Source: Samrat, S. K. et al., Temporal Analysis of the Nuclear-to-cytoplasmic Translocation of a Herpes Simplex Virus 1 Protein by Immunofluorescent Confocal Microscopy. J. Vis. Exp. (2018)
This video demonstrates a method for monitoring infected cell protein 0, ICP0 trafficking in herpes simplex virus-1 infection. Post-de novo synthesis, ICP0 translocates to the nucleus, later moving to the cytoplasm during infection progression. Immunofluorescence microscopy reveals and analyzes the protein's subcellular localization, offering insights into its trafficking across infection phases.
1. Cell Seeding and Virus Infection
2. Fixation and Permeabilization
3. Immunofluorescent Staining
4. Confocal Imaging
5. Analyzing Nuclear vs. Cytoplasmic Distribution
Figure 1: Dynamic trafficking of ICP0 during HSV-1 infection. HEL cells grown on 4-well slides were infected with prototype HSV-1 (strain F) at 10 pfu/cell. At 1, 5, and 9 h post infection (hpi), cells were fixed, permeabilized, and reacted to rabbit anti-ICP0 and mouse anti-PML primary antibodies, and then reacted to Alexa 594-conjugated anti-rabbit and Alexa 488-cojugated anti-mouse secondary antibodies for imaging under 100X objectives. Promyelocytic leukemia (PML) protein serves as a marker protein for ND10 nuclear bodies, which disappears at 5 and 9 hpi due to PML degradation in infection. Scale bar = 10 µm.
Figure 2: Analysis of ICP0 subcellular distribution. Left panel: With a confocal microscope, representative cells were enlarged to show the longitudinal line drawn across the cell that defines the region of interest (ROI). Right panel: Fluorescence pixel intensities in ROI were quantified for both ICP0 and DAPI in individual cells and illustrated as histograms by the confocal application software. An arbitrary threshold (green line) was set to reflect the background staining. Scale bar = 10 µm.
Figure 3: Percentage of subcellular distribution for wild-type and C-terminal truncated ICP0. HEL cells were infected by recombinant viruses containing wild-type ICP0 (ICP0 WT) or C-terminal truncated ICP0 (ICP0 C-truncation) at 4 pfu/cell. At indicated time points, cells were stained and analyzed as described above. Over 200 cells were tabulated for ICP0 location. Percentage of cells containing nuclear, cytoplasmic, or nuclear+cytoplasmic ICP0 were plotted with a spreadsheet computation software. This is an exemplary experiment to show that using this method, we have identified ICP0 C-terminus as a domain required for ICP0 nuclear-to-cytoplasmic translocation.
The authors have nothing to disclose.
Cells and viruses | |||
Human Embryonic Lung fibroblasts (HEL Cells) | Dr. Thomas E. Shenk (Princeton University) | HEL cells were grown in DMEM supplemented with 10% FBS | |
HSV-1 viral Stock (Strain F) | Dr. Bernard Roizman Lab | ||
Medium | |||
Dulbecco's modified Eagle's medium (DMEM) | Invitrogen | 11965-092 | |
Fetal Bovine Serum (FBS) | Sigma | F0926-500ml | |
Medium-199 (10X) | Gibco | 11825-015 | |
Reagents | |||
4- well 11 mm staggered slide | Cel-Line/Thermofisher Scientific | 30-149H-BLACK | |
16% Paraformaldehyde solution(w/v) Methanol free | Thermo Scientific | 28908 | |
Triton X-100 | Fisher reagents | BP151-1C0 | |
Bovine Serum Abumin (BSA) | Calbiochem | CAS 9048-46-8 | |
Horse Serum | Sigma | H1270 | |
Phosphate Buffered Saline (PBS) (137 mM NaCl, 2.7 mM KCl, 10 mM Na2HPO4, pH7.4) | Dr. Haidong Gu lab | ||
NaCl | Fisher Bioreagent | BP358-212 | |
KH2PO4 | Fisher Bioreagent | BP362-500 | |
KCl | Fisher Scientific | BP366-500 | |
Na2HPO4 | Fisher Bioreagent | BP332-500 | |
Blocking buffer (PBS with 1% BSA and 5% Horse serum ) | Dr. Haidong Gu lab | ||
Rabiit Anti-ICP0 antibody | Dr. Haidong Gu lab | ||
PML (PG-M3)-Mouse monoclonal IgG | santa Cruz Biotechnology | SC-966 | |
Alexa Fluor 594-goat anti-rabbit IgG | invitrogen | A11012 | |
Alexa Fluor 488-goat anti-mouse IgG | invitrogen | A11001 | |
Vectashield Mouting medium with DAPI | Vector laboratories | H-1200 | |
Pasteur pipette | Fisher Brand | 13-678-20D | |
Nail Polish | Sally Hansen | ||
Equipment | |||
Confocal Microscope | Leica SP8 | ||
Confocal Software | Leica LAS X Application suite | ||
Excel software | Microsoft Excel | ||
HERAcell 150i CO2 incubator | Thermo Scientific | Order code 51026282 |