A Versatile Synaptotagmin‐1 Nanobody Provides Perturbation‐Free Live Synaptic Imaging And Low Linkage‐Error in Super‐Resolution Microscopy

Author:

Queiroz Zetune Villa Real Karine12,Mougios Nikolaos12,Rehm Ronja1,Sograte‐Idrissi Shama12,Albert László12,Rahimi Amir Mohammad12,Maidorn Manuel12,Hentze Jannik12,Martínez‐Carranza Markel3,Hosseini Hassan4,Saal Kim‐Ann1,Oleksiievets Nazar5,Prigge Matthias46,Tsukanov Roman5,Stenmark Pål3,Fornasiero Eugenio F.1,Opazo Felipe127ORCID

Affiliation:

1. Institute of Neuro‐ and Sensory Physiology University Medical Center Göttingen 37073 Göttingen Germany

2. Center for Biostructural Imaging of Neurodegeneration (BIN) University Medical Center Göttingen 37075 Göttingen Germany

3. Department of Biochemistry and Biophysics Stockholm University Stockholm Stockholm SE‐10691 Sweden

4. Research Group Neuromodulatory Networks Leibniz Institute for Neurobiology 39118 Magdeburg Germany

5. III. Institute of Physics – Biophysics Georg August University 37077 Göttingen Germany

6. Center for Behavioral Brain Sciences 39118 Magdeburg Germany

7. NanoTag Biotechnologies GmbH 37079 Göttingen Germany

Abstract

AbstractImaging of living synapses has relied for over two decades on the overexpression of synaptic proteins fused to fluorescent reporters. This strategy alters the stoichiometry of synaptic components and ultimately affects synapse physiology. To overcome these limitations, here a nanobody is presented that binds the calcium sensor synaptotagmin‐1 (NbSyt1). This nanobody functions as an intrabody (iNbSyt1) in living neurons and is minimally invasive, leaving synaptic transmission almost unaffected, as suggested by the crystal structure of the NbSyt1 bound to Synaptotagmin‐1 and by the physiological data. Its single‐domain nature enables the generation of protein‐based fluorescent reporters, as showcased here by measuring spatially localized presynaptic Ca2+ with a NbSyt1‐ jGCaMP8 chimera. Moreover, the small size of NbSyt1 makes it ideal for various super‐resolution imaging methods. Overall, NbSyt1 is a versatile binder that will enable imaging in cellular and molecular neuroscience with unprecedented precision across multiple spatiotemporal scales.

Funder

Deutsche Forschungsgemeinschaft

Vinnova

Novo Nordisk Fonden

Vetenskapsrådet

Cancerfonden

Publisher

Wiley

Subject

General Materials Science,General Chemistry

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