apple-itunes-app: app-id=409367154 prism.endingPage: 713 citation_title: The bicoid mRNA localization factor Exuperantia is an RNA-binding pseudonuclease WT.cg_s: Article access: Yes keywords: X-ray crystallography, Developmental biology, RNA, RNA-binding proteins emanating: 134X76X223X157 citation_publisher: Nature Research citation_journal_title: Nature Structural & Molecular Biology description: The crystal structure of the putative exonuclease Exuperantia, required for Drosophila anterior patterning, reveals an EXO-SAM-like domain architecture that is catalytically inactive but mediates dimerization and RNA binding, which are essential for bicoid localization. WT.site_id: 18696 citation_date: 2016-08-01 title: Quality of the electron density. : The bicoid mRNA localization factor Exuperantia is an RNA-binding pseudonuclease : Nature Structural & Molecular Biology : Nature Research DC.title: The bicoid mRNA localization factor Exuperantia is an RNA-binding pseudonuclease DC.date: 2016-07-04 prism.issn: 1545-9993 DC.publisher: Nature Research citation_online_date: 2016-07-04 WT.cg_n: Nature Structural & Molecular Biology DC.creator: Daniela Lazzaretti prism.issue: 8 DC.identifier: doi:10.1038/nsmb.3254 dc:title: Quality of the electron density. : The bicoid mRNA localization factor Exuperantia is an RNA-binding pseudonuclease : Nature Structural & Molecular Biology : Nature Research Content-Encoding: UTF-8 prism.publicationDate: 2016-07-04 robots: noarchive DC.rights: © 2016 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved. Content-Type: text/html; charset=UTF-8 citation_fulltext_world_readable: X-Parsed-By: org.apache.tika.parser.DefaultParser prism.rightsAgent: permissions@nature.com citation_author: Daniela Lazzaretti citation_issue: 8 prism.eIssn: 1545-9985 X-UA-Compatible: IE=edge DC.language: en prism.volume: 23 citation_firstpage: 705 prism.startingPage: 705 WT.template: C viewport: width=device-width, initial-scale=1, maximum-scale=2.5 prism.publicationName: Nature Structural & Molecular Biology citation_doi: doi:10.1038/nsmb.3254 prism.section: Article citation_volume: 23 WT.site_id_name: Max Planck Inst for Biophysical Chemistry (Karl Friedrich Bonhoeffer Inst) Content-Language: en prism.copyright: © 2016 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.