to the nucleus
- PMID: 28852008
- PMCID: PMC5575308
- DOI: 10.1038/s41598-017-09972-x
Retrograde trafficking of β-dystroglycan from the plasma membrane to the nucleus
Erratum in
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Publisher Correction: Retrograde trafficking of β-dystroglycan from the plasma membrane to the nucleus.Sci Rep. 2018 Dec 7;8(1):17785. doi: 10.1038/s41598-018-36661-0. Sci Rep. 2018. PMID: 30531996 Free PMC article.
Abstract
β-Dystroglycan (β-DG) is a transmembrane protein with critical roles in cell adhesion, cytoskeleton remodeling and nuclear architecture. This functional diversity is attributed to the ability of β-DG to target to, and conform specific protein assemblies at the plasma membrane (PM) and nuclear envelope (NE). Although a classical NLS and importin α/β mediated nuclear import pathway has already been described for β-DG, the intracellular trafficking route by which β-DG reaches the nucleus is unknown. In this study, we demonstrated that β-DG undergoes retrograde intracellular trafficking from the PM to the nucleus via the endosome-ER network. Furthermore, we provided evidence indicating that the translocon complex Sec61 mediates the release of β-DG from the ER membrane, making it accessible for importins and nuclear import. Finally, we show that phosphorylation of β-DG at Tyr890 is a key stimulus for β-DG nuclear translocation. Collectively our data describe the retrograde intracellular trafficking route that β-DG follows from PM to the nucleus. This dual role for a cell adhesion receptor permits the cell to functionally connect the PM with the nucleus and represents to our knowledge the first example of a cell adhesion receptor exhibiting retrograde nuclear trafficking and having dual roles in PM and NE.
Conflict of interest statement
The authors declare that they have no competing interests.
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