Forces, Kinetics, and Fusion Efficiency Altered by the Full-Length Synaptotagmin-1 -PI(4,5)P2 Interaction in Constrained Geometries

2022-02-09 | journal article; research paper

Jump to: Cite & Linked | Documents & Media | Details | Version history

Cite this publication

​Forces, Kinetics, and Fusion Efficiency Altered by the Full-Length Synaptotagmin-1 -PI(4,5)P2 Interaction in Constrained Geometries​
Dietz, J.; Oelkers, M.; Hubrich, R.; Pérez-Lara, A.; Jahn, R.; Steinem, C.   & Janshoff, A. ​ (2022) 
Nano Letters22(3) pp. 1449​-1455​.​ DOI: https://doi.org/10.1021/acs.nanolett.1c02491 

Documents & Media

License

GRO License GRO License

Details

Authors
Dietz, Joern; Oelkers, Marieelen; Hubrich, Raphael; Pérez-Lara, Angel; Jahn, Reinhard; Steinem, Claudia ; Janshoff, Andreas 
Abstract
A mechanism for full-length synaptotagmin-1 (syt-1) to interact with anionic bilayers and to promote fusion in the presence of SNAREs is proposed. Colloidal probe force spectroscopy in conjunction with tethered particle motion monitoring showed that in the absence of Ca2+ the binding of syt-1 to membranes depends on the presence and content of PI(4,5)P2. Addition of Ca2+ switches the interaction forces from weak to strong, eventually exceeding the cohesion of the C2A domain of syt-1 leading to partial unfolding of the protein. Fusion of single unilamellar vesicles equipped with syt-1 and synaptobrevin 2 with planar pore-spanning target membranes containing PS and PI(4,5)P2 shows an almost complete suppression of stalled intermediate fusion states and an accelerated fusion kinetics in the presence of Ca2+, which is further enhanced upon addition of ATP.
Issue Date
9-February-2022
Journal
Nano Letters 
Project
EXC 2067: Multiscale Bioimaging 
Working Group
RG Janshoff 
RG Steinem (Biomolecular Chemistry) 
ISSN
1530-6984
eISSN
1530-6992
Language
English

Reference

Citations


Social Media