Team:UC Davis/Protocols
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<h1 class="title">Protocols</h1> | <h1 class="title">Protocols</h1> | ||
<h2 class="title">LB Media</h2> | <h2 class="title">LB Media</h2> | ||
- | <li>950 mL | + | <li>950 mL dH<sub>2</sub>0</li> |
<li>10 g Tryptone</li> | <li>10 g Tryptone</li> | ||
<li>10 g NaCl</li> | <li>10 g NaCl</li> | ||
- | + | <li>5 g Yeast Extract</li> | |
- | + | 1 L Total | |
<li>Add 15 g Agar, if being poured into plates.</li> | <li>Add 15 g Agar, if being poured into plates.</li> | ||
<li>Autoclave, when cool add antibiotics if desired.</li> | <li>Autoclave, when cool add antibiotics if desired.</li> | ||
Line 20: | Line 22: | ||
<li>Working Concentration 12.5 μg/ml</li> | <li>Working Concentration 12.5 μg/ml</li> | ||
<li>Stock solutions can be made at 35 mg/ml in ethanol and kept at -20º C</li> | <li>Stock solutions can be made at 35 mg/ml in ethanol and kept at -20º C</li> | ||
- | + | ||
Kanamycin | Kanamycin | ||
<li>Filter sterilize for kanamycin</li> | <li>Filter sterilize for kanamycin</li> | ||
Line 27: | Line 29: | ||
<li>35 µg/mL for high-copy plasmids</li> | <li>35 µg/mL for high-copy plasmids</li> | ||
<li>Stock solution is 35 mg/ml in water and kept at -20º C</li> | <li>Stock solution is 35 mg/ml in water and kept at -20º C</li> | ||
- | + | ||
Spectinomycin | Spectinomycin | ||
<li>Filter sterilize</li> | <li>Filter sterilize</li> | ||
Line 45: | Line 47: | ||
</ol> | </ol> | ||
<h2 class="title">Making Chemically Competent Cells</h2> | <h2 class="title">Making Chemically Competent Cells</h2> | ||
+ | <ol> | ||
+ | <li>Prepare 0.5 M PIPES (pH 6.7) (piperazine-1,2-bis[2-ethanesulfonic acid]) by dissolving 15.1 g of PIPES in 80 ml of pure H2O (Milli-Q, or equivalent). Adjust the pH of the solution to 6.7 with 5 M KOH, and then add pure H<sub>2</sub>O to bring the final volume to 100 ml. Sterilize the solution by filtration through a disposable pre-rinsed Nalgene filter (0.45-µm pore size). Divide into aliquots and store frozen at -20°C. | ||
+ | Prepare Inoue transformation buffer by dissolving all of the solutes listed below in 800 mL of pure H2O and then add 20 ml of 0.5 M PIPES (pH 6.7). Adjust the volume of the Inoue transformation buffer to 1 liter with pure H<sub>2</sub>O.</li> | ||
+ | |||
+ | <table> <tr> | ||
+ | <th></th> <th>Reagent</th> <th>Amount per liter</th> <th>Final Concentration</th> | ||
+ | </tr> <tr> | ||
+ | <th></th> <td>MnCl<sub>2</sub>•4H<sub>2</sub>O</td> <td>10.88 g</td> <td>55 mM</td> | ||
+ | </tr> <tr> | ||
+ | <th></th> <td>CaCl<sub>2</sub>•2H<sub>2</sub>O</td> <td>2.20 g</td> <td>15 mM</td> | ||
+ | </tr> <tr> | ||
+ | <th></th> <td>KCl</td> <td>18.65 g</td> <td>250 mM</td> | ||
+ | </tr> <tr> | ||
+ | <th></th> <td>PIPES (0.5 M, pH 6.7)</td> <td>20 ml</td> <td>10 mM</td> | ||
+ | </tr> </table> | ||
+ | Add H<sub>2</sub>O to fill solution to 1 liter. Sterilize Inoue transformation buffer by filtration through a prerinsed 0.45-µm Nalgene filter. Divide into aliquots and store at -20°C. | ||
+ | |||
+ | <li>Pick a single bacterial colony (2-3 mm in diameter) from a plate that has been incubated for 16-20 hours at 37°C. Transfer the colony into 25 ml of SOB medium (LB may be used instead) in a 250-ml flask. Incubate the culture for 6-8 hours at 37°C with vigorous shaking (250-300 rpm).</li> | ||
+ | <li>At about 6 o'clock in the evening, use this starter culture to inoculate three 1-liter flasks, each containing 250 ml of SOB. The first flask receives 10 ml of starter culture, the second receives 4 ml, and the third receives 2 ml. Incubate all three flasks overnight at 18-22°C with moderate shaking.</li> | ||
+ | <li> The following morning, read the OD<sub>600</sub> of all three cultures. Continue to monitor the OD every 45 minutes.</li> | ||
+ | <li>When the OD<sub>600</sub> of one of the cultures reaches 0.55, transfer the culture vessel to an ice-water bath for 10 minutes. Discard the two other cultures. | ||
+ | <li>Harvest the cells by centrifugation at 2500g (3900 rpm in a Sorvall GSA rotor) for 10 minutes at 4°C.</li> | ||
