FXYD5 O-glycosylated ectodomain impairs adhesion by disrupting cell-cell trans-dimerization of Na,K-ATPase β1 subunits

Author:

Tokhtaeva Elmira12,Sun Haying3,Deiss-Yehiely Nimrod3,Wen Yi12,Soni Pritin N.3,Gabrielli Nieves M.34ORCID,Marcus Elizabeth A.25,Ridge Karen M.3,Sachs George12,Vazquez-Levin Mónica4,Sznajder Jacob I.3,Vagin Olga12,Dada Laura A.3ORCID

Affiliation:

1. Department of Physiology, David Geffen School of Medicine, UCLA, Los Angeles, CA, USA

2. Veterans Administration Greater Los Angeles Healthcare System, Los Angeles, CA, USA

3. Division of Pulmonary and Critical Care Medicine, Feinberg School of Medicine, Northwestern University, Chicago, IL, USA

4. Instituto de Biología y Medicina Experimental (CONICET-FIBYME), Buenos Aires, Argentina

5. Department of Pediatrics, David Geffen School of Medicine, UCLA, Los Angeles, CA, USA

Abstract

FXYD5/Dysadherin, a regulatory subunit of the Na,K-ATPase, impairs intercellular adhesion by a poorly understood mechanism. Here, we determined whether FXYD5 disrupts the trans-dimerization of Na,K-ATPase molecules located in neighboring cells. Mutagenesis of the Na,K-ATPase β1 subunit identified four conserved residues, including Y199, that are critical for the intercellular Na,K-ATPase trans-dimerization and adhesion. Modulation of expression of FXYD5 or of β1 subunit with intact or mutated β1:β1 binding sites demonstrated that the anti-adhesive effect of FXYD5 depends on the presence Y199 in the β1 subunit. Immunodetection of the plasma membrane FXYD5 was prevented by the presence of O-glycans. Partial FXYD5 deglycosylation enabled antibody binding and showed that the protein level and the degree of O-glycosylation were greater in cancer than in normal cells. FXYD5-induced impairment of adhesion was abolished by both genetic and pharmacological inhibition of FXYD5 O-glycosylation. Therefore, the extracellular O-glycosylated domain of FXYD5 impairs adhesion by interfering with intercellular β1:β1 interactions, suggesting that the ratio between FXYD5 and α1-β1 heterodimer determines whether the Na,K-ATPase acts as a positive or negative regulator of intercellular adhesion.

Funder

National Institutes of Health

UCLA Children's Discovery and Innovation Institute

Publisher

The Company of Biologists

Subject

Cell Biology

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