Publikation:

A Single-Pore Residue Renders the Arabidopsis Root Anion Channel SLAH2 Highly Nitrate Selective

Lade...
Vorschaubild

Dateien

Zu diesem Dokument gibt es keine Dateien.

Datum

2014

Autor:innen

Maierhofer, Tobias
Lind, Christof
Hüttl, Stefanie
Scherzer, Sönke
Papenfuß, Melanie
Al-Rasheid, Khaled A. S.
Ache, Peter
Rennenberg, Heinz
Hedrich, Rainer

Herausgeber:innen

Kontakt

ISSN der Zeitschrift

Electronic ISSN

ISBN

Bibliografische Daten

Verlag

Schriftenreihe

Auflagebezeichnung

URI (zitierfähiger Link)
ArXiv-ID

Internationale Patentnummer

Angaben zur Forschungsförderung

Projekt

Open Access-Veröffentlichung
Core Facility der Universität Konstanz

Gesperrt bis

Titel in einer weiteren Sprache

Publikationstyp
Zeitschriftenartikel
Publikationsstatus
Published

Erschienen in

The Plant Cell. 2014, 26(6), pp. 2554-2567. ISSN 1040-4651. eISSN 1532-298X. Available under: doi: 10.1105/tpc.114.125849

Zusammenfassung

In contrast to animal cells, plants use nitrate as a major source of nitrogen. Following the uptake of nitrate, this major macronutrient is fed into the vasculature for long-distance transport. The Arabidopsis thaliana shoot expresses the anion channel SLOW ANION CHANNEL1 (SLAC1) and its homolog SLAC1 HOMOLOGOUS3 (SLAH3), which prefer nitrate as substrate but cannot exclude chloride ions. By contrast, we identified SLAH2 as a nitrate-specific channel that is impermeable for chloride. To understand the molecular basis for nitrate selection in the SLAH2 channel, SLAC1 and SLAH2 were modeled to the structure of HiTehA, a distantly related bacterial member. Structure-guided site-directed mutations converted SLAC1 into a SLAH2-like nitrate-specific anion channel and vice versa. Our findings indicate that two pore-occluding phenylalanines constrict the pore. The selectivity filter of SLAC/SLAH anion channels is determined by the polarity of pore-lining residues located on alpha helix 3. Changing the polar character of a single amino acid side chain (Ser-228) to a nonpolar residue turned the nitrate-selective SLAH2 into a chloride/nitrate-permeable anion channel. Thus, the molecular basis of the anion specificity of SLAC/SLAH anion channels seems to be determined by the presence and constellation of polar side chains that act in concert with the two pore-occluding phenylalanines.

