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1. FMRP phosphorylation and interactions with Cdh1 regulate association with dendritic RNA granules and MEF2-triggered synapse elimination.

2. Development of single-molecule ubiquitination mediated fluorescence complementation to visualize protein ubiquitination dynamics in dendrites.

3. Diversity on location.

4. FMRP attenuates activity dependent modifications in the mitochondrial proteome.

5. Cell-type-specific profiling of human cellular models of fragile X syndrome reveal PI3K-dependent defects in translation and neurogenesis.

6. Regulation of RNA granules by FMRP and implications for neurological diseases.

7. Cortical neurons derived from human pluripotent stem cells lacking FMRP display altered spontaneous firing patterns.

8. FMRP promotes RNA localization to neuronal projections through interactions between its RGG domain and G-quadruplex RNA sequences.

9. A native function for RAN translation and CGG repeats in regulating fragile X protein synthesis.

10. FMRP - G-quadruplex mRNA - miR-125a interactions: Implications for miR-125a mediated translation regulation of PSD-95 mRNA.

11. Homeostatic Intrinsic Plasticity Is Functionally Altered in Fmr1 KO Cortical Neurons.

12. Aberrant RNA translation in fragile X syndrome: From FMRP mechanisms to emerging therapeutic strategies.

13. The Conserved, Disease-Associated RNA Binding Protein dNab2 Interacts with the Fragile X Protein Ortholog in Drosophila Neurons.

14. Fragile X mental retardation protein recognizes a G quadruplex structure within the survival motor neuron domain containing 1 mRNA 5'-UTR.

15. Identification of consensus binding sites clarifies FMRP binding determinants.

16. Fragile X mental retardation protein interactions with a G quadruplex structure in the 3'-untranslated region of NR2B mRNA.

17. A 3' untranslated region variant in FMR1 eliminates neuronal activity-dependent translation of FMRP by disrupting binding of the RNA-binding protein HuR.

18. Dysregulation and restoration of translational homeostasis in fragile X syndrome.

19. Analysis of FMRP mRNA target datasets reveals highly associated mRNAs mediated by G-quadruplex structures formed via clustered WGGA sequences.

20. FMRP interacts with G-quadruplex structures in the 3'-UTR of its dendritic target Shank1 mRNA.

21. Genetic and acute CPEB1 depletion ameliorate fragile X pathophysiology.

22. Excess protein synthesis in FXS patient lymphoblastoid cells can be rescued with a p110β-selective inhibitor.

23. Dephosphorylation-induced ubiquitination and degradation of FMRP in dendrites: a role in immediate early mGluR-stimulated translation.

24. Fragile balance: RNA editing tunes the synapse.

25. Reversible inhibition of PSD-95 mRNA translation by miR-125a, FMRP phosphorylation, and mGluR signaling.

26. Fragile X mental retardation protein regulates protein expression and mRNA translation of the potassium channel Kv4.2.

27. Fragile X syndrome: loss of local mRNA regulation alters synaptic development and function.

28. S6K1 phosphorylates and regulates fragile X mental retardation protein (FMRP) with the neuronal protein synthesis-dependent mammalian target of rapamycin (mTOR) signaling cascade.

29. A direct role for FMRP in activity-dependent dendritic mRNA transport links filopodial-spine morphogenesis to fragile X syndrome.

30. Dynamic association of the fragile X mental retardation protein as a messenger ribonucleoprotein between microtubules and polyribosomes.

31. FMRP phosphorylation reveals an immediate-early signaling pathway triggered by group I mGluR and mediated by PP2A.

32. Fragile X mental retardation protein deficiency leads to excessive mGluR5-dependent internalization of AMPA receptors.

33. Local functions for FMRP in axon growth cone motility and activity-dependent regulation of filopodia and spine synapses.

34. Excess PI3K subunit synthesis and activity as a novel therapeutic target in Fragile X Syndrome

35. Dysregulated Metabotropic Glutamate Receptor-Dependent Translation of AMPA Receptor and Postsynaptic Density-95 mRNAs at Synapses in a Mouse Model of Fragile X Syndrome.

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