Structure of the CaMKIIdelta/calmodulin complex reveals the molecular mechanism of CaMKII kinase activation
Long-term potentiation (LTP), a long-lasting enhancement in communication between neurons, is considered to be the major cellular mechanism underlying learning and memory. LTP triggers high-frequency calcium pulses that result in the activation of Calcium/Calmodulin (CaM)-dependent kinase II (CaMKII...
Hlavní autoři: | Rellos, P, Pike, A, Niesen, F, Salah, E, Lee, W, Von Delft, F, Knapp, S |
---|---|
Médium: | Journal article |
Jazyk: | English |
Vydáno: |
Public Library of Science
2010
|
Podobné jednotky
-
Structure of the CaMKIIdelta/calmodulin complex reveals the molecular mechanism of CaMKII kinase activation.
Autor: Rellos, P, a další
Vydáno: (2010) -
Interactions between calmodulin and neurogranin govern the dynamics of CaMKII as a leaky integrator.
Autor: Mariam Ordyan, a další
Vydáno: (2020-07-01) -
Enhanced Cardiac CaMKII Oxidation and CaMKII-Dependent SR Ca Leak in Patients with Sleep-Disordered Breathing
Autor: Michael Arzt, a další
Vydáno: (2022-02-01) -
Studying CaMKII: Tools and standards
Autor: Carolyn Nicole Brown, a další
Vydáno: (2024-04-01) -
Active Calcium/Calmodulin-Dependent Protein Kinase II (CaMKII) Regulates NMDA Receptor Mediated Postischemic Long-Term Potentiation (i-LTP) by Promoting the Interaction between CaMKII and NMDA Receptors in Ischemia
Autor: Ning Wang, a další
Vydáno: (2014-01-01)