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2023

Conference Publication

Tau - A master regulator of recycling synaptic vesicle clustering at the presynapse

Sanders, Shanley F., Mollazade, Mahdie, Wallis, Tristan P., Gormal, Rachel S., Joensuu, Merja, Wark, Jesse R., Waardenberg, Ashley J., Small, Christopher, Graham, Mark E., Martinez-Marmol, Ramon and Meunier, Frederic A. (2023). Tau - A master regulator of recycling synaptic vesicle clustering at the presynapse. ISN-ESN 2023 Meeting, Porto, Portugal, 8 - 11 August 2023. Chichester, West Sussex, United Kingdom: Wiley-Blackwell Publishing. doi: 10.1111/jnc.15897

Tau - A master regulator of recycling synaptic vesicle clustering at the presynapse

2018

Conference Publication

PKC Activation Induces Ubiquitination-Dependent KV1.3 Endocytosis Mediated by Nedd4-2 Ubiquitin Ligase

Martinez-Marmon, Ramon, Styrczewska, Katarzyna, Perez-Verdaguer, Mireia, Vallejo-Gracia, Albert, Comes, Nuria, Sorkin, Alexander and Felipe, Antonio (2018). PKC Activation Induces Ubiquitination-Dependent KV1.3 Endocytosis Mediated by Nedd4-2 Ubiquitin Ligase. 62nd Annual Meeting of the Biophysical-Society, San Francisco, CA United States, 17-21 February 2018. Cambridge, United Kingdom: Cell Press. doi: 10.1016/j.bpj.2017.11.1713

PKC Activation Induces Ubiquitination-Dependent KV1.3 Endocytosis Mediated by Nedd4-2 Ubiquitin Ligase

2017

Conference Publication

The C-Terminal Domain of Kv1.3 Interacts with KCNE4 to form Oligo-meric Channels

Roig, Sara R., Sole, Laura, Vallejo-Gracia, Albert, Sastre, Daniel, Serrano-Albarras, Antonio, Serrano-Novillo, Clara, Martinez-Marmol, Ramon, Tamkun, Michael M. and Felipe, Antonio (2017). The C-Terminal Domain of Kv1.3 Interacts with KCNE4 to form Oligo-meric Channels. 58th Annual Meeting of the Biophysical-Society, San Francisco, CA, United States, 15-19 February 2014. St. Louis, MO, United States: Cell Press. doi: 10.1016/j.bpj.2016.11.2944

The C-Terminal Domain of Kv1.3 Interacts with KCNE4 to form Oligo-meric Channels

2017

Conference Publication

Deciphering the Kv1.3/Caveolin Interaction

Perez-Verdaguer, Mireia, Capera, Jesusa, Martinez-Marmol, Ramon, Camps, Marta, Comes, Nuria, Tamkun, Michael M. and Felipe, Antonio (2017). Deciphering the Kv1.3/Caveolin Interaction. 58th Annual Meeting of the Biophysical-Society, San Francisco Ca, Feb 15-19, 2014. CELL PRESS. doi: 10.1016/j.bpj.2016.11.1375

Deciphering the Kv1.3/Caveolin Interaction

2017

Conference Publication

ERK1/2 Mediates EGF-Dependent Kv1.3 Endocytosis

Styrczewska, Katarzyna, Martinez-Marmol, Ramon, Comes, Nuria, Estadella, Irene, Perez-Verdaguer, Mireia, Pujadas, Lluis, Soriano, Eduardo, Sorkin, Alexander and Felipe, Antonio (2017). ERK1/2 Mediates EGF-Dependent Kv1.3 Endocytosis. 58th Annual Meeting of the Biophysical-Society, San Francisco Ca, Feb 15-19, 2014. CELL PRESS. doi: 10.1016/j.bpj.2016.11.1374

ERK1/2 Mediates EGF-Dependent Kv1.3 Endocytosis

2014

Conference Publication

A Non-Canonical Di-Acidic Signal at the C-Terminal of KV1.3 Determines Anterograde Trafficking and Surface Expression

Martinez-Marmol, Ramon, Perez-Verdaguer, Mireia, Roig, Sara R., Vallejo-Gracia, Albert, Gotsi, Pelagia, Serrano-Albarras, Antonio, Isabel Bahamonde, Ma, Ferrer-Montiel, Antonio, Fernandez-Ballester, Gregorio, Comes, Nuria and Felipe, Antonio (2014). A Non-Canonical Di-Acidic Signal at the C-Terminal of KV1.3 Determines Anterograde Trafficking and Surface Expression. 58th Annual Meeting of the Biophysical Society, San Francisco, CA United States, 15-19 February 2014. St. Louis, MO United States: Cell Press. doi: 10.1016/j.bpj.2013.11.4072

A Non-Canonical Di-Acidic Signal at the C-Terminal of KV1.3 Determines Anterograde Trafficking and Surface Expression

2014

Conference Publication

A DI-ACIDIC MOTIF IS RESPONSIBLE FOR Kv1.3 MEMBRANE SURFACE EXPRESSION VIA COPII-DEPENDENT MECHANISMS

Martinez-Marmol, R., Perez-Verdaguer, M., Roig, S. R., Vallejo-Gracia, A., Capera, J., Serrano-Albarras, A., Serrano-Novillo, C., Ferrer-Montiel, A., Fernandez-Ballester, G., Comes, N. and Felipe, A. (2014). A DI-ACIDIC MOTIF IS RESPONSIBLE FOR Kv1.3 MEMBRANE SURFACE EXPRESSION VIA COPII-DEPENDENT MECHANISMS. WILEY-BLACKWELL.

A DI-ACIDIC MOTIF IS RESPONSIBLE FOR Kv1.3 MEMBRANE SURFACE EXPRESSION VIA COPII-DEPENDENT MECHANISMS