Alpha-synuclein overexpression reduces neural activity within a basal ganglia vocal nucleus in a zebra finch model
Dominguez, B. R.; Holguin, G.; Daly, M. S.; Bjork, R. T.; Cowen, S. L.; Miller, J. E.
Show abstract
Changes in vocal pitch, loudness, and timing are prevalent in Parkinsons Disease (PD) and a target for early intervention and treatment. The neural mechanisms underlying these impairments are not understood, motivating work in animal models. The adult male zebra finch songbird is uniquely poised for these studies given vocally-dedicated brain nuclei and a quantifiable output (birdsong). Our prior publication revealed that injection of an adeno-associated virus (AAV5) expressing the human (h) alpha-synuclein (hSNCA, a-syn) gene into basal ganglia vocal nucleus Area X results in elevated insoluble a-syn protein and parkinsonian-like changes including softer, shorter, and reduced vocalizations compared to controls. Here, we test the hypothesis that AAV-hSNCA overexpression reduces the firing rate of specific neuronal sub-types in Area X using in vivo recordings in anesthetized finches. Five classes of neurons were differentiated in AAV-treated finches based on waveform width (narrow vs. wide) and firing rates (low vs. fast). Wide-waveform/low-rate activity is a consistent feature of striatal medium spiny neurons (MSNs), a dominant cell type in Area X and in mammalian basal ganglia. Reduced firing rates and enhanced post-peak rebound were detected in the AAV-hSNCA group for putative MSN neurons compared to AAV controls. No differences in firing rate nor waveform shape were detected for the narrow waveform neurons. Our findings provide the first characterization of early a-syn-driven neural activity changes in vocal control neurocircuitry.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Cerebellar nuclei cells produce distinct pathogenic spike signatures in mouse models of ataxia, dystonia, and tremor 95%
- A library of lineage-specific driver lines connects developing neuronal circuits to behavior in the Drosophila Ventral Nerve Cord. 94%
- Cell autonomous role of leucine-rich repeat kinase in protection of dopaminergic neuron survival 94%
Similar papers in this journal
- Loss of primary cilia and dopaminergic neuroprotection in pathogenic LRRK2-driven and idiopathic Parkinsons disease 94%
- In vivo imaging of the GnRH pulse generator reveals a temporal order of neuronal activation and synchronization during each pulse 94%
- Experience-dependent structural plasticity at pre- and postsynaptic sites of layer 2/3 cells in developing visual cortex 93%
Similar papers in this journal
- Bidirectional Regulation of Motor Circuits Using Magnetogenetic Gene Therapy 94%
- A dopamine-induced gene expression signature regulates neuronal function and cocaine response 93%
- Prostaglandin EP3 receptor-expressing preoptic neurons bidirectionally control body temperature via tonic GABAergic signaling 93%
Similar papers in this journal
- Feed-forward metabotropic signaling by Cav1 Ca2+ channels supports pacemaking in pedunculopontine cholinergic neurons 93%
- Impaired Functional Connectivity of Cortico-Amygdala Pathway Can Drive Social Behavior Deficits in Synucleinopathies 92%
- Induced long-term potentiation improves synaptic stability and restores network function in ALS motor neurons 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.