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Many neural circuits show fast reconfiguration following altered sensory or modulatory inputs to generate stereotyped outputs. In the motor circuit of Xenopus tadpoles, I study how certain voltage-dependent ionic currents affect firing thresholds and contribute to circuit reconfiguration to generate two distinct motor patterns, swimming and struggling. Firing thresholds of excitatory interneurons [i.e., descending interneurons (dINs)] in the swimming central pattern generator are raised by depolarization due to the inactivation of Na(+) currents. In contrast, the thresholds of other types of neurons active in swimming or struggling are raised by hyperpolarization from the activation of fast transient K(+) currents. The firing thresholds are then compared with the excitatory synaptic drives, which are revealed by blocking action potentials intracellularly using QX314 during swimming and struggling. During swimming, transient K(+) currents lower neuronal excitability and gate out neurons with weak excitation, whereas their inactivation by strong excitation in other neurons increases excitability and enables fast synaptic potentials to drive reliable firing. During struggling, continuous sensory inputs lead to high levels of network excitation. This allows the inactivation of Na(+) currents and suppression of dIN activity while inactivating transient K(+) currents, recruiting neurons that are not active in swimming. Therefore, differential expression of these currents between neuron types can explain why synaptic strength does not predict firing reliability/intensity during swimming and struggling. These data show that intrinsic properties can override fast synaptic potentials, mediate circuit reconfiguration, and contribute to motor-pattern switching.
Bekkers,
Modulation of excitability by alpha-dendrotoxin-sensitive potassium channels in neocortical pyramidal neurons.
2001, Pubmed
Bekkers,
Modulation of excitability by alpha-dendrotoxin-sensitive potassium channels in neocortical pyramidal neurons.
2001,
Pubmed Berkowitz,
Physiology and morphology of shared and specialized spinal interneurons for locomotion and scratching.
2008,
Pubmed Berkowitz,
Roles for multifunctional and specialized spinal interneurons during motor pattern generation in tadpoles, zebrafish larvae, and turtles.
2010,
Pubmed
,
Xenbase Berkowitz,
Spinal interneurons that are selectively activated during fictive flexion reflex.
2007,
Pubmed Blitz,
Different sensory systems share projection neurons but elicit distinct motor patterns.
2004,
Pubmed Bostock,
Activity-dependent excitability changes in normal and demyelinated rat spinal root axons.
1985,
Pubmed Briggman,
Imaging dedicated and multifunctional neural circuits generating distinct behaviors.
2006,
Pubmed Briggman,
Multifunctional pattern-generating circuits.
2008,
Pubmed Combes,
Motor pattern specification by dual descending pathways to a lobster rhythm-generating network.
1999,
Pubmed Combes,
Dynamic restructuring of a rhythmic motor program by a single mechanoreceptor neuron in lobster.
1999,
Pubmed Dale,
Kinetic characterization of the voltage-gated currents possessed by Xenopus embryo spinal neurons.
1995,
Pubmed
,
Xenbase Dale,
A large, sustained Na(+)- and voltage-dependent K+ current in spinal neurons of the frog embryo.
1993,
Pubmed
,
Xenbase Dale,
Ion channels and the control of swimming in the Xenopus embryo.
1997,
Pubmed
,
Xenbase Dan,
Spike timing-dependent plasticity: from synapse to perception.
2006,
Pubmed Dekin,
In vitro characterization of neurons in the ventral part of the nucleus tractus solitarius. II. Ionic basis for repetitive firing patterns.
1987,
Pubmed Dickinson,
Neuropeptide fusion of two motor-pattern generator circuits.
1990,
Pubmed Frigon,
Reconfiguration of the spinal interneuronal network during locomotion in vertebrates.
2009,
Pubmed Getting,
Emerging principles governing the operation of neural networks.
1989,
Pubmed Grillner,
The motor infrastructure: from ion channels to neuronal networks.
2003,
Pubmed Hara,
Iontophoretic application of an A-type potassium channel blocker to the trigeminal ganglion neurons enhances the excitability of Aδ- and C-neurons innervating the temporomandibular joint in rats.
2012,
Pubmed Harnett,
Potassium channels control the interaction between active dendritic integration compartments in layer 5 cortical pyramidal neurons.
2013,
Pubmed Harris-Warrick,
Voltage-sensitive ion channels in rhythmic motor systems.
2002,
Pubmed Harris-Warrick,
Dopamine modulation of transient potassium current evokes phase shifts in a central pattern generator network.
1995,
Pubmed Hess,
Characterization of a high-voltage-activated IA current with a role in spike timing and locomotor pattern generation.
2001,
Pubmed HODGKIN,
A quantitative description of membrane current and its application to conduction and excitation in nerve.
1952,
Pubmed Hoffman,
K+ channel regulation of signal propagation in dendrites of hippocampal pyramidal neurons.
1997,
Pubmed Hu,
Intracellular QX-314 causes depression of membrane potential oscillations in lamprey spinal neurons during fictive locomotion.
2002,
Pubmed Huss,
Roles of ionic currents in lamprey CpG neurons: a modeling study.
2007,
Pubmed Johnston,
Dendritic potassium channels in hippocampal pyramidal neurons.
2000,
Pubmed Li,
Persistent responses to brief stimuli: feedback excitation among brainstem neurons.
2006,
Pubmed
,
Xenbase Li,
The control of locomotor frequency by excitation and inhibition.
2012,
Pubmed
,
Xenbase Li,
Reconfiguration of a vertebrate motor network: specific neuron recruitment and context-dependent synaptic plasticity.
2007,
Pubmed
,
Xenbase Li,
The generation of antiphase oscillations and synchrony by a rebound-based vertebrate central pattern generator.
