Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Cachope, Roger
Mackie, Ken
Triller, Antoine
O'Brien, John
and
Pereda, Alberto E.
2007.
Potentiation of Electrical and Chemical Synaptic Transmission Mediated by Endocannabinoids.
Neuron,
Vol. 56,
Issue. 6,
p.
1034.
Zsiros, Veronika
and
Maccaferri, Gianmaria
2008.
Noradrenergic Modulation of Electrical Coupling in GABAergic Networks of the Hippocampus.
The Journal of Neuroscience,
Vol. 28,
Issue. 8,
p.
1804.
Alev, Cantas
Urschel, Stephanie
Sonntag, Stephan
Zoidl, Georg
Fort, Alfredo G.
Höher, Thorsten
Matsubara, Mamoru
Willecke, Klaus
Spray, David C.
and
Dermietzel, Rolf
2008.
The neuronal connexin36 interacts with and is phosphorylated by CaMKII in a way similar to CaMKII interaction with glutamate receptors.
Proceedings of the National Academy of Sciences,
Vol. 105,
Issue. 52,
p.
20964.
Abd-El-Barr, Muhammad M.
Pennesi, Mark E.
Saszik, Shannon M.
Barrow, Andrew J.
Lem, Janis
Bramblett, Debra E.
Paul, David L.
Frishman, Laura J.
and
Wu, Samuel M.
2009.
Genetic Dissection of Rod and Cone Pathways in the Dark-Adapted Mouse Retina.
Journal of Neurophysiology,
Vol. 102,
Issue. 3,
p.
1945.
Li, Hongyan
Chuang, Alice Z.
and
O'Brien, John
2009.
Photoreceptor Coupling Is Controlled by Connexin 35 Phosphorylation in Zebrafish Retina.
The Journal of Neuroscience,
Vol. 29,
Issue. 48,
p.
15178.
Lefkimmiatis, Konstantinos
Moyer, Mary Pat
Curci, Silvana
Hofer, Aldebaran M.
and
Steinhardt, Richard
2009.
“cAMP Sponge”: A Buffer for Cyclic Adenosine 3′, 5′-Monophosphate.
PLoS ONE,
Vol. 4,
Issue. 11,
p.
e7649.
Massey, Stephen C.
2009.
Connexins.
p.
397.
Kihara, A.H.
Paschon, V.
Cardoso, C.M.
Higa, G.S.V.
Castro, L.M.
Hamassaki, D.E.
and
Britto, L.R.G.
2009.
Connexin36, an essential element in the rod pathway, is highly expressed in the essentially rodless retina of Gallus gallus.
Journal of Comparative Neurology,
Vol. 512,
Issue. 5,
p.
651.
Kothmann, W. Wade
Massey, Stephen C.
and
O'Brien, John
2009.
Dopamine-Stimulated Dephosphorylation of Connexin 36 Mediates AII Amacrine Cell Uncoupling.
The Journal of Neuroscience,
Vol. 29,
Issue. 47,
p.
14903.
Hoshi, Hideo
and
Mills, Stephen L.
2009.
Components and properties of the G3 ganglion cell circuit in the rabbit retina.
Journal of Comparative Neurology,
Vol. 513,
Issue. 1,
p.
69.
Fossella, John A.
Guise, Kevin
and
Fan, Jin
2010.
Genetics as a tool for the dissociation of mental operations over the course of development.
Annals of the New York Academy of Sciences,
Vol. 1191,
Issue. 1,
p.
110.
Haas, Julie S.
Zavala, Baltazar
and
Landisman, Carole E.
2011.
Activity-Dependent Long-Term Depression of Electrical Synapses.
Science,
Vol. 334,
Issue. 6054,
p.
389.
Bosco, Domenico
Haefliger, Jacques-Antoine
and
Meda, Paolo
2011.
Connexins: Key Mediators of Endocrine Function.
Physiological Reviews,
Vol. 91,
Issue. 4,
p.
1393.
Ul-Hussain, Mahboob
Dermietzel, Rolf
and
Zoidl, Georg
2012.
Connexins and Cap-independent translation: Role of internal ribosome entry sites.
Brain Research,
Vol. 1487,
Issue. ,
p.
99.
Kothmann, W. Wade
Trexler, E. Brady
Whitaker, Christopher M.
Li, Wei
Massey, Stephen C.
and
O'Brien, John
2012.
Nonsynaptic NMDA Receptors Mediate Activity-Dependent Plasticity of Gap Junctional Coupling in the AII Amacrine Cell Network.
The Journal of Neuroscience,
Vol. 32,
Issue. 20,
p.
6747.
Curti, Sebastian
Hoge, Gregory
Nagy, James I.
and
Pereda, Alberto E.
2012.
Synergy between Electrical Coupling and Membrane Properties Promotes Strong Synchronization of Neurons of the Mesencephalic Trigeminal Nucleus.
The Journal of Neuroscience,
Vol. 32,
Issue. 13,
p.
4341.
Flores, Carmen E.
Nannapaneni, Srikant
Davidson, Kimberly G. V.
Yasumura, Thomas
Bennett, Michael V. L.
Rash, John E.
and
Pereda, Alberto E.
2012.
Trafficking of gap junction channels at a vertebrate electrical synapse in vivo.
Proceedings of the National Academy of Sciences,
Vol. 109,
Issue. 9,
Li, X.
Lynn, B. D.
and
Nagy, J. I.
2012.
The effector and scaffolding proteins AF6 and MUPP1 interact with connexin36 and localize at gap junctions that form electrical synapses in rodent brain.
European Journal of Neuroscience,
Vol. 35,
Issue. 2,
p.
166.
Haas, Julie S.
and
Landisman, Carole E.
2012.
Bursts modify electrical synaptic strength.
Brain Research,
Vol. 1487,
Issue. ,
p.
140.
Márquez-Rosado, Lucrecia
Solan, Joell L.
Dunn, Clarence A.
Norris, Rachael P.
and
Lampe, Paul D.
2012.
Connexin43 phosphorylation in brain, cardiac, endothelial and epithelial tissues.
Biochimica et Biophysica Acta (BBA) - Biomembranes,
Vol. 1818,
Issue. 8,
p.
1985.