Source: Simonetti, S., et al. A DNA/Ki67-Based Flow Cytometry Assay for Cell Cycle Analysis of Antigen-Specific CD8 T Cells in Vaccinated Mice. J. Vis. Exp. (2021)
This video demonstrates an assay to analyze antigen-specific CD8+ T cells in different cell cycle stages. Fluorescently-labeled viable cells are selected using flow cytometry, and the cells in the different cell cycle stages are identified by their DNA content using antibodies against cell proliferation-associated nuclear protein and a nucleic acid stain.
1. Preparation of medium and staining solution
2. Mouse treatment
3. Isolation of draining LN, spleen
4. Staining of spleen, LN
5. Fixation/permeabilization
6. Intracellular staining
7. Preparation of compensation bead samples
8. Instrument and compensation setup and experimental sample acquisition at the flow cytometer
NOTE: Refer to flow cytometer settings (Table 2) for the cytometer configuration.
9. Data Analysis
Table 1: Flow cytometer settings.
Sample | Antibody panel | ||||||
Full stained | Ki67 FITC | CD3 PercpCy5.5 | Tetr-gag APC | FVD eFluor 780 | Hoechst 33342 | CD8 BUV805 | Pent-gag PE |
Ki67 FMO | CD3 PercpCy5.5 | Tetr-gag APC | FVD eFluor 780 | Hoechst 33342 | CD8 BUV805 | Pent-gag PE | |
Tetr-gag APC FMO | Ki67 FITC | CD3 PercpCy5.5 | FVD eFluor 780 | Hoechst 33342 | CD8 BUV805 | Pent-gag PE | |
Pent-gag PE FMO | Ki67 FITC | CD3 PercpCy5.5 | Tetr-gag APC | FVD eFluor 780 | Hoechst 33342 | CD8 BUV805 | |
CD8 FMO | Ki67 FITC | CD3 PercpCy5.5 | Tetr-gag APC | FVD eFluor 780 | Hoechst 33342 | Pent-gag PE | |
CD3 FMO | Ki67 FITC | Tetr-gag APC | FVD eFluor 780 | Hoechst 33342 | CD8 BUV805 | Pent-gag PE | |
Fixable Viability Dye FMO | Ki67 FITC | CD3 PercpCy5.5 | Tetr-gag APC | Hoechst 33342 | CD8 BUV805 | Pent-gag PE | |
Hoechst 33342 FMO | Ki67 FITC | CD3 PercpCy5.5 | Tetr-gag APC | FVD eFluor 780 | CD8 BUV805 | Pent-gag PE |
Table 2: Flow cytometer settings.
Instrument | BD LSR Fortessa | |||||||
Laser | Blue 488nm | Red 639nm | UV 355nm | Yellow/green 561nm | ||||
Bandpass Filters | 530/30 | 710/50 | 670/14 | 780/60 | 530/30 | 820/60 | 585/15 | 780/60 |
Longpass Filters | 505LP | 685LP | 750LP | 505LP | 770LP | 750LP | ||
Fluorochromes/Dye used | FITC | PERCPCY5.5 | APC | eFluor 780 | Hoechst 33342 | BUV805 | PE | PECY7 |
Corresponding name in fcs files | Alexa Fluor 488 | PERCPCY5.5 | APC | APC-H7 | Hoechst-Red | BUV737 | PE | PECY7 |
Figure 1: Cell cycle analysis of BM cells. BM cells from untreated Balb/c mice were stained and analyzed by flow cytometry. (A) Example of gating strategy. We gated on single cells in the DNA-A/-W plot (left) and subsequently on live cells by dead cell dye exclusion (middle). Then, a "relaxed" FSC-A/SSC-A gate was used for all BM cells (right). (B) Example of cell cycle analysis of BM cells (left). We used a combination of Ki67 and DNA staining to identify cells in the following phases of the cell cycle: G0 (bottom left quadrant, Ki67neg-DNAlow cells), G1 (top left quadrant, Ki67pos-DNAlow), S-G2/M (top right quadrant, Ki67pos-DNAintermediate/high). Fluorescence Minus One (FMO) control of Ki67 mAb (middle) and DNA histogram (right) are shown. In the DNA histogram plot, the left and right gates correspond to the G0/G1 and the G2/M DNA peak, respectively, and the numbers represent the coefficients of variation (CV) of each peak. In all the other plots, the numbers represent cell percentages in the indicated gates. The figure shows 1 representative experiment out of 5. In each experiment, we analyzed pooled BM cells from 3 mice.
Figure 2: Analysis of antigen-specific CD8 T cells from LNs and spleen. Balb/c mice were primed intramuscularly (i.m.) with Chad3-gag and boosted i.m. with MVA-gag. At day 3 post-boost, draining LN and spleen cells from vaccinated and untreated control mice were stained and analyzed by flow cytometry. (A) Scheme of the gating strategy in five steps to identify single cells (Step 1); live cells (Step 2); lymphocytes (Step 3); CD8 T cells (Step 4); and gag-specific cells (Step 5). (B-C) Example of plots: analysis of cells from (B) LNs and (C) spleen of untreated (top) and vaccinated (bottom) mice. We identified single cells on the DNA-A/ -W plot in Step 1. Then, in Step 2, we selected live cells by dead cell dye exclusion. In Step 3, we used a non-canonical "relaxed" gate for lymphocytes. In Step 4, we identified CD8 T cells by their double expression of CD3 and CD8. We then identified gag-specific cells and not gag-specific in Step 5, based on their capacity to bind fluorochrome-labeled H-2kd-gag-Pentamer (Pent-gag) and H-2kd-gag-Tetramer (Tetr-gag), or not, respectively. (D) FSC-A/SSC-A profiles of gag-specific (blue) and not gag-specific (grey) cells after gating as described above. Numbers represent cell percentages in the indicated gates. The figure shows 1 representative experiment out of 5. In each experiment, we analyzed pooled spleen and pooled LN cells from 3 vaccinated mice and 3 untreated mice.