2014,
Pubmed
,
Xenbase Li,
Defining classes of spinal interneuron and their axonal projections in hatchling Xenopus laevis tadpoles.
2001,
Pubmed
,
Xenbase Li,
Specific brainstem neurons switch each other into pacemaker mode to drive movement by activating NMDA receptors.
2010,
Pubmed
,
Xenbase Liao,
Shared versus specialized glycinergic spinal interneurons in axial motor circuits of larval zebrafish.
2008,
Pubmed Lisman,
Bursts as a unit of neural information: making unreliable synapses reliable.
1997,
Pubmed Magee,
Dendritic voltage-gated ion channels regulate the action potential firing mode of hippocampal CA1 pyramidal neurons.
1999,
Pubmed Marder,
Principles of rhythmic motor pattern generation.
1996,
Pubmed Marder,
Understanding circuit dynamics using the stomatogastric nervous system of lobsters and crabs.
2007,
Pubmed Meyrand,
Dynamic construction of a neural network from multiple pattern generators in the lobster stomatogastric nervous system.
1994,
Pubmed Morton,
Neural architectures for adaptive behavior.
1994,
Pubmed Moult,
Fast silencing reveals a lost role for reciprocal inhibition in locomotion.
2013,
Pubmed
,
Xenbase Noble,
The threshold conditions for initiation of action potentials by excitable cells.
1966,
Pubmed Norris,
A central pattern generator producing alternative outputs: temporal pattern of premotor activity.
2006,
Pubmed Pace,
Role of persistent sodium current in mouse preBötzinger Complex neurons and respiratory rhythm generation.
2007,
Pubmed Parker,
The activity-dependent plasticity of segmental and intersegmental synaptic connections in the lamprey spinal cord.
2000,
Pubmed Ping,
Shal/K(v)4 channels are required for maintaining excitability during repetitive firing and normal locomotion in Drosophila.
2011,
Pubmed Popescu,
Highly dissimilar behaviors mediated by a multifunctional network in the marine mollusk Tritonia diomedea.
2002,
Pubmed Prinz,
The functional consequences of changes in the strength and duration of synaptic inputs to oscillatory neurons.
2003,
Pubmed Pulver,
Spike integration and cellular memory in a rhythmic network from Na+/K+ pump current dynamics.
2010,
Pubmed Rauscent,
Opposing aminergic modulation of distinct spinal locomotor circuits and their functional coupling during amphibian metamorphosis.
2009,
Pubmed
,
Xenbase Ribera,
Differentiation of IKA in amphibian spinal neurons.
1990,
Pubmed
,
Xenbase Ritter,
In vivo imaging of zebrafish reveals differences in the spinal networks for escape and swimming movements.
2001,
Pubmed Roberts,
How neurons generate behavior in a hatchling amphibian tadpole: an outline.
2010,
Pubmed
,
Xenbase Sautois,
Role of type-specific neuron properties in a spinal cord motor network.
2007,
Pubmed Seutin,
Differences in Na+ conductance density and Na+ channel functional properties between dopamine and GABA neurons of the rat substantia nigra.
2010,
Pubmed Sillar,
Neuromodulation and developmental plasticity in the locomotor system of anuran amphibians during metamorphosis.
2008,
Pubmed
,
Xenbase Snape,
Excitability parameters and sensitivity to anemone toxin ATX-II in rat small diameter primary sensory neurones discriminated by Griffonia simplicifolia isolectin IB4.
2010,
Pubmed Soffe,
Two distinct rhythmic motor patterns are driven by common premotor and motor neurons in a simple vertebrate spinal cord.
1993,
Pubmed
,
Xenbase Soffe,
Defining the excitatory neurons that drive the locomotor rhythm in a simple vertebrate: insights into the origin of reticulospinal control.
2009,
Pubmed
,
Xenbase Storm,
Temporal integration by a slowly inactivating K+ current in hippocampal neurons.
1988,
Pubmed Takahashi,
Hyperexcitability of bladder afferent neurons associated with reduction of Kv1.4 α-subunit in rats with spinal cord injury.
2013,
Pubmed Talbot,
Intracellular QX-314 inhibits calcium currents in hippocampal CA1 pyramidal neurons.
1996,
Pubmed Tierney,
Physiological role of the transient potassium current in the pyloric circuit of the lobster stomatogastric ganglion.
1992,
Pubmed Wall,
A slowly activating Ca(2+)-dependent K+ current that plays a role in termination of swimming in Xenopus embryos.
1995,
Pubmed
,
Xenbase Wang,
Selective responses to tonic descending commands by temporal summation in a spinal motor pool.
2014,
Pubmed Weimann,
Switching neurons are integral members of multiple oscillatory networks.
1994,
Pubmed Weimann,
Neurons that form multiple pattern generators: identification and multiple activity patterns of gastric/pyloric neurons in the crab stomatogastric system.
1991,
Pubmed Wester,
Biophysical mechanism of spike threshold dependence on the rate of rise of the membrane potential by sodium channel inactivation or subthreshold axonal potassium current.
2013,
Pubmed White,
The same core rhythm generator underlies different rhythmic motor patterns.
2011,
Pubmed Wilent,
Stimulus-dependent changes in spike threshold enhance feature selectivity in rat barrel cortex neurons.
2005,
Pubmed Winlove,
The firing patterns of spinal neurons: in situ patch-clamp recordings reveal a key role for potassium currents.
2012,
Pubmed
,
Xenbase Yuan,
Functional role of the fast transient outward K+ current IA in pyramidal neurons in (rat) primary visual cortex.
2005,
Pubmed