Title : Mechanisms of Ca2+/calmodulin-dependent kinase II activation in single dendritic spines.

Pub. Date : 2019 Jun 25

PMID : 31239443






4 Functional Relationships(s)
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Protein Name
Organism
1 In response to a glutamate uncaging pulse, CaMKIIalpha-CaM association increases in ~0.1 s and decays over ~3 s. During repetitive glutamate uncaging, which induces spine structural plasticity, CaMKIIalpha-CaM association did not show further increase but sustained at a constant level. Glutamic Acid calmodulin 3 Homo sapiens
2 In response to a glutamate uncaging pulse, CaMKIIalpha-CaM association increases in ~0.1 s and decays over ~3 s. During repetitive glutamate uncaging, which induces spine structural plasticity, CaMKIIalpha-CaM association did not show further increase but sustained at a constant level. Glutamic Acid calmodulin 3 Homo sapiens
3 In response to a glutamate uncaging pulse, CaMKIIalpha-CaM association increases in ~0.1 s and decays over ~3 s. During repetitive glutamate uncaging, which induces spine structural plasticity, CaMKIIalpha-CaM association did not show further increase but sustained at a constant level. Glutamic Acid calmodulin 3 Homo sapiens
4 In response to a glutamate uncaging pulse, CaMKIIalpha-CaM association increases in ~0.1 s and decays over ~3 s. During repetitive glutamate uncaging, which induces spine structural plasticity, CaMKIIalpha-CaM association did not show further increase but sustained at a constant level. Glutamic Acid calmodulin 3 Homo sapiens