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Phosphorylation triggers presynaptic phase separation of Liprin-α3 to control active zone structure

Javier Emperador-Melero, Man Yan Wong, Shan Shan H. Wang, Giovanni de Nola, Tom Kirchhausen, View ORCID ProfilePascal S. Kaeser
doi: https://doi.org/10.1101/2020.10.28.357574
Javier Emperador-Melero
1Department of Neurobiology, Harvard Medical School, Boston, MA 02115
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Man Yan Wong
1Department of Neurobiology, Harvard Medical School, Boston, MA 02115
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Shan Shan H. Wang
1Department of Neurobiology, Harvard Medical School, Boston, MA 02115
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Giovanni de Nola
1Department of Neurobiology, Harvard Medical School, Boston, MA 02115
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Tom Kirchhausen
2Departments of Cell Biology and Pediatrics, Harvard Medical School and Program in Cellular and Molecular Medicine, Boston Children’s Hospital, Boston, MA 02115
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Pascal S. Kaeser
1Department of Neurobiology, Harvard Medical School, Boston, MA 02115
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  • ORCID record for Pascal S. Kaeser
  • For correspondence: [email protected]
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Abstract

Liquid-liquid phase separation enables the assembly of membrane-less subcellular compartments, but testing its biological functions has been difficult. The presynaptic active zone, protein machinery in nerve terminals that defines sites for neurotransmitter release, may be organized through phase separation. Here, we discover that the active zone protein Liprin-α3 rapidly and reversibly undergoes phase separation upon phosphorylation by PKC at a single site. RIM and Munc13 are co-recruited to membrane-attached condensates, and phospho-specific antibodies establish Liprin-α3 phosphorylation in vivo. At synapses of newly generated Liprin-α2/α3 double knockout mice, RIM, Munc13 and the pool of releasable vesicles were reduced. Re-expression of Liprin-α3 restored these defects, but mutating the Liprin-α3 phosphorylation site to abolish phase condensation prevented rescue. Finally, PKC activation acutely increased RIM, Munc13 and neurotransmitter release, which depended on the presence of phosphorylatable Liprin-α3. We conclude that Liprin-α3 phosphorylation rapidly triggers presynaptic phase separation to modulate active zone structure and function.

Competing Interest Statement

The authors have declared no competing interest.

Footnotes

  • Figure 4 revised.

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 4.0 International license.
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Posted March 10, 2021.
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Phosphorylation triggers presynaptic phase separation of Liprin-α3 to control active zone structure
Javier Emperador-Melero, Man Yan Wong, Shan Shan H. Wang, Giovanni de Nola, Tom Kirchhausen, Pascal S. Kaeser
bioRxiv 2020.10.28.357574; doi: https://doi.org/10.1101/2020.10.28.357574
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Phosphorylation triggers presynaptic phase separation of Liprin-α3 to control active zone structure
Javier Emperador-Melero, Man Yan Wong, Shan Shan H. Wang, Giovanni de Nola, Tom Kirchhausen, Pascal S. Kaeser
bioRxiv 2020.10.28.357574; doi: https://doi.org/10.1101/2020.10.28.357574

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