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<h3>Making the Agarose Gel</h3> | <h3>Making the Agarose Gel</h3> | ||
− | |||
<h4>Ingredients/Materials: *</h4> | <h4>Ingredients/Materials: *</h4> | ||
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<h5>• 0.6g agarose</h5> | <h5>• 0.6g agarose</h5> | ||
<h5>• 50mL TBE 1x</h5> | <h5>• 50mL TBE 1x</h5> | ||
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<h4>Directions</h4> | <h4>Directions</h4> | ||
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<h5>1. Weigh 0.6g of agarose into flask.</h5> | <h5>1. Weigh 0.6g of agarose into flask.</h5> | ||
<h5>2. Add 50mL of TBE 1x Buffer</h5> | <h5>2. Add 50mL of TBE 1x Buffer</h5> | ||
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<h5>7. Cool until solidified.</h5> | <h5>7. Cool until solidified.</h5> | ||
− | |||
+ | <h3>Gel Electrophoresis</h3> | ||
<h4>Ingredients/Materials: *</h4> | <h4>Ingredients/Materials: *</h4> | ||
<h5>• TBE 1x Buffer</h5> | <h5>• TBE 1x Buffer</h5> | ||
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<h5>7. After running place gel onto transilluminator (must be off) in the glove box. Place box over it with the hole and then place iPad above it and set to either video or time-lapse. Then turn on transilluminator within closed glove box while videotaping.</h5> | <h5>7. After running place gel onto transilluminator (must be off) in the glove box. Place box over it with the hole and then place iPad above it and set to either video or time-lapse. Then turn on transilluminator within closed glove box while videotaping.</h5> | ||
<h5>8. Results can now be analyzed.</h5> | <h5>8. Results can now be analyzed.</h5> | ||
+ | |||
<h3>PCR (Polymerase Chain Reaction) for Parts<h3> | <h3>PCR (Polymerase Chain Reaction) for Parts<h3> | ||
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<h5>Step 8: End</h5> | <h5>Step 8: End</h5> | ||
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+ | <h3>PCR Purification of DNA</h3> | ||
<h4>Ingredients/Materials: *</h4> | <h4>Ingredients/Materials: *</h4> | ||
<h5>• PCR reaction(s) (DNA Part(s))</h5> | <h5>• PCR reaction(s) (DNA Part(s))</h5> | ||
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<h4>Directions: (for each PCR reaction)</h4> | <h4>Directions: (for each PCR reaction)</h4> | ||
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<h5>1. Transfer the PCR reaction mixture (usually 50ul, ranges from 35-50ul) to a 1.5mL microfuge tube and add 5 volumes (5 x amount of PCR reaction mixture) of Buffer B3 (with pre-added isopropyl alcohol).</h5> | <h5>1. Transfer the PCR reaction mixture (usually 50ul, ranges from 35-50ul) to a 1.5mL microfuge tube and add 5 volumes (5 x amount of PCR reaction mixture) of Buffer B3 (with pre-added isopropyl alcohol).</h5> | ||
<h5>2. Transfer above mixture to EZ-10 column and leave at room temperature for 2 minutes. Centrifuge at 10,000rpm for 2 minutes.</h5> | <h5>2. Transfer above mixture to EZ-10 column and leave at room temperature for 2 minutes. Centrifuge at 10,000rpm for 2 minutes.</h5> | ||
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<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> | ||
− | |||
+ | <h3>Parts Dilutions</h3> | ||
<h4>Ingredients/Materials: *</h4> | <h4>Ingredients/Materials: *</h4> | ||
<h5>• NFW</h5> | <h5>• NFW</h5> | ||
<h5>• PCR Purified DNA Part Reaction (nanodropped with concentration)</h5> | <h5>• PCR Purified DNA Part Reaction (nanodropped with concentration)</h5> | ||
<h5>• 1.5 mL microfuge tube</h5> | <h5>• 1.5 mL microfuge tube</h5> | ||
− | |||
<h4>Directions</h4> | <h4>Directions</h4> | ||
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<h5>7. Centrifuge.</h5> | <h5>7. Centrifuge.</h5> | ||
<h5>8. Store at -20 degrees Celsius.</h5> | <h5>8. Store at -20 degrees Celsius.</h5> | ||
+ | |||
<h3>Golden Gate Assembly Assembly Protocol</h3> | <h3>Golden Gate Assembly Assembly Protocol</h3> | ||
<h5>(Example with Golden Gate Assembly Protocol for GG37-52; multiple GG Assembly for Plasmids can be done at a time in different tubes as seen in example)</h5> | <h5>(Example with Golden Gate Assembly Protocol for GG37-52; multiple GG Assembly for Plasmids can be done at a time in different tubes as seen in example)</h5> | ||
− | |||
<h4>Ingredients (per Golden Gate Assembly)</h4> | <h4>Ingredients (per Golden Gate Assembly)</h4> | ||
<h5>• 1μL: P part (i.e. P1a, P2a, P3a, P4a)</h5> | <h5>• 1μL: P part (i.e. P1a, P2a, P3a, P4a)</h5> | ||
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<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> | ||
+ | |||
<h3>PCR Check for Golden Gate Plasmids</h3> | <h3>PCR Check for Golden Gate Plasmids</h3> | ||
<h5>(multiple can be done at a time in different tubes)</h5> | <h5>(multiple can be done at a time in different tubes)</h5> | ||
− | |||
<h4>Ingredients</h4> | <h4>Ingredients</h4> | ||
<h5>• 0.5μL V part forward sequencing primer</h5> | <h5>• 0.5μL V part forward sequencing primer</h5> | ||