Zusammenfassung in einer weiteren Sprache

Fachgebiet (DDC)
570 Biowissenschaften, Biologie

Schlagwörter

Konferenz

Rezension
undefined / . - undefined, undefined

Forschungsvorhaben

Organisationseinheiten

Zeitschriftenheft

Zugehörige Datensätze in KOPS

Zitieren

ISO 690MAIERHOFER, Tobias, Christof LIND, Stefanie HÜTTL, Sönke SCHERZER, Melanie PAPENFUSS, Judy SIMON, Khaled A. S. AL-RASHEID, Peter ACHE, Heinz RENNENBERG, Rainer HEDRICH, Thomas D. MÜLLER, Dietmar GEIGER, 2014. A Single-Pore Residue Renders the Arabidopsis Root Anion Channel SLAH2 Highly Nitrate Selective. In: The Plant Cell. 2014, 26(6), pp. 2554-2567. ISSN 1040-4651. eISSN 1532-298X. Available under: doi: 10.1105/tpc.114.125849
BibTex
@article{Maierhofer2014Singl-29400,
  year={2014},
  doi={10.1105/tpc.114.125849},
  title={A Single-Pore Residue Renders the Arabidopsis Root Anion Channel SLAH2 Highly Nitrate Selective},
  number={6},
  volume={26},
  issn={1040-4651},
  journal={The Plant Cell},
  pages={2554--2567},
  author={Maierhofer, Tobias and Lind, Christof and Hüttl, Stefanie and Scherzer, Sönke and Papenfuß, Melanie and Simon, Judy and Al-Rasheid, Khaled A. S. and Ache, Peter and Rennenberg, Heinz and Hedrich, Rainer and Müller, Thomas D. and Geiger, Dietmar}
}
RDF
<rdf:RDF
    xmlns:dcterms="http://purl.org/dc/terms/"
    xmlns:dc="http://purl.org/dc/elements/1.1/"
    xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#"
    xmlns:bibo="http://purl.org/ontology/bibo/"
    xmlns:dspace="http://digital-repositories.org/ontologies/dspace/0.1.0#"
    xmlns:foaf="http://xmlns.com/foaf/0.1/"
    xmlns:void="http://rdfs.org/ns/void#"
    xmlns:xsd="http://www.w3.org/2001/XMLSchema#" > 
  <rdf:Description rdf:about="https://kops.uni-konstanz.de/server/rdf/resource/123456789/29400">
    <dc:contributor>Hüttl, Stefanie</dc:contributor>
    <void:sparqlEndpoint rdf:resource="http://localhost/fuseki/dspace/sparql"/>
    <dc:creator>Simon, Judy</dc:creator>
    <dc:contributor>Lind, Christof</dc:contributor>
    <foaf:homepage rdf:resource="http://localhost:8080/"/>
    <dcterms:abstract xml:lang="eng">In contrast to animal cells, plants use nitrate as a major source of nitrogen. Following the uptake of nitrate, this major macronutrient is fed into the vasculature for long-distance transport. The Arabidopsis thaliana shoot expresses the anion channel SLOW ANION CHANNEL1 (SLAC1) and its homolog SLAC1 HOMOLOGOUS3 (SLAH3), which prefer nitrate as substrate but cannot exclude chloride ions. By contrast, we identified SLAH2 as a nitrate-specific channel that is impermeable for chloride. To understand the molecular basis for nitrate selection in the SLAH2 channel, SLAC1 and SLAH2 were modeled to the structure of HiTehA, a distantly related bacterial member. Structure-guided site-directed mutations converted SLAC1 into a SLAH2-like nitrate-specific anion channel and vice versa. Our findings indicate that two pore-occluding phenylalanines constrict the pore. The selectivity filter of SLAC/SLAH anion channels is determined by the polarity of pore-lining residues located on alpha helix 3. Changing the polar character of a single amino acid side chain (Ser-228) to a nonpolar residue turned the nitrate-selective SLAH2 into a chloride/nitrate-permeable anion channel. Thus, the molecular basis of the anion specificity of SLAC/SLAH anion channels seems to be determined by the presence and constellation of polar side chains that act in concert with the two pore-occluding phenylalanines.</dcterms:abstract>
    <bibo:uri rdf:resource="http://kops.uni-konstanz.de/handle/123456789/29400"/>
    <dc:creator>Geiger, Dietmar</dc:creator>
    <dc:creator>Ache, Peter</dc:creator>
    <dc:creator>Maierhofer, Tobias</dc:creator>
    <dc:creator>Müller, Thomas D.</dc:creator>
    <dcterms:isPartOf rdf:resource="https://kops.uni-konstanz.de/server/rdf/resource/123456789/28"/>
    <dc:creator>Hedrich, Rainer</dc:creator>
    <dcterms:issued>2014</dcterms:issued>
    <dc:language>eng</dc:language>
    <dc:creator>Rennenberg, Heinz</dc:creator>
    <dspace:isPartOfCollection rdf:resource="https://kops.uni-konstanz.de/server/rdf/resource/123456789/28"/>
    <dc:contributor>Simon, Judy</dc:contributor>
    <dc:contributor>Scherzer, Sönke</dc:contributor>
    <dc:contributor>Rennenberg, Heinz</dc:contributor>
    <dc:date rdf:datatype="http://www.w3.org/2001/XMLSchema#dateTime">2014-12-09T10:17:13Z</dc:date>
    <dc:contributor>Ache, Peter</dc:contributor>
    <dcterms:available rdf:datatype="http://www.w3.org/2001/XMLSchema#dateTime">2014-12-09T10:17:13Z</dcterms:available>
    <dc:contributor>Hedrich, Rainer</dc:contributor>
    <dc:contributor>Geiger, Dietmar</dc:contributor>
    <dc:contributor>Müller, Thomas D.</dc:contributor>
    <dc:creator>Lind, Christof</dc:creator>
    <dc:creator>Hüttl, Stefanie</dc:creator>
    <dc:creator>Al-Rasheid, Khaled A. S.</dc:creator>
    <dc:creator>Scherzer, Sönke</dc:creator>
    <dc:creator>Papenfuß, Melanie</dc:creator>
    <dc:contributor>Papenfuß, Melanie</dc:contributor>
    <dc:contributor>Al-Rasheid, Khaled A. S.</dc:contributor>
    <dc:contributor>Maierhofer, Tobias</dc:contributor>
    <dcterms:title>A Single-Pore Residue Renders the Arabidopsis Root Anion Channel SLAH2 Highly Nitrate Selective</dcterms:title>
  </rdf:Description>
</rdf:RDF>

Interner Vermerk

xmlui.Submission.submit.DescribeStep.inputForms.label.kops_note_fromSubmitter

Kontakt
URL der Originalveröffentl.

Prüfdatum der URL

Prüfungsdatum der Dissertation

Finanzierungsart

Kommentar zur Publikation

Allianzlizenz
Corresponding Authors der Uni Konstanz vorhanden
Internationale Co-Autor:innen
Universitätsbibliographie
Ja
Begutachtet
Diese Publikation teilen