FB2026_02 , released June 18, 2026
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Citation
Wu, L., Dong, A., Dong, L., Wang, S.Q., Li, Y. (2019). PARIS, an optogenetic method for functionally mapping gap junctions.  eLife 8(): e43366.
FlyBase ID
FBrf0241671
Publication Type
Research paper
Abstract
Cell-cell communication via gap junctions regulates a wide range of physiological processes by enabling the direct intercellular electrical and chemical coupling. However, the in vivo distribution and function of gap junctions remain poorly understood, partly due to the lack of non-invasive tools with both cell-type specificity and high spatiotemporal resolution. Here, we developed PARIS (pairing actuators and receivers to optically isolate gap junctions), a new fully genetically encoded tool for measuring the cell-specific gap junctional coupling (GJC). PARIS successfully enabled monitoring of GJC in several cultured cell lines under physiologically relevant conditions and in distinct genetically defined neurons in Drosophila brain, with ~10 s temporal resolution and sub-cellular spatial resolution. These results demonstrate that PARIS is a robust, highly sensitive tool for mapping functional gap junctions and study their regulation in both health and disease.
PubMed ID
PubMed Central ID
PMC6396999 (PMC) (EuropePMC)
Related Publication(s)
Note

Studying gap junctions with PARIS.
Kick and Schulz, 2019, eLife 8: e45207 [FBrf0241752]

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Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    eLife
    Title
    eLife
    ISBN/ISSN
    2050-084X
    Data From Reference