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Iscience
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May 22, 2023
Distinct synaptic pools of DAPK1 differentially regulate activity-dependent synaptic CaMKII accumulation
Jonathan E Tullis, K Ulrich Bayer
Scientific Reports
|
July 9, 2024
Induction of LTP mechanisms in dually innervated dendritic spines
Jonathan E Tullis, K Ulrich Bayer
Journal of Neurophysiology
|
April 21, 2021
Young DAPK1 knockout mice have altered presynaptic function
Dayton J Goodell, Jonathan E Tullis, K Ulrich Bayer
Plos One
|
July 28, 2020
The CaMKII K42M and K42R mutations are equivalent in suppressing kinase activity and targeting
Jonathan E Tullis, Nicole L Rumian, Carolyn Nicole Brown, et al.
Iscience
|
May 27, 2022
Aβ-induced synaptic impairments require CaMKII activity that is stimulated by indirect signaling events
Carolyn Nicole Brown, Nicole L Rumian, Jonathan E Tullis, et al.
Brain Research
|
October 23, 2021
CaMKIIα knockout protects from ischemic neuronal cell death after resuscitation from cardiac arrest
Nicole L Rumian, Nicholas E Chalmers, Jonathan E Tullis, et al.
Iscience
|
October 27, 2021
GluN2B S1303 phosphorylation by CaMKII or DAPK1: no indication for involvement in ischemia or LTP
Jonathan E Tullis, Olivia R Buonarati, Steven J Coultrap, et al.
Cell Reports
|
October 12, 2024
LTP expression mediated by autonomous activity of GluN2B-bound CaMKII
Nicole L Rumian, C Madison Barker, Matthew E Larsen, et al.
Cell Reports
|
January 9, 2020
CaMKII versus DAPK1 Binding to GluN2B in Ischemic Neuronal Cell Death after Resuscitation from Cardiac Arrest
Olivia R Buonarati, Sarah G Cook, Dayton J Goodell, et al.
Nature
|
August 30, 2023
LTP induction by structural rather than enzymatic functions of CaMKII
Jonathan E Tullis, Matthew E Larsen, Nicole L Rumian, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 12) with videos related to
Sort By:
Page
of 2
Iscience
|
May 22, 2023
Distinct synaptic pools of DAPK1 differentially regulate activity-dependent synaptic CaMKII accumulation
Jonathan E Tullis, K Ulrich Bayer
Scientific Reports
|
July 9, 2024
Induction of LTP mechanisms in dually innervated dendritic spines
Jonathan E Tullis, K Ulrich Bayer
Journal of Neurophysiology
|
April 21, 2021
Young DAPK1 knockout mice have altered presynaptic function
Dayton J Goodell, Jonathan E Tullis, K Ulrich Bayer
Plos One
|
July 28, 2020
The CaMKII K42M and K42R mutations are equivalent in suppressing kinase activity and targeting
Jonathan E Tullis, Nicole L Rumian, Carolyn Nicole Brown, et al.
Iscience
|
May 27, 2022
Aβ-induced synaptic impairments require CaMKII activity that is stimulated by indirect signaling events
Carolyn Nicole Brown, Nicole L Rumian, Jonathan E Tullis, et al.
Brain Research
|
October 23, 2021
CaMKIIα knockout protects from ischemic neuronal cell death after resuscitation from cardiac arrest
Nicole L Rumian, Nicholas E Chalmers, Jonathan E Tullis, et al.
Iscience
|
October 27, 2021
GluN2B S1303 phosphorylation by CaMKII or DAPK1: no indication for involvement in ischemia or LTP
Jonathan E Tullis, Olivia R Buonarati, Steven J Coultrap, et al.
Cell Reports
|
October 12, 2024
LTP expression mediated by autonomous activity of GluN2B-bound CaMKII
Nicole L Rumian, C Madison Barker, Matthew E Larsen, et al.
Cell Reports
|
January 9, 2020
CaMKII versus DAPK1 Binding to GluN2B in Ischemic Neuronal Cell Death after Resuscitation from Cardiac Arrest
Olivia R Buonarati, Sarah G Cook, Dayton J Goodell, et al.
Nature
|
August 30, 2023
LTP induction by structural rather than enzymatic functions of CaMKII
Jonathan E Tullis, Matthew E Larsen, Nicole L Rumian, et al.
Page
of 2