Figure 3: Cell cycle analysis of antigen-specific CD8 T cells. Mice were vaccinated as in Figure 3 and cell cycle analysis of gag-specific cells was performed at day 3 post-boost, after gating in 5 steps as in Figure 3. (A) Example of cell cycle analysis of gag-specific CD8 T cells from LNs (top) and spleen (bottom) of vaccinated mice. Cell cycle phases were identified as in Figure 2B. The panels represent cells in G0, in G1, and in S-G2/M (left) and Fluorescence Minus One (FMO) control of Ki67 mAb (right). Numbers represent cell percentages in the indicated gates. (B) FSC-A/SSC-A dot plots showing gag-specific CD8 T cells in S-G2/M phases (in red) overlaid onto total CD3+CD8+ T cells (in grey) from LNs (top) and spleen (bottom) of vaccinated mice. (C) Offset histograms showing CD62L expression by gag-specific CD8 T cells in G0 (green), in G1 (blue), and in S-G2/M (red) from LNs (top) and spleen (bottom) of vaccinated mice. The y-axes indicate the normalized number of events. The figure shows 1 representative example out of 5 independent experiments with a total of 15 mice.
The authors have nothing to disclose.
1-200 μL universal fit bulk packed pipet tips | Corning | CLS4866-1000EA | |
2.4G2 anti-FcγR mAb | BD | 553141 | 10 μg/ml final concentration |
5 ml syringe plunger | BD Emerald | 307733 | |
15 ml conical tubes | MercK Millipore | SBHA025SB | |
60 mm TC-treated Cell Culture Dish | Falcon | 353002 | |
70 μm cell strainer | Falcon | 352097 | |
96-well Clear Round Bottom TC-treated Culture Microplate | Falcon | 353077 | |
Anti-Rat/Hamster Ig,k/Negative Control Compensation Particles | BD- Bioscience | 552845 | |
Beta-mercaptoethanol | Sigma | M3148 | |
Bovine Serum Albumin | Sigma | A07030 | |
BUV805 Rat Anti-Mouse CD8a | BD- Bioscience | 564920 | 4 μg/ml final concentration |
Dulbecco's Phosphate Buffer Saline w/o Calcium w/o Magnesium | Euroclone | ECB4004L | |
Eppendorf Safe-Lock Tubes, 1.5 mL | Eppendorf | 30120159 | |
Ethanol | Sigma | 34852-1L-M | |
Ethylenediaminetetraacetic Acid Disodium Salt solution (EDTA) | Sigma | E7889 | |
Fetal Bovine Serum | Corning | 35-079-CV | |
Filcon, Sterile, Syringe-Type 70 μm | Falcon | 352350 | |
Fixable Viability Dye eFluor 780 | eBioscience | 65-0865-14 | 1:1000 final concentration |
Foxp3 / Transcription Factor Staining Buffer Set | eBioscience | 00-5523-00 | This Set contains fixation/permeabilization concentrate and diluent, and permeabilization buffer 10x |
H-2k(d) AMQMLKETI allophycocyanin (APC)-labelled tetramer | provided by NIH Tetramer Core Facility | 6 μg/ml final concentration | |
H-2k(d) AMQMLKETI phycoerythrine (PE) labelled pentamer | Proimmune | F176-2A-E – 176 | 10 μL / sample |
Hoechst 33342, Trihydrochloride, Trihydrate – 10 mg/mL Solution in Water | ThermoFisher | H3570 | |
Ki-67 Monoclonal Antibody (SolA15), FITC | eBioscience | 11-5698-82 | 5 μg/ml final concentration |
L-Glutamine 100X (200 mM) | Euroclone | ECB3000D | |
Millex-HA Filters 0,45 µm | BD | 340606 | |
Penicillin/Streptomycin 100X | Euroclone | ECB3001D | |
PE/Cyanine7 anti-mouse CD62L Antibody | Biolegend | 104418 | 0.2 μg/ml final concentration |
PerCP-Cy™5.5 Hamster Anti-Mouse CD3e | BD- Bioscience | 551163 | 4.4 μg/ml final concentration |
Red Blood Cell Lysis Buffer | Sigma | R7757 | |
Round-Bottom Polystyrene Tubes, 5 mL | Falcon | 352058 | |
RPMI 1640 Medium without L-Glutamine with Phenol Red | Euroclone | ECB9006L | |
Software package for analyzing flow cytometry data | FlowJo | v.10 | |
Software for acquisition of samples at flowcytometer | BD FACSDiva | v 6.2 | |
Trypan Blue Solution | Euroclone | ECM0990D |