FB2026_03 , released September 17, 2026
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Citation
Kim, E.Z., Vienne, J., Rosbash, M., Griffith, L.C. (2017). Nonreciprocal homeostatic compensation in Drosophila potassium channel mutants.  J. Neurophysiol. 117(6): 2125--2136.
FlyBase ID
FBrf0235691
Publication Type
Research paper
Abstract
Homeostatic control of intrinsic excitability is important for long-term regulation of neuronal activity. In conjunction with many other forms of plasticity, intrinsic homeostasis helps neurons maintain stable activity regimes in the face of external input variability and destabilizing genetic mutations. In this study, we report a mechanism by which Drosophila melanogaster larval motor neurons stabilize hyperactivity induced by the loss of the delayed rectifying K(+) channel Shaker cognate B (Shab), by upregulating the Ca(2+)-dependent K(+) channel encoded by the slowpoke (slo) gene. We also show that loss of SLO does not trigger a reciprocal compensatory upregulation of SHAB, implying that homeostatic signaling pathways utilize compensatory pathways unique to the channel that was mutated. SLO upregulation due to loss of SHAB involves nuclear Ca(2+) signaling and dCREB, suggesting that the slo homeostatic response is transcriptionally mediated. Examination of the changes in gene expression induced by these mutations suggests that there is not a generic transcriptional response to increased excitability in motor neurons, but that homeostatic compensations are influenced by the identity of the lost conductance.NEW & NOTEWORTHY The idea that activity-dependent homeostatic plasticity is driven solely by firing has wide credence. In this report we show that homeostatic compensation after loss of an ion channel conductance is tailored to identity of the channel lost, not its properties.
PubMed ID
PubMed Central ID
PMC5454467 (PMC) (EuropePMC)
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    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    J. Neurophysiol.
    Title
    Journal of Neurophysiology
    Publication Year
    1938-
    ISBN/ISSN
    0022-3077
    Data From Reference
    Genes (4)