Sandbox Reserved 1649: Difference between revisions
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<Structure load='2a5s' size='350' frame='true' align='right' caption='Crystal Structure Of The NR2A Ligand Binding Core In Complex With Glutamate' scene='Insert optional scene name here' /> | <Structure load='2a5s' size='350' frame='true' align='right' caption='Crystal Structure Of The NR2A Ligand Binding Core In Complex With Glutamate' scene='Insert optional scene name here' /> | ||
== NR2A (2A5S) == | == NR2A (2A5S) == | ||
NR2A is a protein which is a part of [https://en.wikipedia.org/wiki/NMDA_receptor NMDA receptors], heterodimer channels composed of four subunits. Indeed, NMDA receptors are made of the association between two NR2 and two NR1 proteins. NMDA receptors play a key role in mammalian central nervous system, as they act in Ca2+ influx in synapses in response to glutamate and glycine binding. Their role is essential for learning and memory. Variety of NR2 allows modulation of NMDAr. In the other hand, [https://www.youtube.com/watch?fbclid=IwAR163EHEh3RM8BXt-_4aiecrCgkF83HoyOefyU63d_CQwoqN5RHShYfLDnM&v=4-DuvwoH2zQ&feat NMDA receptor is related to AMPA receptor in the same synapse.] | NR2A is a protein which is a part of [https://en.wikipedia.org/wiki/NMDA_receptor NMDA receptors], heterodimer channels composed of four subunits. Indeed, NMDA receptors are made of the association between two NR2 and two NR1 proteins. NMDA receptors play a key role in mammalian central nervous system, as they act in Ca2+ influx in synapses in response to <scene name='86/868182/Lbd/3'>glutamate</scene> and glycine binding. Their role is essential for learning and memory. Variety of NR2 allows modulation of NMDAr. In the other hand, [https://www.youtube.com/watch?fbclid=IwAR163EHEh3RM8BXt-_4aiecrCgkF83HoyOefyU63d_CQwoqN5RHShYfLDnM&v=4-DuvwoH2zQ&feat NMDA receptor is related to AMPA receptor in the same synapse.] | ||