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Distinct roles for TGN/endosome epsin-like adaptors Ent3p and Ent5p
Giancarlo Costaguta1, Mara C Duncan, G Esteban Fernández
1Department of Biological Chemistry, David Geffen School of Medicine at UCLA, Los Angeles, CA 90095, USA.
Abstract:
Clathrin adaptors are key factors in clathrin-coated vesicle formation, coupling clathrin to cargo and/or the lipid bilayer. A physically interacting network of three classes of adaptors participate in clathrin-mediated traffic between the trans-Golgi network (TGN) and endosomes: AP-1, Gga proteins, and epsin-like proteins. Here we investigate functional relationships within this network through transport assays and protein localization analysis in living yeast cells. We observed that epsin-like protein Ent3p preferentially localized with Gga2p, whereas Ent5p distributed equally between AP-1 and Gga2p. Ent3p was mislocalized in Gga-deficient but not in AP-1-deficient cells. In contrast, Ent5p retained localization in cells lacking either or both AP-1 and Gga proteins. The Ent proteins were dispensable for AP-1 or Gga localization. Synthetic genetic growth and alpha-factor maturation defects were observed when ent5Delta but not ent3Delta was introduced together with deletions of the GGA genes. In AP-1-deficient cells, ent3Delta and to a lesser extent ent5Delta caused minor alpha-factor maturation defects, but together resulted in a near-lethal phenotype. Deletions of ENT3 and ENT5 also displayed synthetic defects similar to, but less severe than, synthetic effects of AP-1 and Gga inactivation. These results differentiate Ent3p and Ent5p function in vivo, suggesting that Ent3p acts primarily with Gga proteins, whereas Ent5p acts with both AP-1 and Gga proteins but is more critical for AP-1-mediated transport. The data also support a model in which the Ent adaptors provide important accessory functions to AP-1 and Gga proteins in TGN/endosome traffic.
Insights
Epsin proteins Ent3p and Ent5p have distinct roles in clathrin-mediated transport. Ent3p works with Gga proteins, while Ent5p interacts with both AP-1 and Gga proteins for TGN/endosome traffic.
Area of Science:
- Cell biology
- Molecular and cell biology
- Protein interactions
Background:
- Clathrin adaptors are crucial for clathrin-coated vesicle formation.
- Three adaptor classes (AP-1, Gga, epsin-like) mediate TGN/endosome traffic.
- Understanding their functional network is key to cellular transport.
Purpose of the Study:
- Investigate functional relationships within the AP-1, Gga, and epsin adaptor network.
- Differentiate the in vivo roles of Ent3p and Ent5p in clathrin-mediated transport.
- Elucidate adaptor contributions to trans-Golgi network (TGN)/endosome trafficking.
Main Methods:
- Transport assays in living yeast cells.
- Protein localization analysis.
- Synthetic genetic interaction analysis.
Main Results:
- Ent3p preferentially localized with Gga2p; Ent5p localized with both AP-1 and Gga2p.
- Ent3p mislocalized in Gga-deficient cells, but Ent5p localization was unaffected by AP-1 or Gga deletions.
- Synthetic defects observed in ent5Δ cells combined with Gga deletions, and in ent3Δ/ent5Δ cells with AP-1 deletions.
Conclusions:
- Ent3p primarily functions with Gga proteins, while Ent5p interacts with both AP-1 and Gga proteins.
- Ent5p is more critical for AP-1-mediated transport than Ent3p.
- Ent adaptors provide accessory functions to AP-1 and Gga proteins in TGN/endosome traffic.
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