Synaptotagmin-1 undergoes phase separation to regulate its calcium-sensitive oligomerization

Author:

Zhu Min1ORCID,Xu Han1ORCID,Jin Yulei1ORCID,Kong Xiaoxu1ORCID,Xu Bingkuan1ORCID,Liu Yinghui1ORCID,Yu Haijia1ORCID

Affiliation:

1. Nanjing Normal University 1 Jiangsu Key Laboratory for Molecular and Medical Biotechnology, College of Life Sciences, , Nanjing, China

Abstract

Synaptotagmin-1 (Syt1) is a calcium sensor that regulates synaptic vesicle fusion in synchronous neurotransmitter release. Syt1 interacts with negatively charged lipids and the SNARE complex to control the fusion event. However, it remains incompletely understood how Syt1 mediates Ca2+-trigged synaptic vesicle fusion. Here, we discovered that Syt1 undergoes liquid–liquid phase separation (LLPS) to form condensates both in vitro and in living cells. Syt1 condensates play a role in vesicle attachment to the PM and efficiently recruit SNAREs and complexin, which may facilitate the downstream synaptic vesicle fusion. We observed that Syt1 condensates undergo a liquid-to-gel-like phase transition, reflecting the formation of Syt1 oligomers. The phase transition can be blocked or reversed by Ca2+, confirming the essential role of Ca2+ in Syt1 oligomer disassembly. Finally, we showed that the Syt1 mutations causing Syt1-associated neurodevelopmental disorder impair the Ca2+-driven phase transition. These findings reveal that Syt1 undergoes LLPS and a Ca2+-sensitive phase transition, providing new insights into Syt1-mediated vesicle fusion.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Jiangsu Province

Postgraduate Research & Practice Innovation Program of Jiangsu Province

Jiangsu Province’s Innovation Program

Priority Academic Program Development of Jiangsu Higher Education Institutions

Publisher

Rockefeller University Press

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