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This protocol can be separated in two major steps: (1) the dissociation and Hoechst 33342 staining of mouse testis cells followed by, if necessary, (2) FACS sorting of the relevant meiotic fractions, including all stages of meiosis, from germ cells to round spermatids. Once collected, these highly enriched meiotic populations can be used for a wide range of analysis. This protocol describes the dissociation of one adult testis; volumes can be adapted accordingly for juveniles or for additional testes.
1. Testis Dissociation
- Place one decapsulated testis in a 15-ml tube.
- Add 3-ml of Gey's Balance Salt Solution (GBSS) containing 120 U/ml of Collagenase type I.
- Add 10 μl of DNAse I (1mg/ml stock solution in 50% glycerol) and shake it vigorously by hand until you see testicular tubules starting to dissociate.
- Agitate horizontally at a maximum of 120 rpm for 15 min at 33°C.
- Decant for 1 min vertically at room temperature and discard supernatant.
- Repeat steps 1.2 to 1.5.
- Add 2.5 ml of GBSS containing Collagenase type I, 50 μl of a 50mg/ml Trypsin stock solution resuspended in 1mM HCl solution, and 10 μl of DNAse I (1mg/ml), and invert the tube several times.
- Agitate horizontally at a maximum of 120 rpm for 15 min at 33°C.
- Using plastic disposable Pasteur pipet with wide orifice, pipette gently up and down for 3 min.No clumps should be visible at this point.
- Add 30 μl of trypsin, 10 μl of DNAse I, 40 μl of Hoechst 33342 resuspended in DMSO (10 mg/ml), and invert the tube several times.
- Agitate horizontally at a maximum of 120 rpm for 15 min at 33°C.
- Add 400-μl of fetal calf serum (FCS) and mix by inverting to inactivate trypsin.
- Final staining is performed by adding 50 μl of Hoechst 33342 resuspended in DMSO (10 mg/ml), and 10 μl of DNAse I (1 mg/ml).
- Agitate horizontally at a maximum of 120 rpm for 15 min at 33°C.
- The dissociated testis sample is then passed through two 40-μm GBSS pre-wetted disposable filters over a 50-ml conical tube, then 5 μl of propidium iodide (PI) solution is added and sample is gently mixed by pipetting several times with disposable Pasteur pipette.
- Sample is transferred to a 5-ml plastic syringe through an 18-gauge needle. The latter is replaced by a 22-gauge needle for sample delivery. The syringe is stored on ice and protected from the light until ready for FACS processing.
2. FACS Setup and Purification
- Sorting was performed on a Becton-Dickinson Aria IIu cell sorter. The conditions described should therefore be used as a starting point especially when using different equipment. We used conditions previously described7,8.
- Since the Aria IIu does not have a UV laser, we adapted the protocol for detecting Hoescht staining using a 405nm violet laser in addition we used a 488nm blue laser for forward and side scatter detection. Furthermore, some filters were modified in order to limit some red laser leakiness resulting in improved scattered plot sharpness.
- The violet laser was configured with a 450/40nm band pass for detection of Hoescht Blue emission and a 585/42nm band pass for Hoescht Red emission. A 502nm long pass was used to separate blue from red fluorescence.
- A 100 μm nozzle was used with a drop drive frequency of 28,000 drops/second. The sample threshold rate was approximately 4000 events/second. The temperature control option was used to maintain sample and collection tubes at 4°C the entire duration of sorting. Additionally, the sample agitation feature was used at 200 rpm to prevent the sample from sedimenting throughout the sort.
- Usually, two to three testes were processed per 6 hours sort allowing the collection of 0.5- 2.0x106cells for each population (see representative section).
- The sample was sorted in aliquots of approximately 750μl dispensed from the syringe. Meanwhile, during these pauses the collection tubes were kept at 4°C, protected from the light, and gently mixed prior to resuming sort.
- The sorted samples were collected into a 12x75mm glass borosilicated collection tube containing 250μl DMEM supplemented with 10% FCS.
3. Representative Results:
A typical FACS profile is shown in Figure 1. All of the major steps of meiosis are identified and are indicated in the legend. If the Hoechst 33342 stain is not optimal, the global profile will appear much more compact and less defined. A common problem regards not adding sufficient DNAse, which will induce rapid cell clumping. Addition of extra DNAse at all indicted steps usually solves this problem. Freeze thawing of the DNAse stock (stored at -20°C)should be kept to a minimum, as this results in rapid loss of enzyme activity.
Spo11 is the meiotic endonuclease that directs double-strand breaks at sites of meiotic recombination hotspots12.Figure 2 shows typical profiles of a Spo11-null testis where double-strand break are not formed, resulting in an abortive meiosis12, as well as a pre-puberous profile of a 13-days old mouse, which reveals asynchronous nature of this first wave of meiosis. Standard cytogenetic analyses using the combination of synaptonemal complex protein 3 (SCP3) and phosphorylated histone H2AX antibodies stage-specific meiosis markers should be initially used to confirmed the purity and nature of the sorted meiotic cells, as described elswhere11.

Figure 1. Wild-type meiosis FACS profiles. A) Representative scatter plot is shown. The gated cells are shown. Note the large amount of debris present in adult testis containing mostly empty membranes and spermatid tails. B) A representative PI plot shows the very limited amount of PI positive cells present in a sample. The typical gate is shown. C) A representative wild-type Hoechst 33342 FACS profile is shown. The various meiotic cell populations that can be purified using this method for further study are indicated: spermatogonia (Sp), pre-leptotene (pL), leptotene-zygotene (L/Z), early-Pachytene (eP), middle-Pachytene (mP), late-Pachytene (lP), diplotene (D), and round spermatids (RS).

Figure 2. Spo11-null and wild-type day 13 meiotic FACS profiles. A) A typical Spo11-null profile is shown with a clear meiotic failure, where no stage past the leptotene/zygotene early-pachytene can be detected. B) The profile of a 13-day-old wild-type male mouse shows the high concentration of leptotene/zygotene cells. This first wave of meiosis is rather asynchronous, as clearly visualized using this methodology.