SUB NEURONAL LOCALIZATION OF ION CHANNELS IN THE PRECISELY FIRING MOTONEURON B1
Johannes Gutenberg Universität Mainz
Presentation
Date TBA
Event Information
Poster Board
PS03-08AM-535
Poster
View posterAbstract
This study uses the genetic tools of Drosophila to specifically target these ion channels and investigated in the sub-neuronal expression of voltage gated ion channels and their different splice variants in the b1 motor neuron.
We find, by using the FLP-Tag method, that the sodium channel para, which is important for generation of action potential (Loughney et. al., 1989), is forming a clearly defined spike initiation zone.
In general, our data allows us to couple sub-neuronal expressions of ion channels to the b1 motor neuron function.
Recommended posters
ION CHANNEL DEGENERACY AND NEURONAL MORPHOLOGY ENHANCE EXCITABILITY ROBUSTNESS IN DROSOPHILA FLIGHT MOTONEURONS
Selina Hilgert, Hannah Schultheiss, Nelson Niemeyer, Lion Huthmacher, Silvan Hürkey, Jan-Hendrik Schleimer, Susanne Schreiber, Carsten Duch, Stefanie Ryglewski
SPECIFIC ALTERNATIVE CACOPHONY SPLICE ISOFORMS ARE NECESSARY FOR FAST VERSUS GRADED SYNAPTIC TRANSMISSION IN DROSOPHILA
Tobias Rinas, Amber Lehmann, Veronica Pampanin, Stefanie Ryglewski
INVESTIGATING THE DYNAMIC REGULATION OF PRESYNAPTIC CAV2.1 CHANNELS IN SHORT-TERM PLASTICITY
Chiara Ercolano, Lorenzo Angelo Cingolani, Eugenio Francesco Fornasiero
PRESYNAPTIC PLASTICITY AT THE DROSOPHILA NMJ IS TRANSCRIPTIONALLY REGULATED
Kristina Kolb, Carsten Duch
MAPPING A COMPLETE CIRCUIT UNDERLYING FLEXIBLE SENSORIMOTOR TRANSFORMATIONS
Md Amit Hasan, Adrien Perron, Marie R. Greaney, Sandra Autran, Dylan Manceau, Ellie S. Heckscher, Jean-Baptiste Masson, Tihana Jovanic
ELECTROPHYSIOLOGICAL CHARACTERIZATION OF NAV1.7 AND KV7.2/3 CHANNELS IN HUMAN IPSC-DERIVED SENSORY NEURONS
Ilayda Söztekin, Sona Hostak, Steffen Hering