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Chen, K.-F.

Publications and source records attributed to Chen, K.-F..

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Neurocalcin acts in a clock- and light-modulated dopaminergic pathway to promote night sleep in Drosophila

Primary dystonia is a hyperkinetic movement disorder linked to altered dopaminergic signaling and synaptic plasticity in regions of the brain involved in motor control. Mutations in HPCA, encoding the neuronal calcium sensor Hippocalcin, are associated with primary dystonia, suggesting a function for Hippocalcin in regulating the initiation and/or maintenance of activity. However, such a role for Hippocalcin or Hippocalcin homologs has yet to be demonstrated in vivo. Here we investigate the cellular and organismal functions of the Drosophila Hippocalcin homolog Neurocalcin (NCA), and define a role for NCA in promoting sleep by suppressing nighttime hyperactivity. We show that NCA acts in a common pathway with the D1-type Dop1R1 dopamine receptor and facilitates sleep by inhibiting neurotransmitter release from a multi-component activity-promoting circuit. Our results suggest conserved roles for Hippocalcin homologs in modulating motor control through dopaminergic pathways, suppressing aberrant movements in humans and inappropriate nighttime locomotion in Drosophila.

neuroscience

Mupirocin-associated temporal changes in the nasal microbiota and host’s antimicrobial responses: A pilot study in healthy staphylococcal carriers

BackgroundHow mupirocin affects the human nasal microbiota over time remains uncharacterized.\n\nMethodsWe repeatedly sampled the anterior nares of four healthy staphylococcal carriers before and after mupirocin use. By sequencing bacterial 16S ribosomal cDNA, we characterized sequential changes in the carriage status, the nasal microbiota, and the hosts antimicrobial peptide expression up to 90 days after decolonization.\n\nResultsBefore mupirocin use, the nasal microbiota differed by the initial, culture-based staphylococcal carriage status, with Firmicutes (54.1%) being the most predominant in carriers and Proteobacteria (75.8%) in the only noncarrier. The nasal microbiota became less diverse (Shannon diversity: 1.33, 95% confidence interval [CI]: 1.06-1.54) immediately after decolonisation than that before decolonisation (1.78, 95%CI: 0.58-1.93). Based on results of differential abundance analysis, Firmicutes were significantly enriched (log2 fold changes [&ge;] 4, Benjamini-Hochberg adjusted P < .01) while Actinobacteria, particularly Corynbebacterium, were relatively depleted in samples from staphylococcal carriers. Results of nonmetric multidimensional scaling (NMDS) and constrained correspondence analysis (CCA) also suggested that the initial staphylococcal carriage status, human neutrophil peptide 1 levels, and sampling times were major contributors to the between-community dissimilarities (P for marginal permutation test: .014) though the significance attenuated when within-group correlation was considered (P for blocked permutation test: .047).\n\nConclusionThese findings suggest that large-scale investigations on antibiotic effects on the human nasal microbiota are warranted.

microbiology