| Literature DB >> 24755223 |
Katharina Moschner1, Frederik Sündermann1, Heiko Meyer2, Abel Pereira da Graca1, Neele Appel1, Achim Paululat2, Lidia Bakota1, Roland Brandt3.
Abstract
The neuronal microtubule-associated protein Tau is expressed in different variants, and changes in Tau isoform composition occur during development and disease. Here, we investigate a potential role of the multivalent tau mRNA-binding proteins G3BP1 and IMP1 in regulating neuronal tau expression. We demonstrate that G3BP1 and IMP1 expression induces the formation of structures, which qualify as neuronal ribonucleoprotein (RNP) granules and concentrate multivalent proteins and mRNA. We show that RNP granule formation leads to a >30-fold increase in the ratio of high molecular weight to low molecular weight tau mRNA and an ∼12-fold increase in high molecular weight to low molecular weight Tau protein. We report that RNP granule formation is associated with increased neurite formation and enhanced process growth. G3BP1 deletion constructs that do not induce granule formation are also deficient in inducing neuronal sprouting or changing the expression pattern of tau. The data indicate that granule formation driven by multivalent proteins modulates tau isoform expression and suggest a morphoregulatory function of RNP granules during health and disease.Entities:
Keywords: G3BP1; IMP1; MAPs; Microscopic Imaging; Neurite Outgrowth; RNA Protein Granules; RNA-binding Protein; Tau mRNA; Tauopathies; mRNA
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Year: 2014 PMID: 24755223 PMCID: PMC4059124 DOI: 10.1074/jbc.M113.541425
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157