| Please use any of these identifiers to cite or link to this item: http://hdl.handle.net/10795/3219 http://repository.edulll.gr/3219 |
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Abstract | Using the crystal structure of the uracil transporter UraA of Escherichia coli, we constructed a 3D model of the Aspergillus nidulans uric acid-xanthine/H+ symporter UapA, which is a prototype member of the Nucleobase-Ascorbate Transporter (NAT) family. The model consists of 14 transmembrane segments (TMSs) divided into a core and a gate domain, the later being distinctly different from that of UraA. By implementing Molecular Mechanics (MM) simulations and quantitative structure-activity relationship (SAR) approaches, we propose a model for the xanthine-UapA complex where the substrate binding site is formed by the polar side chains of residues E356 (TMS8) and Q408 (TMS10) and the backbones of A407 (TMS10) and F155 (TMS3). In addition, our model shows several polar interactions between TMS1-TMS10, TMS1-TMS3, TMS8-TMS10, which seem critical for UapA transport activity. Using extensive docking calculations we identify a cytoplasmfacing substrate trajectory (D360, A363, G411, T416, R417, V463 and A469) connecting the proposed substrate binding site with the cytoplasm, as well as, a possible outward-facing gate leading towards the substrate major binding site. Most importantly, re-evaluation of the plethora of available and analysis of a number of herein constructed UapA mutations strongly supports the UapA structural model. Furthermore, modeling and docking approaches with mammalian NAT homologues provided a molecular rationale on how specificity in this family of carriers might be determined, and further support the importance of selectivity gates acting independently from the major central substrate binding site. |
Author/Creator | Kosti, Vasiliki; Lambrinidis, George; Myrianthopoulos, Vassilios; Diallinas, George; Mikros, Emmanuel | Contributor | Editor: Van Veen, Hendrik W.
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Contractor | Εθνικό και Καποδιστριακό Πανεπιστήμιο Αθηνών (ΕΚΠΑ) |
Publisher | Public Library of Science (PLOS) | Language | English | Date | 2012 |
Extent | 15 pages |
Identifier | DOI: 10.1371/journal.pone.0041939 ISSN: 19326203 | Alternative Web page | http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0041939 |
Subject | βιολογία βιοχημεία κυτταρολογία υγεία |
Keywords | Crystal structure, Xanthine, UapA, Nucleobase ascorbate transporter (NAT)family, NCS2, Proteins, Genes, Uric acid, Purines, Κρυσταλλογραφική δομή, Πρωτεΐνες μεταφοράς, Πουρίνες, Γονίδια, Ξανθίνη | Is Related to | Γενετικές, μοριακές, βιοχημικές και βιοφυσικές προσεγγίζεις στη μελέτη των σχέσεων δομής – λειτουργίας
διαμεμβρανικών μεταφορέων πουρινών Dynamic elements at both cytoplasmically and extracellularly facing sides of the UapA transporter
selectively control the accessibility of substrates to
their translocation pathway Modelling, substrate docking and mutational analysis identify residues essential for the function and specificity of the purine-cytosine transporter FcyB. Modeling, substrate docking, and mutational analysis
identify residues essential for the function and specificity of a eukaryotic purine-cytosine NCS1 transporter Mutational analysis and modeling reveal functionally
critical residues in transmembrane segments 1 and
3 of the UapA transporter Μια συνδυαστική υπολογιστική και γενετική προσέγγιση για τη μελέτη των σχέσεων δομής-λειτουργίας στο μεταφορέα κυτοσίνης-πουρινών FcyB Από γενετικά δεδομένα σε δομικά μοντέλα και αντίστροφα: Σχέσεις δομής-λειτουργίας του μεταφορέα πουρινών UapA |
Type | Text (Journal article) | Scientific Coordinator | Διαλλινάς, Γεώργιος |
Project Notes | Πράξη: Γενετικές, μοριακές, βιοχημικές και βιοφυσικές προσεγγίσεις σχέσεων δομής-λειτουργίας διαμεμβρανικών φορέων πουρινών |
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