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Herndon, N.

Publications and source records attributed to Herndon, N..

2 recordsLinked to original sources

Neural connectivity molecules best identify the heterogeneous clock and dopaminergic cell types in the Drosophila adult brain

Our recent single cell sequencing of most adult Drosophila circadian neurons indicated striking gene expression heterogeneity, about 2-3 cells per clock neuron group. To extend this characterization to other adult fly brain neurons, we used the identical plate-based methods to generate single cell data from a similar subset of dopaminergic neurons. To minimize batch effects and to apply an additional sequencing strategy, we also assayed these two populations together with 10X Chromium. An unsupervised clustering algorithm indicates that dopaminergic neurons are comparably heterogeneous, suggesting that the transcriptomic diversity of adult fly brain neurons parallels its EM connectome. The results here further indicate that connectivity molecules like cell surface molecules best characterize all neuron groups. We suggest that these surprising features are general and make major contributions to neuronal identity and connectivity of the adult central brain as well as underlie the complex behavioral repertoire of Drosophila.

neuroscience↗

Dopamine and GPCR-mediated modulation of DN1 clock neurons gates the circadian timing of sleep

The metronome-like circadian regulation of sleep timing must still adapt to an uncertain environment. Recent studies in Drosophila indicate that neuromodulation not only plays a key role in clock neuron synchronization but also affects interactions between the clock network and brain sleep centers. We show here that the targets of neuromodulators, G-Protein Coupled Receptors (GPCRs), are highly enriched in the fly brain circadian clock network. Single cell sequencing indicates that they are not only differentially expressed but also define clock neuron identity. We generated a comprehensive guide library to mutagenize individual GPCRs in specific neurons and verified the strategy with a targeted sequencing approach. Combined with a behavioral screen, the mutagenesis strategy revealed a novel role of dopamine in sleep regulation by identifying two dopamine receptors and a clock neuron subpopulation that gate the timing of sleep.

neuroscience↗