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Structural Analyses of the Slm1-PH Domain Demonstrate Ligand Binding in the Non-Canonical Site

BACKGROUND: Pleckstrin homology (PH) domains are common membrane-targeting modules and their best characterized ligands are a set of important signaling lipids that include phosphatidylinositol phosphates (PtdInsPs). PH domains recognize PtdInsPs through two distinct mechanisms that use different bi...

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Autores principales: Anand, Kanchan, Maeda, Kenji, Gavin, Anne-Claude
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3344901/
https://www.ncbi.nlm.nih.gov/pubmed/22574179
http://dx.doi.org/10.1371/journal.pone.0036526
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author Anand, Kanchan
Maeda, Kenji
Gavin, Anne-Claude
author_facet Anand, Kanchan
Maeda, Kenji
Gavin, Anne-Claude
author_sort Anand, Kanchan
collection PubMed
description BACKGROUND: Pleckstrin homology (PH) domains are common membrane-targeting modules and their best characterized ligands are a set of important signaling lipids that include phosphatidylinositol phosphates (PtdInsPs). PH domains recognize PtdInsPs through two distinct mechanisms that use different binding pockets on opposite sides of the β-strands 1 and 2: i) a canonical binding site delimited by the β1-β2 and β3-β4loops and ii) a non-canonical binding site bordered by the β1-β2 and β5-β6loops. The PH domain-containing protein Slm1 from budding yeast Saccharomyces cerevisiae is required for actin cytoskeleton polarization and cell growth. We recently reported that this PH domain binds PtdInsPs and phosphorylated sphingolipids in a cooperative manner. PRINCIPAL FINDINGS: To study the structural basis for the Slm1-PH domain (Slm1-PH) specificity, we co-crystallized this domain with different soluble compounds that have structures analogous to anionic lipid head groups of reported Slm1 ligands: inositol 4-phosphate, which mimics phosphatidylinositol-4-phosphate (PtdIns(4)P), and phosphoserine as a surrogate for dihydrosphingosine 1-phosphate (DHS1-P). We found electron densities for the ligands within the so-called non-canonical binding site. An additional positively charged surface that contacts a phosphate group was identified next to the canonical binding site. CONCLUSIONS: Our results suggest that Slm1-PH utilizes a non-canonical binding site to bind PtdInsPs, similar to that described for the PH domains of β-spectrin, Tiam1 and ArhGAP9. Additionally, Slm1-PH may have retained an active canonical site. We propose that the presence of both a canonical and a non-canonical binding pocket in Slm1-PH may account for the cooperative binding to PtdInsPs and DHS-1P.
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spelling pubmed-33449012012-05-09 Structural Analyses of the Slm1-PH Domain Demonstrate Ligand Binding in the Non-Canonical Site Anand, Kanchan Maeda, Kenji Gavin, Anne-Claude PLoS One Research Article BACKGROUND: Pleckstrin homology (PH) domains are common membrane-targeting modules and their best characterized ligands are a set of important signaling lipids that include phosphatidylinositol phosphates (PtdInsPs). PH domains recognize PtdInsPs through two distinct mechanisms that use different binding pockets on opposite sides of the β-strands 1 and 2: i) a canonical binding site delimited by the β1-β2 and β3-β4loops and ii) a non-canonical binding site bordered by the β1-β2 and β5-β6loops. The PH domain-containing protein Slm1 from budding yeast Saccharomyces cerevisiae is required for actin cytoskeleton polarization and cell growth. We recently reported that this PH domain binds PtdInsPs and phosphorylated sphingolipids in a cooperative manner. PRINCIPAL FINDINGS: To study the structural basis for the Slm1-PH domain (Slm1-PH) specificity, we co-crystallized this domain with different soluble compounds that have structures analogous to anionic lipid head groups of reported Slm1 ligands: inositol 4-phosphate, which mimics phosphatidylinositol-4-phosphate (PtdIns(4)P), and phosphoserine as a surrogate for dihydrosphingosine 1-phosphate (DHS1-P). We found electron densities for the ligands within the so-called non-canonical binding site. An additional positively charged surface that contacts a phosphate group was identified next to the canonical binding site. CONCLUSIONS: Our results suggest that Slm1-PH utilizes a non-canonical binding site to bind PtdInsPs, similar to that described for the PH domains of β-spectrin, Tiam1 and ArhGAP9. Additionally, Slm1-PH may have retained an active canonical site. We propose that the presence of both a canonical and a non-canonical binding pocket in Slm1-PH may account for the cooperative binding to PtdInsPs and DHS-1P. Public Library of Science 2012-05-04 /pmc/articles/PMC3344901/ /pubmed/22574179 http://dx.doi.org/10.1371/journal.pone.0036526 Text en Anand et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Anand, Kanchan
Maeda, Kenji
Gavin, Anne-Claude
Structural Analyses of the Slm1-PH Domain Demonstrate Ligand Binding in the Non-Canonical Site
title Structural Analyses of the Slm1-PH Domain Demonstrate Ligand Binding in the Non-Canonical Site
title_full Structural Analyses of the Slm1-PH Domain Demonstrate Ligand Binding in the Non-Canonical Site
title_fullStr Structural Analyses of the Slm1-PH Domain Demonstrate Ligand Binding in the Non-Canonical Site
title_full_unstemmed Structural Analyses of the Slm1-PH Domain Demonstrate Ligand Binding in the Non-Canonical Site
title_short Structural Analyses of the Slm1-PH Domain Demonstrate Ligand Binding in the Non-Canonical Site
title_sort structural analyses of the slm1-ph domain demonstrate ligand binding in the non-canonical site
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3344901/
https://www.ncbi.nlm.nih.gov/pubmed/22574179
http://dx.doi.org/10.1371/journal.pone.0036526
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