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It is widely accepted that long-term changes in synapse structure and function are mediated by rapid activity-dependent gene transcription and new protein synthesis. A growing amount of evidence suggests that the microRNA (miRNA) pathway plays an important role in coordinating these processes. Despi...
ORGANISM(S): Drosophila melanogaster 
It is widely accepted that long-term changes in synapse structure and function are mediated by rapid activity-dependent gene transcription and new protein synthesis. A growing amount of evidence suggests that the microRNA (miRNA) pathway plays an important role in coordinating these processes. Despi...
ORGANISM(S): Drosophila melanogaster 
Protein local synthesis at synapse is required for neuromuscular transmission
Purpose: To examine and characterize the expression profile of genes expressed at the neuromuscular junctions (NMJs) of extraocular muscles (EOMs) in comparison to the NMJs of tibialis anterior muscle (TA). Methods: Adult rat rectus EOMs and TAs were dissected, flash-frozen, serially sectioned and ...
ORGANISM(S): Rattus norvegicus 
This SuperSeries is composed of the SubSeries listed below. Refer to individual Series
ORGANISM(S): Drosophila melanogaster 
To profile the local translatome at the neuromuscular junction during various developmental stages We conducted RNA sequencing of synapse-enriched regions in the mouse diaphragms of both cre- and cre+ mice to investigate the local translatome at motor neuron terminals
ORGANISM(S): Mus musculus 
2024-08-26 | GSE238144 | GEO
The neuromuscular junction (NMJ) is a specialized tripartite synapse composed of the motor axon terminal, covered by perisynaptic Schwann cells (PSCs), and the muscle fibre, separated by a basal lamina. It is exposed to different kind of injures such as mechanical traumas, pathogens including neurot...
ORGANISM(S): Mus musculus 
Muscle denervation due to injury, disease or aging results in impaired motor function. Restoring neuromuscular communication requires axonal regrowth and regeneration of neuromuscular synapses. Muscle activity inhibits neuromuscular synapse regeneration. The mechanism by which muscle activity regu...
ORGANISM(S): Mus musculus 
The development of the neuromuscular synapse depends on signaling processes which involve protein phosphorylation as a crucial regulatory event. The receptor tyrosine kinase MuSK is the key signaling molecule at the neuromuscular synapse whose activity is required for the formation of a mature and f...
ORGANISM(S): Mus musculus (Mouse) 
2014-06-05 | PXD000558 | Pride
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