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Structural, thermodynamic, and phosphatidylinositol 3‐phosphate binding properties of Phafin2

Phafin2 is a phosphatidylinositol 3‐phosphate (PtdIns(3)P) binding protein involved in the regulation of endosomal cargo trafficking and lysosomal induction of autophagy. Binding of Phafin2 to PtdIns(3)P is mediated by both its PH and FYVE domains. However, there are no studies on the structural bas...

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Autores principales: Tang, Tuo‐Xian, Jo, Ami, Deng, Jingren, Ellena, Jeffrey F., Lazar, Iulia M., Davis, Richey M., Capelluto, Daniel G. S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5368057/
https://www.ncbi.nlm.nih.gov/pubmed/28152563
http://dx.doi.org/10.1002/pro.3128
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author Tang, Tuo‐Xian
Jo, Ami
Deng, Jingren
Ellena, Jeffrey F.
Lazar, Iulia M.
Davis, Richey M.
Capelluto, Daniel G. S.
author_facet Tang, Tuo‐Xian
Jo, Ami
Deng, Jingren
Ellena, Jeffrey F.
Lazar, Iulia M.
Davis, Richey M.
Capelluto, Daniel G. S.
author_sort Tang, Tuo‐Xian
collection PubMed
description Phafin2 is a phosphatidylinositol 3‐phosphate (PtdIns(3)P) binding protein involved in the regulation of endosomal cargo trafficking and lysosomal induction of autophagy. Binding of Phafin2 to PtdIns(3)P is mediated by both its PH and FYVE domains. However, there are no studies on the structural basis, conformational stability, and lipid interactions of Phafin2 to better understand how this protein participates in signaling at the surface of endomembrane compartments. Here, we show that human Phafin2 is a moderately elongated monomer of ∼28 kDa with an intensity‐average hydrodynamic diameter of ∼7 nm. Circular dichroism (CD) analysis indicates that Phafin2 exhibits an α/β structure and predicts ∼40% random coil content in the protein. Heteronuclear NMR data indicates that a unique conformation of Phafin2 is present in solution and dispersion of resonances suggests that the protein exhibits random coiled regions, in agreement with the CD data. Phafin2 is stable, displaying a melting temperature of 48.4°C. The folding‐unfolding curves, obtained using urea‐ and guanidine hydrochloride‐mediated denaturation, indicate that Phafin2 undergoes a two‐state native‐to‐denatured transition. Analysis of these transitions shows that the free energy change for urea‐ and guanidine hydrochloride‐induced Phafin2 denaturation in water is ∼4 kcal mol(−1). PtdIns(3)P binding to Phafin2 occurs with high affinity, triggering minor conformational changes in the protein. Taken together, these studies represent a platform for establishing the structural basis of Phafin2 molecular interactions and the role of the two potentially redundant PtdIns(3)P‐binding domains of the protein in endomembrane compartments.
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spelling pubmed-53680572017-03-29 Structural, thermodynamic, and phosphatidylinositol 3‐phosphate binding properties of Phafin2 Tang, Tuo‐Xian Jo, Ami Deng, Jingren Ellena, Jeffrey F. Lazar, Iulia M. Davis, Richey M. Capelluto, Daniel G. S. Protein Sci Articles Phafin2 is a phosphatidylinositol 3‐phosphate (PtdIns(3)P) binding protein involved in the regulation of endosomal cargo trafficking and lysosomal induction of autophagy. Binding of Phafin2 to PtdIns(3)P is mediated by both its PH and FYVE domains. However, there are no studies on the structural basis, conformational stability, and lipid interactions of Phafin2 to better understand how this protein participates in signaling at the surface of endomembrane compartments. Here, we show that human Phafin2 is a moderately elongated monomer of ∼28 kDa with an intensity‐average hydrodynamic diameter of ∼7 nm. Circular dichroism (CD) analysis indicates that Phafin2 exhibits an α/β structure and predicts ∼40% random coil content in the protein. Heteronuclear NMR data indicates that a unique conformation of Phafin2 is present in solution and dispersion of resonances suggests that the protein exhibits random coiled regions, in agreement with the CD data. Phafin2 is stable, displaying a melting temperature of 48.4°C. The folding‐unfolding curves, obtained using urea‐ and guanidine hydrochloride‐mediated denaturation, indicate that Phafin2 undergoes a two‐state native‐to‐denatured transition. Analysis of these transitions shows that the free energy change for urea‐ and guanidine hydrochloride‐induced Phafin2 denaturation in water is ∼4 kcal mol(−1). PtdIns(3)P binding to Phafin2 occurs with high affinity, triggering minor conformational changes in the protein. Taken together, these studies represent a platform for establishing the structural basis of Phafin2 molecular interactions and the role of the two potentially redundant PtdIns(3)P‐binding domains of the protein in endomembrane compartments. John Wiley and Sons Inc. 2017-02-13 2017-04 /pmc/articles/PMC5368057/ /pubmed/28152563 http://dx.doi.org/10.1002/pro.3128 Text en © 2017 The Authors Protein Science published by Wiley Periodicals, Inc. on behalf of The Protein Society This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Tang, Tuo‐Xian
Jo, Ami
Deng, Jingren
Ellena, Jeffrey F.
Lazar, Iulia M.
Davis, Richey M.
Capelluto, Daniel G. S.
Structural, thermodynamic, and phosphatidylinositol 3‐phosphate binding properties of Phafin2
title Structural, thermodynamic, and phosphatidylinositol 3‐phosphate binding properties of Phafin2
title_full Structural, thermodynamic, and phosphatidylinositol 3‐phosphate binding properties of Phafin2
title_fullStr Structural, thermodynamic, and phosphatidylinositol 3‐phosphate binding properties of Phafin2
title_full_unstemmed Structural, thermodynamic, and phosphatidylinositol 3‐phosphate binding properties of Phafin2
title_short Structural, thermodynamic, and phosphatidylinositol 3‐phosphate binding properties of Phafin2
title_sort structural, thermodynamic, and phosphatidylinositol 3‐phosphate binding properties of phafin2
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5368057/
https://www.ncbi.nlm.nih.gov/pubmed/28152563
http://dx.doi.org/10.1002/pro.3128
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