Publikation:

Selective Synergism Created by Interactive Nacre Framework-Associated Proteins Possessing EGF and vWA Motifs : Implications for Mollusk Shell Formation

Lade...
Vorschaubild

Dateien

Zu diesem Dokument gibt es keine Dateien.

Datum

2018

Autor:innen

Jain, Gaurav
Pendola, Martin
Koutsoumpeli, Eleni
Johnson, Steven
Evans, John Spencer

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

Biochemistry. 2018, 57(18), pp. 2657-2666. ISSN 0006-2960. eISSN 1520-4995. Available under: doi: 10.1021/acs.biochem.8b00119

Zusammenfassung

In the nacre layer of the Pinctada fucata oyster shell there exists a multimember proteome, known as the framework family, which regulates the formation of the aragonite mesoscale tablets and participates in the creation of an organic coating around each tablet. Several approaches have been developed to understand protein-associated mechanisms of nacre formation, yet we still lack insight into how protein ensembles or proteomes manage nucleation and crystal growth. To provide additional insights we have created a proportionally defined combinatorial model consisting of two recombinant framework proteins, r-Pif97 (containing a von Willebrand Factor Type A domain (vWA)) and r-n16.3 (containing an EGF-like domain), whose individual in vitro mineralization functionalities are distinct from one another. We find that at 1:1 molar ratios r-Pif97 and r-n16.3 exhibit little or no synergistic activity regarding modifying existing calcite crystals. However, during the early stages of nucleation in solution, we note synergistic effects on nucleation kinetics and ACC formation/stability (via dehydration) that are not observed for the individual proteins. This selective synergism is generated by Ca2+-mediated protein–protein interactions (∼4 molecules of r-n16.3 per 1 molecule of r-Pif97) which lead to the formation of nucleation-responsive hybrid hydrogel particles in solution. Interestingly, in the absence of Ca2+ there are no significant interactions occurring between the two proteins. This unique behavior of the framework-associated n16.3 and Pif97 proteins suggests that the Asp/Glu-containing regions of the vWA and EGF-like domains may play a role in both nacre matrix formation and mineralization.

Zusammenfassung in einer weiteren Sprache

Fachgebiet (DDC)
540 Chemie

Schlagwörter

Konferenz

Rezension
undefined / . - undefined, undefined

Forschungsvorhaben

Organisationseinheiten

Zeitschriftenheft

Zugehörige Datensätze in KOPS

Zitieren

ISO 690JAIN, Gaurav, Martin PENDOLA, Yu-Chieh HUANG, Denis GEBAUER, Eleni KOUTSOUMPELI, Steven JOHNSON, John Spencer EVANS, 2018. Selective Synergism Created by Interactive Nacre Framework-Associated Proteins Possessing EGF and vWA Motifs : Implications for Mollusk Shell Formation. In: Biochemistry. 2018, 57(18), pp. 2657-2666. ISSN 0006-2960. eISSN 1520-4995. Available under: doi: 10.1021/acs.biochem.8b00119
BibTex
@article{Jain2018-05-08Selec-42486,
  year={2018},
  doi={10.1021/acs.biochem.8b00119},
  title={Selective Synergism Created by Interactive Nacre Framework-Associated Proteins Possessing EGF and vWA Motifs : Implications for Mollusk Shell Formation},
  number={18},
  volume={57},
  issn={0006-2960},
  journal={Biochemistry},
  pages={2657--2666},
  author={Jain, Gaurav and Pendola, Martin and Huang, Yu-Chieh and Gebauer, Denis and Koutsoumpeli, Eleni and Johnson, Steven and Evans, John Spencer}
}
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/123456789/42486">
    <dc:date rdf:datatype="http://www.w3.org/2001/XMLSchema#dateTime">2018-05-30T14:13:38Z</dc:date>
    <dc:contributor>Gebauer, Denis</dc:contributor>
    <dcterms:isPartOf rdf:resource="https://kops.uni-konstanz.de/server/rdf/resource/123456789/29"/>
    <dc:creator>Pendola, Martin</dc:creator>
    <dc:contributor>Huang, Yu-Chieh</dc:contributor>
    <dc:creator>Johnson, Steven</dc:creator>
    <dcterms:isPartOf rdf:resource="https://kops.uni-konstanz.de/server/rdf/resource/123456789/52"/>
    <dc:contributor>Evans, John Spencer</dc:contributor>
    <void:sparqlEndpoint rdf:resource="http://localhost/fuseki/dspace/sparql"/>
    <dcterms:abstract xml:lang="eng">In the nacre layer of the Pinctada fucata oyster shell there exists a multimember proteome, known as the framework family, which regulates the formation of the aragonite mesoscale tablets and participates in the creation of an organic coating around each tablet. Several approaches have been developed to understand protein-associated mechanisms of nacre formation, yet we still lack insight into how protein ensembles or proteomes manage nucleation and crystal growth. To provide additional insights we have created a proportionally defined combinatorial model consisting of two recombinant framework proteins, r-Pif97 (containing a von Willebrand Factor Type A domain (vWA)) and r-n16.3 (containing an EGF-like domain), whose individual in vitro mineralization functionalities are distinct from one another. We find that at 1:1 molar ratios r-Pif97 and r-n16.3 exhibit little or no synergistic activity regarding modifying existing calcite crystals. However, during the early stages of nucleation in solution, we note synergistic effects on nucleation kinetics and ACC formation/stability (via dehydration) that are not observed for the individual proteins. This selective synergism is generated by Ca&lt;sup&gt;2+&lt;/sup&gt;-mediated protein–protein interactions (∼4 molecules of r-n16.3 per 1 molecule of r-Pif97) which lead to the formation of nucleation-responsive hybrid hydrogel particles in solution. Interestingly, in the absence of Ca&lt;sup&gt;2+&lt;/sup&gt; there are no significant interactions occurring between the two proteins. This unique behavior of the framework-associated n16.3 and Pif97 proteins suggests that the Asp/Glu-containing regions of the vWA and EGF-like domains may play a role in both nacre matrix formation and mineralization.</dcterms:abstract>
    <dspace:isPartOfCollection rdf:resource="https://kops.uni-konstanz.de/server/rdf/resource/123456789/29"/>
    <dc:contributor>Jain, Gaurav</dc:contributor>
    <dcterms:available rdf:datatype="http://www.w3.org/2001/XMLSchema#dateTime">2018-05-30T14:13:38Z</dcterms:available>
    <dc:creator>Koutsoumpeli, Eleni</dc:creator>
    <bibo:uri rdf:resource="https://kops.uni-konstanz.de/handle/123456789/42486"/>
    <dc:creator>Gebauer, Denis</dc:creator>
    <dcterms:issued>2018-05-08</dcterms:issued>
    <dspace:isPartOfCollection rdf:resource="https://kops.uni-konstanz.de/server/rdf/resource/123456789/52"/>
    <dc:contributor>Koutsoumpeli, Eleni</dc:contributor>
    <dc:creator>Huang, Yu-Chieh</dc:creator>
    <dc:contributor>Pendola, Martin</dc:contributor>
    <dc:creator>Jain, Gaurav</dc:creator>
    <dcterms:title>Selective Synergism Created by Interactive Nacre Framework-Associated Proteins Possessing EGF and vWA Motifs : Implications for Mollusk Shell Formation</dcterms:title>
    <dc:contributor>Johnson, Steven</dc:contributor>
    <dc:creator>Evans, John Spencer</dc:creator>
    <dc:language>eng</dc:language>
    <foaf:homepage rdf:resource="http://localhost:8080/"/>
  </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
Ja
Diese Publikation teilen