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<h5>4. Repeat washing procedure (from Step 3, “Add 750ul of…”). Remove/empty flow-through again. Spin at 10,000rpm for an additional minute. Throw away bottom clear tube with any remaining liquid.</h5> | <h5>4. Repeat washing procedure (from Step 3, “Add 750ul of…”). Remove/empty flow-through again. Spin at 10,000rpm for an additional minute. Throw away bottom clear tube with any remaining liquid.</h5> | ||
<h5>5. Place top tube with white filter into clean 1.5mL microfuge tube. Check for ethanol using pipette tip.</h5> | <h5>5. Place top tube with white filter into clean 1.5mL microfuge tube. Check for ethanol using pipette tip.</h5> | ||
− | <h5>6. Add 30-50uL (usually 40uL) of Elution Buffer to the center of the tube. Incubate at room temperature for 2 minutes.</ | + | <h5>6. Add 30-50uL (usually 40uL) of Elution Buffer to the center of the tube. Incubate at room temperature for 2 minutes.</h5> <h5>7. Centrifuge at 10,000rpm for 2 minutes to elute DNA.</h5> |
<h5>8. Store at -20 degrees Celsius, or nanodrop for concentration and for dilutions (see Parts Dilutions Protocol).</h5> | <h5>8. Store at -20 degrees Celsius, or nanodrop for concentration and for dilutions (see Parts Dilutions Protocol).</h5> | ||
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<h4>Ingredients/Materials: *</h4> | <h4>Ingredients/Materials: *</h4> | ||
− | <h5>• NFW</ | + | <h5>• NFW</h5> |
− | <h5>• PCR Purified DNA Part Reaction (nanodropped with concentration)</ | + | <h5>• PCR Purified DNA Part Reaction (nanodropped with concentration)</h5> |
− | <h5>• 1.5 mL microfuge tube</ | + | <h5>• 1.5 mL microfuge tube</h5> |
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<h5>2. Plug in numbers (bases and concentration) into Promega Biomath Calculator to convert from ug/mL (or ng/uL) to pmol/uL (http://www.promega.com/a/apps/biomath/index.html?calc=ugmlpmolul).</h5> | <h5>2. Plug in numbers (bases and concentration) into Promega Biomath Calculator to convert from ug/mL (or ng/uL) to pmol/uL (http://www.promega.com/a/apps/biomath/index.html?calc=ugmlpmolul).</h5> | ||
<h5>3. Multiply resulting number by 1000 and that is the concentration in nM.</h5> | <h5>3. Multiply resulting number by 1000 and that is the concentration in nM.</h5> | ||
− | <h5>4. Plug into dilution equation: C1*V1=(30nM)(V2), where C1 is the concentration in nM, and V2 is equal to the amount wanted (typically 10uL-20uL). Then solve for V1.</ | + | <h5>4. Plug into dilution equation: C1*V1=(30nM)(V2), where C1 is the concentration in nM, and V2 is equal to the amount wanted (typically 10uL-20uL). Then solve for V1.</h5> |
<h5>5. Put in the amount of V1 of selected Part in 1.5mL microfuge tube.</h5> | <h5>5. Put in the amount of V1 of selected Part in 1.5mL microfuge tube.</h5> | ||
<h5>6. Subtract V1 from V2. Put this amount of NFW into the tube.</h5> | <h5>6. Subtract V1 from V2. Put this amount of NFW into the tube.</h5> |
Revision as of 22:30, 18 October 2016