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The RNA-binding protein, ZC3H14, is critical for control of
polyadenylation and translation, neuronal development, brain
morphology, and working memory in mice
1 de 10
Age-dependent, region-specific mechanisms contribute to Spinocerebellar Ataxia 17 pathogenesis.
2 de 10
Neuronal Function of hnRNP-Q1: Identification of a Novel Mechanism for Gap-43 mRNA Translation Regulation
3 de 10
Novel Systems to Investigate Interactions between Functional RNAElements and Candidate Trans-factors
4 de 10
The polyadenosine RNA-binding protein dNab2 interacts with the fragile X protein homolog and regulates gene expression in Drosophila neurons
5 de 10
SMN functions as a molecular chaperone for mRNP assembly
6 de 10
The Role of Classical Nuclear Import Receptors during Myogenesis
7 de 10
Generation of Export-Competent mRNPs
8 de 10
Recognition of Polyadenosine RNA
9 de 10
Defining the function of the polyadenosine RNA-binding protein ZC3H14: Molecular insight into a disease associated RNA-binding protein
10 de 10