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Impaired Local Translation of ß-actin mRNA in Ighmbp2-Deficient Motoneurons: Implications for Spinal Muscular Atrophy with respiratory Distress (SMARD1).
Surrey, Verena; Zöller, Caren; Lork, Alicia Andrea; Moradi, Mehri; Balk, Stefanie; Dombert, Benjamin; Saal-Bauernschubert, Lena; Briese, Michael; Appenzeller, Silke; Fischer, Utz; Jablonka, Sibylle.
Afiliación
  • Surrey V; Institute of Clinical Neurobiology, University Hospital Würzburg, Würzburg, Germany.
  • Zöller C; Institute of Clinical Neurobiology, University Hospital Würzburg, Würzburg, Germany.
  • Lork AA; Institute of Clinical Neurobiology, University Hospital Würzburg, Würzburg, Germany.
  • Moradi M; Institute of Clinical Neurobiology, University Hospital Würzburg, Würzburg, Germany.
  • Balk S; Institute of Clinical Neurobiology, University Hospital Würzburg, Würzburg, Germany.
  • Dombert B; Institute of Clinical Neurobiology, University Hospital Würzburg, Würzburg, Germany.
  • Saal-Bauernschubert L; Institute of Clinical Neurobiology, University Hospital Würzburg, Würzburg, Germany.
  • Briese M; Institute of Clinical Neurobiology, University Hospital Würzburg, Würzburg, Germany.
  • Appenzeller S; Comprehensive Cancer Center Mainfranken, University Hospital Würzburg, Würzburg, Germany; Core Unit SysMed, University of Würzburg, Würzburg, Germany.
  • Fischer U; Theodor-Boveri-Institute at the Biocenter, Am Hubland, University Würzburg, Würzburg, Germany.
  • Jablonka S; Institute of Clinical Neurobiology, University Hospital Würzburg, Würzburg, Germany. Electronic address: Jablonka_S@ukw.de.
Neuroscience ; 386: 24-40, 2018 08 21.
Article en En | MEDLINE | ID: mdl-29928949
ABSTRACT
Spinal muscular atrophy with respiratory distress type 1 (SMARD1) is a fatal motoneuron disorder in children with unknown etiology. The disease is caused by mutations in the IGHMBP2 gene, encoding a Super Family 1 (SF1)-type RNA/DNA helicase. IGHMBP2 is a cytosolic protein that binds to ribosomes and polysomes, suggesting a role in mRNA metabolism. Here we performed morphological and functional analyses of isolated immunoglobulin µ-binding protein 2 (Ighmbp2)-deficient motoneurons to address the question whether the SMARD1 phenotype results from de-regulation of protein biosynthesis. Ighmbp2-deficient motoneurons exhibited only moderate morphological aberrations such as a slight increase of axonal branches. Consistent with the rather mild phenotypic aberrations, RNA sequencing of Ighmbp2-deficient motoneurons revealed only minor transcriptome alterations compared to controls. Likewise, we did not detect any global changes in protein synthesis using pulsed SILAC (Stable Isotope Labeling by Amino acids in Cell culture), FUNCAT (FlUorescent Non-Canonical Amino acid Tagging) and SUnSET (SUrface SEnsing of Translation) approaches. However, we observed reduced ß-actin protein levels at the growth cone of Ighmbp2-deficient motoneurons which was accompanied by reduced level of IMP1/ZBP1, a known interactor of ß-actin mRNA. Fluorescence Recovery after Photobleaching (FRAP) studies revealed translational down-regulation of an eGFP-myr-ß-actin 3'UTR mRNA in growth cones. Local translational regulation of ß-actin mRNA was dependent on the 3' UTR but independent of direct Ighmbp2-binding to ß-actin mRNA. Taken together, our data indicate that Ighmbp2 deficiency results in local but modest disruption of protein biosynthesis which might partially contribute to the motoneuron defects seen in SMARD1.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Síndrome de Dificultad Respiratoria del Recién Nacido / Factores de Transcripción / ARN Mensajero / Atrofia Muscular Espinal / Actinas / Proteínas de Unión al ADN / Neuronas Motoras Límite: Animals / Female / Humans / Pregnancy Idioma: En Revista: Neuroscience Año: 2018 Tipo del documento: Article País de afiliación: Alemania

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Síndrome de Dificultad Respiratoria del Recién Nacido / Factores de Transcripción / ARN Mensajero / Atrofia Muscular Espinal / Actinas / Proteínas de Unión al ADN / Neuronas Motoras Límite: Animals / Female / Humans / Pregnancy Idioma: En Revista: Neuroscience Año: 2018 Tipo del documento: Article País de afiliación: Alemania
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