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Ablation of the pro-inflammatory master regulator miR-155 does not mitigate neuroinflammation or neurodegeneration in a vertebrate model of Gaucher's disease.
Watson, Lisa; Keatinge, Marcus; Gegg, Matthew; Bai, Qing; Sandulescu, M Cosmin; Vardi, Ayelet; Futerman, Anthony H; Schapira, Anthony H V; Burton, Edward A; Bandmann, Oliver.
Afiliación
  • Watson L; The Bateson Centre, University of Sheffield, Sheffield, UK; Sheffield Institute for Translational Neuroscience (SITraN), University of Sheffield, Sheffield, UK.
  • Keatinge M; The Bateson Centre, University of Sheffield, Sheffield, UK; Sheffield Institute for Translational Neuroscience (SITraN), University of Sheffield, Sheffield, UK.
  • Gegg M; Department of Clinical and Movement Neurosciences, UCL Queen Square Institute of Neurology, London, UK.
  • Bai Q; Pittsburgh Institute for Neurodegenerative Diseases and Department of Neurology, University of Pittsburgh School of Medicine, Pittsburgh, USA.
  • Sandulescu MC; Pittsburgh Institute for Neurodegenerative Diseases and Department of Neurology, University of Pittsburgh School of Medicine, Pittsburgh, USA.
  • Vardi A; Department of Biomolecular Sciences, Weizmann Institute of Science, Rehovot, Israel.
  • Futerman AH; Department of Biomolecular Sciences, Weizmann Institute of Science, Rehovot, Israel.
  • Schapira AHV; Department of Clinical and Movement Neurosciences, UCL Queen Square Institute of Neurology, London, UK.
  • Burton EA; Pittsburgh Institute for Neurodegenerative Diseases and Department of Neurology, University of Pittsburgh School of Medicine, Pittsburgh, USA.
  • Bandmann O; The Bateson Centre, University of Sheffield, Sheffield, UK; Sheffield Institute for Translational Neuroscience (SITraN), University of Sheffield, Sheffield, UK. Electronic address: o.bandmann@sheffield.ac.uk.
Neurobiol Dis ; 127: 563-569, 2019 07.
Article en En | MEDLINE | ID: mdl-30981829
Bi-allelic mutations in the glucocerebrosidase gene (GBA1) cause Gaucher's disease, the most common human lysosomal storage disease. We previously reported a marked increase in miR-155 transcript levels and early microglial activation in a zebrafish model of Gaucher's disease (gba1-/-). miR-155 is a master regulator of inflammation and has been implicated in a wide range of different neurodegenerative disorders. The observed miR-155 upregulation preceded the subsequent development of widespread pathology with marked neuroinflammation, closely resembling human Gaucher's disease pathology. We now report similar increases of miR-155 expression in mammalian models of GD, confirming that miR-155 upregulation is a shared feature in glucocerebrosidase (GCase) deficiency across different species. Using CRISPR/Cas9 mutagenesis we then generated a miR-155 mutant zebrafish line (miR-155-/-) with completely abolished miR-155 expression. Unexpectedly, loss of miR-155 did not mitigate either the reduced lifespan or the robust inflammatory phenotypes of gba1-/- mutant zebrafish. Our data demonstrate that neither neuroinflammation nor disease progression in GCase deficiency are dependent on miR-155 and suggest that miR-155 inhibition would not be a promising therapeutic target in Gaucher's disease.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: MicroARNs / Encefalitis / Enfermedad de Gaucher / Degeneración Nerviosa Límite: Animals Idioma: En Revista: Neurobiol Dis Asunto de la revista: NEUROLOGIA Año: 2019 Tipo del documento: Article Pais de publicación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: MicroARNs / Encefalitis / Enfermedad de Gaucher / Degeneración Nerviosa Límite: Animals Idioma: En Revista: Neurobiol Dis Asunto de la revista: NEUROLOGIA Año: 2019 Tipo del documento: Article Pais de publicación: Estados Unidos