Source: Kerloch, T., et al. Fluorescence-Activated Nuclei Negative Sorting of Neurons Combined with Single Nuclei RNA Sequencing to Study the Hippocampal Neurogenic Niche. J. Vis. Exp. (2022).
The video demonstrates a method for isolating intact nuclei from glial and stem cells in the mouse hippocampal dentate gyrus (DG). The DG tissue is mechanically dissociated in a cold homogenization buffer to release the nuclei. Tissue debris and other released organelles are discarded, and the nuclei are stained with a DNA stain and a fluorophore-conjugated antibody specific for the neuronal nuclear antigen (NeuN). Fluorescence-activated nuclei sorting is then employed to isolate the NeuN-negative nuclei of non-neuronal cells.
All procedures involving sample collection have been performed in accordance with the institute's IRB guidelines
1. Dissection of the DG (Timing: 15 min)
2. Tissue dissociation, single nuclei isolation, and anti-NeuN immunostaining (Timing: 2 h)
3. Fluorescence-activated nuclei sorting (FANS) to exclude neuronal populations (Timing: 45 min)
Table 1: Compositions of media and buffers used in the study.
Nuclei isolation medium #1 (NIM1) – store up to 6 months at 4 °C | ||
Component | Volume (µL) | Final concentration (mM) |
1.5 M Sucrose | 1,833.30 | 250 |
1 M KCl | 275 | 25 |
1 M MgCl2 | 55 | 5 |
1 M Tris buffer, pH 8.0 | 110 | 10 |
Nuclease-free water | 8,726.70 | – |
Total volume | 11,000 | – |
Nuclei isolation medium #2 (NIM2) – make fresh | ||
Component | Volume (µL) | Final concentration |
NIM1 | 10,769 | – |
1 mM DTT | 11 | 1 µM |
100x Protease inhibitor | 110 | 1x |
Triton X-100 10% (v/v) | 110 | 0.1% (v/v) |
Total volume | 11,000 | – |
Homogenization buffer (HB) – make fresh | ||
Component | Volume (µL) | Final concentration |
NIM2 | 10,958.75 | – |
RNase Inhibitor, 40 U µL-1 | 27.5 | 100 U mL-1 |
RNasin, 40 U µL-1 | 13.75 | 50 U mL-1 |
Total volume | 11,000 | – |
Wash Media (WM) | ||
Component | Volume (µL) | Final concentration |
BSA 7.5% | 1,466.70 | 1% |
RNase Inhibitor, 40 U µL-1 | 27.5 | 100 U mL-1 |
RNasin, 40 U µL-1 | 13.75 | 50 U mL-1 |
PBS | 9,492.05 | – |
Total volume | 11,000 | – |
Figure 1: Preparation of a single nuclei suspension from the dissected DG of adult mice for snRNA-seq of non-neuronal populations. Flow diagram describing the main steps of the protocol that include dissection of mouse DG, preparation of a suspension of single nuclei, NeuN immunostaining, and negative NeuN-FANS-sorting before proceeding with snRNA-seq.
Figure 2: Validation of the immunostaining for FANS. Nuclei suspension was incubated (A) without the anti-NeuN-AF 488 antibody as a negative control or (B) with the antibody and run through the FACS sorter to validate immunostaining conditions.
Figure 3: Gene expression analysis and re-clustering of the astrocyte cluster. (A) Uniform Manifold Approximation and Projection for Dimension Reduction (UMAP) plot showing the clustering of 4968 nuclei based on genome-wide expression profiles. Cell-type calls were done based on cell-type markers. (B) Astrocyte cluster comprised of 2579 nuclei chosen from (A) for further sub-setting to investigate potential cellular sub-types. Four sub-types were detected by Seurat (0-3) clustering, shown by different colors. (C) Gene expression levels of specific cellular markers across the four cell-types. All plots were obtained using the Seurat R package. Briefly, RNA-seq counts were normalized for each cell by the total expression and multiplied by the scale factor (10,000). This result was then log transformed. The transformed values were scaled (variance scaled to one) and centered (mean set to zero) within each cell before Uniform Manifold Approximation and Projection for Dimension Reduction (UMAP) was applied to calculate the embeddings, which were used as values on x and y axes. Graphs represent the output of a dimensional reduction technique on a 2D scatter plot where each point represents a cell with respective x and y co-ordinates based on the cell embeddings determined by the reduction technique. Cells with similar gene signatures are positioned close to one another by the embeddings.
The authors have nothing to disclose.
0.5ml microtube | Eppendorf | 30124537 | |
10.00µm Flouresbrite YG Carboxylate Microspheres | Polysciences | 15700-10 | |
15 mL polypropylene centrifuge tubes | Corning | 430052 | |
2 pairs of sterile Dumont #5 forceps | Fine Science Tools | 11252-30 | |
4′,6-diamidino-2-phenylindole (DAPI) | Sigma Aldrich | D9564-10MG | |
4150 TapeStation System | Agilent | N/A | |
5 mL round bottom high clarity polypropylene test tube with snap cap | Falcon | 352063 | |
5 mL round bottom polystyrene test tube with cell strainer snap cap | Falcon | 352235 | |
50 mL polypropylene centrifuge tubes | Corning | 430829 | |
70 µm cell strainer | Falcon | 352350 | |
8 peak SPHERO Rainbow Calibration Particles | BD Biosciences | RCP-30-5A | |
Accudrop Beads | BD Biosciences | N/A | |
Allegra X-30R Centrifuge | Beckman Coulter | N/A | |
Anti-NeuN antibody, clone A60, Alexa Fluor 488 conjugated | Millipore | MAB377X | |
BD FACSAria Fusion Flow Cytometer | BD Biosciences | N/A | |
Beckman Coulter MoFlo XDP | Beckman Coulter | N/A | |
BSA 7.5% | Gibco | 15260037 | |
Dithiothreitol (DTT) | Thermo Scientific | R0861 | |
Dounce tissue grinder set: mortar, loose pestle (A) and tight pestle (B) | KIMBLE | D8938-1SET | |
Eppendorf Tubes Protein LoBind 1.5ml | Eppendorf | 30108116 | |
Halt, 100x Protease inhibitor | ThermoFisher | 78429 | |
KCl | Any chemical supplier | Laboratory made | |
LUNA-FX7 Automated Cell counter | Logos Biosystems | N/A | |
MgCl2 | Any chemical supplier | Laboratory made | |
N°10 guarded sterile disposable scalpels | Swann-Morton | 6601 | |
Nuclease-free water | Sigma Aldrich | W4502-1L | |
Pair of sterile student surgical scissors | Fine Science Tools | 91401-12 | |
PBS | Any chemical supplier | Laboratory made | |
RNase Inhibitor 40 U µl-1 | Ambion | AM2684 | |
RNasin 40 U µl-1 | Promega | N211A | |
Sterile Petri dish | Corning | 430167 | |
Sucrose | Sigma Aldrich | 59378-500G | |
Tris buffer, pH 8.0 | Any chemical supplier | Laboratory made | |
Triton X-100 10% (v/v) | Sigma Aldrich | T8787-250ML | |
Trypan blue | Invitrogen | T10282 |