Identification of Cytoplasmic Domains within the Epithelial Na+ Channel Reactive at the Plasma Membrane
Autor: | Nikita Gamper, Eunan Hendron, Pravina Patel, James D. Stockand, Melinda Hausenfluke, Rachell E. Booth, Mark S. Shapiro |
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Rok vydání: | 2002 |
Předmět: |
Cytoplasm
Endosome Amino Acid Motifs Molecular Sequence Data Endocytic cycle CHO Cells Endocytosis Biochemistry Sodium Channels Ubiquitin Cricetinae Animals Amino Acid Sequence Epithelial Sodium Channels Molecular Biology FERM domain biology Cell Membrane Cell Biology Fusion protein Cell biology Protein Subunits Membrane protein biology.protein |
Zdroj: | Journal of Biological Chemistry. 277:34480-34488 |
ISSN: | 0021-9258 |
DOI: | 10.1074/jbc.m204615200 |
Popis: | The activity of membrane proteins is controlled, in part, by protein-protein interactions localized to the plasma membrane. In the current study, domains within the epithelial Na(+) channel (ENaC) reactive at the plasma membrane were identified using a novel yeast one-hybrid screen. The cytosolic N terminus of alphaENaC and the cytosolic C termini of alpha-, beta-, and gammaENaC contained domains reactive at the plasma membrane. Fluorescent micrographs of epithelial cells overexpressing fusion proteins of enhanced green fluorescent protein and mENaC cytosolic domains were consistent with those in yeast. A novel membrane reactive domain within the cytosolic C terminus of gamma-mENaC was localized to the 17 amino acids between residues Thr(584)-Pro(600). Two overlapping internalization signals within the C terminus of gamma-mENaC, a WW-binding domain (PY motif) and a tyrosine-based endocytic signal, were additive with respect to decreasing complementation and expression levels of hybrid proteins. Decreases in expression levels of hybrid proteins containing the PY and endocytic motif were reversed with latrunculin A, an inhibitor of endosomal movement. Decreases in complementation and expression levels of hybrid proteins mediated by the combined PY and overlapping endocytic motif proceeded in the absence of established ubiquitination sites within ENaC. In addition, the endocytic motif was active in the absence of the PY motif, demonstrating that these two domains, while possibly interacting, also have discrete functions. The novel domains within the cytosolic N terminus of alphaENaC and the C termini of alpha-, beta-, and gammaENaC identified here are likely to be involved in protein-protein and/or protein-lipid interactions localized to the plasma membrane. We hypothesize that these newly identified domains play a role in modulating ENaC activity. |
Databáze: | OpenAIRE |
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