This protocol shows how to employ super-resolution microscopy to study protein co-localization in primary neuronal cultures.
A subscription to JoVE is required to view this content. Sign in or start your free trial.
Method Article
This protocol shows how to employ super-resolution microscopy to study protein co-localization in primary neuronal cultures.
Synapses are the functional elements of neurons and their defects or losses are at the basis of several neurodegenerative and neurological disorders. Imaging studies are widely used to investigate their function and plasticity in physiological and pathological conditions. Because of their size and structure, localization studies of proteins require high-resolution imaging techniques. In this protocol, we describe a procedure to study in primary neurons the co-localization of target proteins with synaptic markers at a super-resolution level using structured illumination microscopy (SIM). SIM is a patterned-light illumination technique that doubles the spatial resolution of wide-field microscopy, reaching a detail of around 100 nm. The protocol indicates the required controls and settings for robust co-localization studies and an overview of the statistical methods to analyze the imaging data properly.
The understanding and view of the synapse has changed enormously since its first description by Foster and Sherrington in 18971. Since then, our knowledge of neuronal communication and the molecular processes behind it has grown exponentially2. It has become clear that synapses can be thought of as a two-compartment system: a pre-synaptic compartment containing vesicles for the release of neurotransmitters and a post-synaptic compartment with receptors3. This simplistic view, in the past twenty years, has evolved into a complex network of the proteins required to transduce transmitter binding into....
Access restricted. Please log in or start a trial to view this content.
1. Primary cultures
Access restricted. Please log in or start a trial to view this content.
We present here the standard workflow to study neuronal proteins co-localization. We first calibrated the microscope and next we performed SIM analysis of the samples. To calibrate the system, we used fluorescent microspheres of 0.1 μm diameter. Upon obtaining super-resolved 3D-SIM images of the beads, the underlying image data are Fourier-transformed to re-convert them to a spatial frequency representation. In Figure 2A, the distinct flower pattern is presented as an indication of super-res.......
Access restricted. Please log in or start a trial to view this content.
Elucidating the structure and composition of the synapse is crucial for understanding the physiological and pathological processes that regulate memory and cognition. While in the normal state, synapses are the building blocks of memory, they also underlie complex neurological disorders such as Alzheimer’s disease32. The protocol described here serves to study the co-localization of neuronal proteins with a super-resolution microscopy technique called SIM. Using a particular pattern of illum.......
Access restricted. Please log in or start a trial to view this content.
The authors have nothing to disclose.
The authors would like to thank Edoardo Micotti for constructive criticism of the manuscript. This study was supported by BrightFocus A2019296F, by Fondo di Beneficenza - Gruppo Intesa Sanpaolo (LC), by Fondazione Regionale per la Ricerca Biomedica (Care4NeuroRare CP_20/2018) (CN), by the Marie Skłodowska-Curie Innovative Training Network (JK) and by Fondazione Telethon TCP15011, Alzheimer's Association AARG-17-505136 (LF).
....Access restricted. Please log in or start a trial to view this content.
| Name | Company | Catalog Number | Comments |
|---|---|---|---|
| 0.4% Trypan blue solution | Thermo Fisher Scientific | 15250061 | Chemical |
| 70 µm filter | Corning | 352350 | Equiment |
| Alexa | Thermo Fisher Scientific | - | Antibody |
| Antibody SENP1 | Santa Cruz | sc-271360 | Antibody |
| B27 Supplement | Life Technologies | 17504044 | Chemical |
| Bovine serum albumin | Merck | 5470 | Chemical |
| CaCl2 | Merck Life Science | 21115 | Chemical |
| Chambered coverslips | Ibidi | 80826 | Equiment |
| DyLight | Thermo Fisher Scientific | - | Antibody |
| FBS (Hyclone) | GIBCO | SH3007002 (CHA1111L) | Serum |
| FluoSpheres carboxylate-modified microspheres, 0.1 μm, yellow–green fluorescent | Thermo Fisher Scientific | F8803 | Equiment |
| Glucose | Merck Life Science | G8769 | Chemical |
| Glutamax | GIBCO | 35050061 | Chemical |
| HEPES | Merck Life Science | H3537 | Chemical |
| L-Cystein | Merck Life Science | C6852-25g | Chemical |
| MAP2 | Merck | AB15452 | Antibody |
| MEM | Life Technologies | 21575022 | Medium |
| MgCl | Merck Life Science | M8266 | Chemical |
| NaOH | VWR International | 1,091,371,000 | Chemical |
| Neurobasal A | Life Technologies | 10888022 | Medium |
| N-SIM Super Resolution Microscope | Nikon | - | Instrument |
| Papain | Merck Life Science | P-3125 | Chemical |
| paraformaldehyde | Thermo Fisher Scientific | 28908 | Chemical |
| Pen/Strep 10x | Life Technologies | 15140122 | Chemical |
| phosphate-buffered saline | Gibco | 10010023 | Chemical |
| Poly-L lysine | Sigma | P2636 | Chemical |
| ProLong Diamond Glass Antifade Mountant | Thermo Fisher Scientific | P36970 | Chemical |
| PSD95 | NeuroMab | K28/43 | Antibody |
| Round coverglass | Thermo | 12052712 | Equiment |
| SUMO1 | Abcam | ab32058 | Antibody |
| Synaptophysin | Merck | S5768 | Antibody |
| Triton X-100 | Merck | T8787 | Chemical |
| Trypsin inhibitor | Merck Life Science | T9003-500MG | Chemical |
Access restricted. Please log in or start a trial to view this content.