pH-dependent binding of the Epsin ENTH domain and the AP180 ANTH domain to PI(4,5)P2-containing bilayers |
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Authors: | Hom Robert A Vora Mohsin Regner Maryann Subach Oksana M Cho Wonhwa Verkhusha Vladislav V Stahelin Robert V Kutateladze Tatiana G |
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Affiliation: | 1 Department of Pharmacology, University of Colorado Health Sciences Center, Aurora, CO 80045, USA 2 Department of Biochemistry and Molecular Biology, Indiana University School of Medicine-South Bend, South Bend, IN 46617, USA 3 Department of Anatomy and Structural Biology, Albert Einstein College of Medicine, Bronx, New York 10461, USA 4 Department of Chemistry, University of Illinois at Chicago, Chicago, IL 60607, USA 5 Department of Chemistry and Biochemistry and The Walther Center for Cancer Research, University of Notre Dame, South Bend, IN 46617, USA |
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Abstract: | Epsin and AP180 are essential components of the endocytotic machinery, which controls internalization of protein receptors and other macromolecules at the cell surface. Epsin and AP180 are recruited to the plasma membrane by their structurally and functionally related N-terminal ENTH and ANTH domains that specifically recognize PtdIns(4,5)P2. Here, we show that membrane anchoring of the ENTH and ANTH domains is regulated by the acidic environment. Lowering the pH enhances PtdIns(4,5)P2 affinity of the ENTH and ANTH domains reinforcing their association with lipid vesicles and monolayers. The pH dependency is due to the conserved histidine residues of the ENTH and ANTH domains, protonation of which is necessary for the strong PtdIns(4,5)P2 recognition, as revealed by liposome binding, surface plasmon resonance, NMR, monolayer surface tension and mutagenesis experiments. The pH sensitivity of the ENTH and ANTH domains is reminiscent to the pH dependency of the FYVE domain suggesting a common regulatory mechanism of membrane anchoring by a subset of the PI-binding domains. |
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Keywords: | ENTH, Epsin N-terminal homology ANTH, AP180 N-terminal homology GST, glutathione S-transferase SUV, small unilamellar vesicle SPR, surface plasmon resonance EGFP, enhanced green fluorescent protein HSQC, heteronuclear single quantum coherence POPC, 1-palmitoyl-2-oleoyl-sn-glycero 3-phosphocholine POPE, 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphoethanolamine POPS, 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphoserine |
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