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A novel dual Ca2+ sensor system regulates Ca2+-dependent neurotransmitter release.

Lei Li | Haowen Liu | Mia Krout | Janet E Richmond | Yu Wang | Jihong Bai | Saroja Weeratunga | Brett M Collins | Donovan Ventimiglia | Yi Yu | Jingyao Xia | Jing Tang | Jie Liu | Zhitao Hu
The Journal of cell biology | 2021

Ca2+-dependent neurotransmitter release requires synaptotagmins as Ca2+ sensors to trigger synaptic vesicle (SV) exocytosis via binding of their tandem C2 domains-C2A and C2B-to Ca2+. We have previously demonstrated that SNT-1, a mouse synaptotagmin-1 (Syt1) homologue, functions as the fast Ca2+ sensor in Caenorhabditis elegans. Here, we report a new Ca2+ sensor, SNT-3, which triggers delayed Ca2+-dependent neurotransmitter release. snt-1;snt-3 double mutants abolish evoked synaptic transmission, demonstrating that C. elegans NMJs use a dual Ca2+ sensor system. SNT-3 possesses canonical aspartate residues in both C2 domains, but lacks an N-terminal transmembrane (TM) domain. Biochemical evidence demonstrates that SNT-3 binds both Ca2+ and the plasma membrane. Functional analysis shows that SNT-3 is activated when SNT-1 function is impaired, triggering SV release that is loosely coupled to Ca2+ entry. Compared with SNT-1, which is tethered to SVs, SNT-3 is not associated with SV. Eliminating the SV tethering of SNT-1 by removing the TM domain or the whole N terminus rescues fast release kinetics, demonstrating that cytoplasmic SNT-1 is still functional and triggers fast neurotransmitter release, but also exhibits decreased evoked amplitude and release probability. These results suggest that the fast and slow properties of SV release are determined by the intrinsically different C2 domains in SNT-1 and SNT-3, rather than their N-termini-mediated membrane tethering. Our findings therefore reveal a novel dual Ca2+ sensor system in C. elegans and provide significant insights into Ca2+-regulated exocytosis.

Pubmed ID: 33570571

Research resources used in this publication

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Associated grants

  • Agency: NIGMS NIH HHS, United States
    Id: R01 GM127857
  • Agency: NEI NIH HHS, United States
    Id: R21 EY029450

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Huygens Software (tool)

RRID:SCR_014237

A set of fluorescence microscope image processing packages which perform image restoration, interactive analysis, and volume visualization of 2D and 3D multi channel microscopy images or time series. The restoration is based on different deconvolution algorithms, that permit the recovery of objects from images that are degraded by blurring and noise. Tutorials and documentation are available on the website.

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SlideBook (tool)

RRID:SCR_014423

Digital microscopy software for research microscopy. It comes standard with drivers to control numerous instruments in and around the microscope. When online, data is acquired in a native-3D format over time, color and specimen locations in customizable experiment protocols. Data can be analyzed by a wide variety of tools for image processing including mathematical operations, statistics functions, analysis scripting and import to/export from MATLAB. Additional modules are available for special applications ranging from deconvolution to photomanipulation to multiphoton.

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ZX460 (tool)

RRID:WB-STRAIN:WBStrain00040913

Caenorhabditis elegans with name zxIs6 V. from WB.

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KP5445 (tool)

RRID:WB-STRAIN:WBStrain00023642

Caenorhabditis elegans with name nuIs165. from WB.

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