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<h5>Step 8: End</h5> | <h5>Step 8: End</h5> | ||
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+ | <h3>Making LB Media (& Autoclaving)</h3> | ||
<h4>Ingredients</h4> | <h4>Ingredients</h4> | ||
<h5>• LB powder</h5> | <h5>• LB powder</h5> | ||
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<h5>12. Open manual valves and release steam.</h5> | <h5>12. Open manual valves and release steam.</h5> | ||
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+ | <h3>Making LB Media w/ Antibiotic Resistance for Plates</h3> | ||
<h4>Ingredients</h4> | <h4>Ingredients</h4> | ||
<h5>• 300ml H2O</h5> | <h5>• 300ml H2O</h5> | ||
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<h5>6. Open the lid to each plate carefully and pour plate near the flame.</h5> | <h5>6. Open the lid to each plate carefully and pour plate near the flame.</h5> | ||
− | |||
+ | <h3>Bacterial Transformation of Plasmids (& Growing Liquid Cultures)</h3> | ||
<h4>Ingredients/Materials: *</h4> | <h4>Ingredients/Materials: *</h4> | ||
<h5>• DNA GG Plasmid Mixture</h5> | <h5>• DNA GG Plasmid Mixture</h5> | ||
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<h5>5. Incubate gridded plate and the liquid cultures at 37°C overnight. Take out the next morning and store in the refrigerator (4°C).</h5> | <h5>5. Incubate gridded plate and the liquid cultures at 37°C overnight. Take out the next morning and store in the refrigerator (4°C).</h5> | ||
− | |||
+ | <h3>Plate Reading (for Fluorescence, Absorbance, Induction, etc.)</h3> | ||
<h4>Ingredients/Materials *</h4> | <h4>Ingredients/Materials *</h4> | ||
− | <h5> | + | <h5>• Liquid cultures</h5> |
− | <h5> | + | <h5>• 96 well plate (A-H by 1-12)</h5> |
− | <h5> | + | <h5>• Plate Reader (we use VICTOR X3)</h5> |
− | <h5> | + | <h5>• LB Media</h5> |
<h4>Directions</h4> | <h4>Directions</h4> | ||
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<h3>Purification of Plasmid DNA</h3> | <h3>Purification of Plasmid DNA</h3> | ||
+ | <h4>Ingredients/Materials *</h4> | ||
+ | <h5>• Liquid cultures</h5> | ||
+ | <h5>• Miniprep DNA kit (we used BioBasic kit)</h5> | ||
+ | |||
<h4>Directions</h4> | <h4>Directions</h4> | ||
<h5>1. Add 1.5 mL-5mL overnight culture in the tube and centrifuge at 12,000 rpm for 2 mins. Drain liquid completely. </h5> | <h5>1. Add 1.5 mL-5mL overnight culture in the tube and centrifuge at 12,000 rpm for 2 mins. Drain liquid completely. </h5> | ||
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<h5>12. Store purified DNA at -20°C.</h5> | <h5>12. Store purified DNA at -20°C.</h5> | ||
− | + | <h4>For centrifuging culture to pellets:</h4> | |
− | <h4> | + | |
<h5>1. In a 1.5mL tube pipette 1000μL liquid culture. </h5> | <h5>1. In a 1.5mL tube pipette 1000μL liquid culture. </h5> | ||
<h5>2. Spin at max speed for 30 sec.</h5> | <h5>2. Spin at max speed for 30 sec.</h5> | ||
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<h5>6. Freeze.</h5> | <h5>6. Freeze.</h5> | ||
+ | <h3>Plate Reading (for Fluorescence using TX-TL for GG105-108 w/ dcas9 expression plasmids)</h3 | ||
+ | <h4>Ingredients/Materials: * </h4> | ||
+ | <h5>• TX-TL Buffer</h5> | ||
+ | <h5>• TX-TL Extract</h5> | ||
+ | <h5>• Setup Spreadsheet w/ entered values (for clean spreadsheet: http://www.jove.com/files/ftp_upload/50762/TXTL_JoVE.xlsx)</h5> | ||
+ | <h5>• NFW</h5> | ||
+ | <h5>• dcas9 expression plasmids</h5> | ||
+ | <h5>• gRNA plasmids</h5> | ||
+ | <h5>• GG reaction plasmids w/ clamp binding sites (in our case, GG105-108)</h5> | ||
+ | <h5>• 384-well plate</h5> | ||
+ | |||
+ | <h4>Directions: </h4> | ||
+ | <h5>1. Dilute gRNA plasmids accordingly by concentration to setup values in spreadsheet in PCR tube strip. </h5> | ||
+ | <h5>2. Dilute GG105-108 plasmids accordingly by concentration to setup values in spreadsheet in PCR tube 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> -amount of TX-TL Buffer (uL) </h5> | ||
+ | <h5> -amount of TX-TL Extract (uL) </h5> | ||
+ | <h5> -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>6. Pipette 10uL of each reaction from tube to each well in the plate. </h5> | ||
+ | <h5>7. Place plate in plate reader and set to correct protocol (created protocol for us: iGEM_TX-TL_GFP_RFP) to measure 384-well plate and run plate reader. </h5> | ||
+ | <h5>8. Let it run overnight (120 runs total with about 3 minute intervals) and check in the morning. </h5> | ||
+ | <h5>9. Import data results into Excel spreadsheet. Optional: Upload to Google Drive. </h5> | ||
+ | <h5>10. To analyze data using Python program—file must be in csv format. (If you would like the code for analyzing this type of data, please contact us!) </h5> | ||
<h3>For any questions about Protocols, email: alverno.igem@gmail.com</h3> | <h3>For any questions about Protocols, email: alverno.igem@gmail.com</h3> |
Revision as of 01:37, 19 October 2016