ID: hsa04730
Name: long term_depression
Brief Description: Long-term depression
Full Description: Cerebellar long-term depression (LTD), thought to be a molecular and cellular basis for cerebellar learning, is a process involving a decrease in the synaptic strength between parallel fiber (PF) and Purkinje cells (PCs) induced by the conjunctive activation of PFs and climbing fiber (CF). Multiple signal transduction pathways have been shown to be involved in this process. Activation of PFs terminating on spines in dendritic branchlets leads to glutamate release and activation of both AMPA and mGluRs. Activation of CFs, which make multiple synaptic contacts on proximal dendrites, also via AMPA receptors, opens voltage-gated calcium channels (VGCCs) and causes a generalized influx of calcium. These cellular signals, generated from two different synaptic origins, trigger a cascade of events culminating in a phosphorylation-dependent, long-term reduction in AMPA receptor sensitivity at the PF-PC synapse. This may take place either through receptor internalization and/or through receptor desensitization.
No. of Studies (Positive/Negative)
1 (1/0)
Positive relationship between Long-term depression and MDD (count: 1)
We found 17 significantly enriched pathways for depression
We found 17 significantly enriched pathways for depression
Positive relationships between Long-term depression and other components at different levels (count: 0)
Positive relationship network of Long-term depression in MK4MDD
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Note:
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Genetic/Epigenetic Locus
Protein and Other Molecule
Cell and Molecular Pathway
Neural System
Cognition and Behavior
Symptoms and Signs
Environment
MDD
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Negative relationships between Long-term depression and MDD (count: 0)
Negative relationships between Long-term depression and other components at different levels (count: 0)
Pathway Long-term depression related genes in MK4MDD (count: 19)