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Channel-independent function of UNC-9/INX in spatial arrangement of GABAergic synapses in C. elegans

Ardalan Hendi, Longgang Niu, Andrew Snow, Richard Ikegami, Zhao-Wen Wang, View ORCID ProfileKota Mizumoto
doi: https://doi.org/10.1101/2022.05.16.492157
Ardalan Hendi
1Department of Zoology, University of British Columbia, British Columbia, Canada
2Life Sciences Institute, University of British Columbia, British Columbia, Canada
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Longgang Niu
3Department of Neuroscience, University of Connecticut Medical School, Connecticut, USA
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Andrew Snow
4Graduate Program in Cell and Developmental Biology, University of British Columbia, British Columbia, Canada
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Richard Ikegami
5Section on High Resolution Optical Imaging, National Institute of Biomedical Imaging and Bioengineering, National Institutes of Health, Bethesda, Maryland, USA
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Zhao-Wen Wang
3Department of Neuroscience, University of Connecticut Medical School, Connecticut, USA
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Kota Mizumoto
1Department of Zoology, University of British Columbia, British Columbia, Canada
2Life Sciences Institute, University of British Columbia, British Columbia, Canada
4Graduate Program in Cell and Developmental Biology, University of British Columbia, British Columbia, Canada
6Djavad Mowafaghian Centre for Brain Health, University of British Columbia, British Columbia, Canada
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  • ORCID record for Kota Mizumoto
  • For correspondence: mizumoto@zoology.ubc.ca
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Abstract

Precise synaptic connection of neurons with their targets is essential for the proper functioning of the nervous system. A plethora of signaling pathways act in concert to mediate the precise spatial arrangement of synaptic connections. Here we show a novel role for a gap junction protein in controlling tiled synaptic arrangement in the GABAergic motor neurons in C. elegans, in which their axons and synapses overlap minimally with their neighboring neurons within the same class. We found that while EGL-20/Wnt controls axonal tiling, their presynaptic tiling is mediated by a gap junction protein UNC-9/Innexin, that is localized at the presynaptic tiling border between neighboring DD neurons. Strikingly, the gap junction channel activity of UNC-9 is dispensable for its function in controlling tiled presynaptic patterning. While gap junctions are crucial for the proper functioning of the nervous system as channels, our finding uncovered the novel channel-independent role of UNC-9 in synapse patterning.

Competing Interest Statement

The authors have declared no competing interest.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC-ND 4.0 International license.
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Posted May 16, 2022.
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Channel-independent function of UNC-9/INX in spatial arrangement of GABAergic synapses in C. elegans
Ardalan Hendi, Longgang Niu, Andrew Snow, Richard Ikegami, Zhao-Wen Wang, Kota Mizumoto
bioRxiv 2022.05.16.492157; doi: https://doi.org/10.1101/2022.05.16.492157
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Channel-independent function of UNC-9/INX in spatial arrangement of GABAergic synapses in C. elegans
Ardalan Hendi, Longgang Niu, Andrew Snow, Richard Ikegami, Zhao-Wen Wang, Kota Mizumoto
bioRxiv 2022.05.16.492157; doi: https://doi.org/10.1101/2022.05.16.492157

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