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 (
Keywords: D. melanogaster; cardiomyocytes; electrical synapses; gap junctions; neuroscience; olfactory system; optogenetics.
© 2019, Wu et al.