Related Experiment Video
Updated: May 3, 2026

Implantation of a Cranial Window for Repeated In Vivo Imaging in Awake Mice
Published on: June 22, 2021
miR-191 and miR-135 are required for long-lasting spine remodelling associated with synaptic long-term depression
Zhonghua Hu1, Danni Yu2, Qin-hua Gu1
1Unit on Synapse Development and Plasticity, National Institute of Mental Health, National Institutes of Health, Bethesda, Maryland 20892, USA.
Abstract:
Activity-dependent modification of dendritic spines, subcellular compartments accommodating postsynaptic specializations in the brain, is an important cellular mechanism for brain development, cognition and synaptic pathology of brain disorders. NMDA receptor-dependent long-term depression (NMDAR-LTD), a prototypic form of synaptic plasticity, is accompanied by prolonged remodelling of spines. The mechanisms underlying long-lasting spine remodelling in NMDAR-LTD, however, are largely unclear. Here we show that LTD induction causes global changes in miRNA transcriptomes affecting many cellular activities. Specifically, we show that expression changes of miR-191 and miR-135 are required for maintenance but not induction of spine restructuring. Moreover, we find that actin depolymerization and AMPA receptor exocytosis are regulated for extended periods of time by miRNAs to support long-lasting spine plasticity. These findings reveal a miRNA-mediated mechanism and a role for AMPA receptor exocytosis in long-lasting spine plasticity, and identify a number of candidate miRNAs involved in LTD.
Related Concept Videos
Long-term Depression
Calcium Ion Concentration Mechanism
If over...
Long-term Depression
Long-term Potentiation

