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Microtubule networks in zebrafish hair cells facilitate presynapse transport and fusion during development

Saman Hussain, Katherine Pinter, Mara Uhl, Hiu-Tung Wong, View ORCID ProfileKatie Kindt
doi: https://doi.org/10.1101/2024.04.12.589161
Saman Hussain
1Section on Sensory Cell Development and Function, National Institute on Deafness and other Communication Disorders, Bethesda, MD, 20892, USA
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Katherine Pinter
1Section on Sensory Cell Development and Function, National Institute on Deafness and other Communication Disorders, Bethesda, MD, 20892, USA
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Mara Uhl
2Presynaptogenesis and Intracellular Transport in Hair Cells Junior Research Group, Institute for Auditory Neuroscience and InnerEarLab, University Medical Center Goettingen, 37075 Goettingen, Germany
3Collaborative Research Center 889 ‘Cellular Mechanisms of Sensory Processing’, 37075 Goettingen, Germany
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Hiu-Tung Wong
1Section on Sensory Cell Development and Function, National Institute on Deafness and other Communication Disorders, Bethesda, MD, 20892, USA
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Katie Kindt
1Section on Sensory Cell Development and Function, National Institute on Deafness and other Communication Disorders, Bethesda, MD, 20892, USA
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  • ORCID record for Katie Kindt
  • For correspondence: [email protected]
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Abstract

Sensory cells in the retina and inner ear rely on specialized ribbon synapses for neurotransmission. Disruption of these synapses is linked to visual and auditory dysfunction, but it is unclear how these unique synapses are formed. Ribbon synapses are defined by a presynaptic density called a ribbon. Using live-imaging approaches in zebrafish, we find that early in hair-cell development, many small ribbon precursors are present throughout the cell. Later in development, fewer and larger ribbons remain, and localize at the presynaptic active zone (AZ). Using tracking analyses, we show that ribbon precursors exhibit directed motion along an organized microtubule network towards the presynaptic AZ. In addition, we show that ribbon precursors can fuse together on microtubules to form larger ribbons. Using pharmacology, we find that microtubule disruption interferes with ribbon motion, fusion, and normal synapse formation. Overall, this work demonstrates a dynamic series of events that underlies formation of a critical synapse required for sensory function.

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. This article is a US Government work. It is not subject to copyright under 17 USC 105 and is also made available for use under a CC0 license.
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Posted April 12, 2024.
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Microtubule networks in zebrafish hair cells facilitate presynapse transport and fusion during development
Saman Hussain, Katherine Pinter, Mara Uhl, Hiu-Tung Wong, Katie Kindt
bioRxiv 2024.04.12.589161; doi: https://doi.org/10.1101/2024.04.12.589161
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Microtubule networks in zebrafish hair cells facilitate presynapse transport and fusion during development
Saman Hussain, Katherine Pinter, Mara Uhl, Hiu-Tung Wong, Katie Kindt
bioRxiv 2024.04.12.589161; doi: https://doi.org/10.1101/2024.04.12.589161

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