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<h5>• 2.5μL Part Forward Primer</h5> | <h5>• 2.5μL Part Forward Primer</h5> | ||
<h5>• 2.5μL Part Reverse Primer</h5> | <h5>• 2.5μL Part Reverse Primer</h5> | ||
− | <h5> | + | <h5>• 0.1μL G-block / DNA template</h5> |
<h5>• 25μL Q5 2x High-Fidelity MasterMix</h5> | <h5>• 25μL Q5 2x High-Fidelity MasterMix</h5> | ||
<h5>• 19.9μL NFW (nuclease free water)</h5> | <h5>• 19.9μL NFW (nuclease free water)</h5> | ||
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<h5>2. Spin in the centrifuge.</h5> | <h5>2. Spin in the centrifuge.</h5> | ||
<h5>3. Put in the thermocycler. Process it in thermocycler as follows</h5> | <h5>3. Put in the thermocycler. Process it in thermocycler as follows</h5> | ||
− | <h5>Step 1: 98°C for 30 sec</h5> | + | <h5>-- Step 1: 98°C for 30 sec</h5> |
− | <h5>Step 2: 98°C for 10 sec</h5> | + | <h5>-- Step 2: 98°C for 10 sec</h5> |
− | <h5>Step 3: 70°C for 20 sec</h5> | + | <h5>-- Step 3: 70°C for 20 sec</h5> |
− | <h5>Step 4: 72°C for 20-30sec/kilobase (typically)</h5> | + | <h5>-- Step 4: 72°C for 20-30sec/kilobase (typically)</h5> |
− | <h5>Step 5: Enter “Go To” and then Step 2 and repeat for 25 cycles (or “times”)</h5> | + | <h5>-- Step 5: Enter “Go To” and then Step 2 and repeat for 25 cycles (or “times”)</h5> |
− | <h5>Step 6: 72°C for 2 min</h5> | + | <h5>-- Step 6: 72°C for 2 min</h5> |
− | <h5>Step 7: 4°C for ∞ (Set to 00:00:00)</h5> | + | <h5>-- Step 7: 4°C for ∞ (Set to 00:00:00)</h5> |
− | <h5>Step 8: End</h5> | + | <h5>-- Step 8: End</h5> |
<br> | <br> | ||
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<h5>• Centrifuge</h5> | <h5>• Centrifuge</h5> | ||
<h5>• Thermocycler</h5> | <h5>• Thermocycler</h5> | ||
− | <h5> | + | <h5>• Mini microfuge tube(s)</h5> |
<br> | <br> | ||
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<h5>3. Spin down in the centrifuge.</h5> | <h5>3. Spin down in the centrifuge.</h5> | ||
<h5>4. Put in thermocycler, process it in thermocycler as follows:</h5> | <h5>4. Put in thermocycler, process it in thermocycler as follows:</h5> | ||
− | <h5>Step 1: 37°C for 3 min</h5> | + | <h5>-- Step 1: 37°C for 3 min</h5> |
− | <h5>Step 2: 16°C for 4 min</h5> | + | <h5>-- Step 2: 16°C for 4 min</h5> |
− | <h5>Step 3: Go to Step 1 and repeat for 25 cycles</h5> | + | <h5>-- Step 3: Go to Step 1 and repeat for 25 cycles</h5> |
− | <h5>Step 4: 50°C for 5 min</h5> | + | <h5>-- Step 4: 50°C for 5 min</h5> |
− | <h5>Step 5: 80°C for 5 min</h5> | + | <h5>-- Step 5: 80°C for 5 min</h5> |
− | <h5>Step 6: 4°C for ∞ (Set to 00:00:00)</h5> | + | <h5>-- Step 6: 4°C for ∞ (Set to 00:00:00)</h5> |
− | <h5>Step 7: End</h5> | + | <h5>-- Step 7: End</h5> |
<br> | <br> | ||
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<h5>3. Pipette diluted DNA amount (uL) and water (uL) accordingly in second strip. </h5> | <h5>3. Pipette diluted DNA amount (uL) and water (uL) accordingly in second strip. </h5> | ||
<h5>4. Make Master Mix (MM): </h5> | <h5>4. Make Master Mix (MM): </h5> | ||
− | <h5> | + | <h5>-- a) amount of TX-TL Buffer (uL) </h5> |
− | <h5> | + | <h5>-- b) amount of TX-TL Extract (uL) </h5> |
− | <h5> | + | <h5>-- c) amount of dcas9 expression plasmid (uL) —place values in blue grid section in top left corner for calculations </h5> |
<h5>5. Add amount given of MM (uL) to each tube with a GG plasmid and a gRNA plasmid. </h5> | <h5>5. Add amount given of MM (uL) to each tube with a GG plasmid and a gRNA plasmid. </h5> | ||
<h5>6. Pipette 10uL of each reaction from tube to each well in the plate. </h5> | <h5>6. Pipette 10uL of each reaction from tube to each well in the plate. </h5> |
Revision as of 20:19, 19 October 2016