+ | <li>Pour off the medium and store the open centrifuge bottle on a stack of paper towels for 2 minutes. Use a vacuum aspirator to remove any drops of remaining medium adhering to walls of the centrifuge bottle or trapped in its neck.</li> | ||
+ | <li>Resuspend the cells gently in 80 ml of ice-cold Inoue transformation buffer.</li> | ||
+ | <li>Harvest the cells by centrifugation at 2500g (3900 rpm in a Sorvall GSA rotor) for 10 minutes at 4°C.</li> | ||
+ | <li>Pour off the medium and store the open centrifuge tube on a stack of paper towels for 2 minutes. Use a vacuum aspirator to remove any drops of remaining medium adhering to the walls of the centrifuge tube or trapped in its neck.</li> | ||
+ | <li>Resuspend the cells gently in 20 ml of ice-cold Inoue transformation buffer.</li> | ||
+ | <li>Add 1.5 ml of DMSO. Mix the bacterial suspension by swirling and then store it in ice for 10 minutes.</li> | ||
+ | <li>Working quickly, dispense aliquots of the suspensions into chilled, sterile microcentrifuge tubes. Immediately snap-freeze the competent cells by immersing the tightly closed tubes in a bath of liquid nitrogen. Store the tubes at -70°C until needed. | ||
+ | </ol> | ||
<h2 class="title">Double Restriction (Fast) Digest </h2> | <h2 class="title">Double Restriction (Fast) Digest </h2> | ||
+ | <li>~20 µL DNA (as much as possible)</li> | ||
+ | <li>1 µL Restriction Enzyme 1</li> | ||
+ | <li>1 µL Restriction Enzyme 2</li> | ||
+ | <li>5 µL 10X Universal Buffer (with loading dye)</li> | ||
+ | <li>Add appropriate amount of dH<sub>2</sub>0 (µL)</li> | ||
+ | |||
+ | 50 µL Total → 37º C, 3 hrs. | ||
+ | |||
+ | <li>Treat insert with XbaI and PstI</li> | ||
+ | <li>Treat vector with SpeI and PstI</li> | ||
<h2 class="title">Ligations (Standard Assembly)</h2> | <h2 class="title">Ligations (Standard Assembly)</h2> | ||
+ | Use Excel macro to determine vector/insert volumes based off the DNA concentrations, where a vector to insert ratio is maintained at 3:1 and the desired vector mass in the reaction 200 ng.<br></br> | ||
+ | |||
+ | Ligation reaction: | ||
+ | <li>__ µL vector DNA</li> | ||
+ | <li>__ µL insert DNA</li> | ||
+ | <li>2 µL T4 10x Buffer</li> | ||
+ | <li>1 µL DNA ligase</li> | ||
+ | <li>Add appropriate amount of dH</ins><sub>2</sub><ins>0 (µL)</li> | ||
+ | 20 µL Total →Leave at room temperature for 20 minutes | ||
+ | <br></br> | ||
+ | Vector control: | ||
+ | <li>__ µL vector DNA (same volume as ligation reaction)</li> | ||
+ | <li>2 µL Buffer</li> | ||
+ | <li>1 µL ligase</li> | ||
+ | <li>Add appropriate amount of dH<sub>2</sub>0 (µL)</li> | ||
+ | 20 µL total | ||
+ | <br></br> | ||
+ | Insert control: | ||
+ | <li>__ µL insert DNA (same volume as ligation reaction)</li> | ||
+ | <li>2 µL Buffer</li> | ||
+ | <li>1 µL ligase</li> | ||
+ | <li>Add appropriate amount of dH<sub>2</sub>0 (µL)</li> | ||
+ | 20 uL Total | ||
<h2 class="title">Gel Electrophoresis</h2> | <h2 class="title">Gel Electrophoresis</h2> | ||
+ | <ol> | ||
+ | <li>Add 0.5 grams of agarose to 50 mL of 1X TAE buffer.</li> | ||
+ | <li>Microwave agarose/TAE until agarose completely dissolved.</li> | ||
+ | <li>Cool under water, add SYBR safe dye (2.5-3µL).</li> | ||
+ | <li>Pour into mold with appropriate comb.</li> | ||
+ | <li>Wait 15 minutes for gel to solidify.</li> | ||
+ | <li>Load DNA with dye into wells while submerged in 1X TAE.</li> | ||
+ | <li>Run gel at a constant 120V.</li> | ||
+ | <li>Check gel periodically.</li> | ||
+ | </ol> | ||
<h2 class="title">Gel Extraction and Purification</h2> | <h2 class="title">Gel Extraction and Purification</h2> | ||
+ | <ol> | ||
+ | <li>Prepare agarose gel and use 3 combs to make a bigger well.</li> | ||
+ | <li>Once it has run, use hand held UV lamp (in the dark, wearing goggles) to identify bands. </li> | ||
+ | <li>Cut out desired band with stamp pipette tip and transfer to a clean tube. The stamp pipette tip can be left in the tube to be cleaned out with a smaller pipette tip. </li> | ||
+ | <li>Weigh gel fragments and add 200 µL Buffer NTI for every 100 mg agarose gel.</li> | ||
+ | Incubate sample for 5-10 min at 50º C, vortexing every 2-3 min until the gel is completely dissolved.</li> | ||
+ | <li>Load sample onto column over collection tube. Centrifuge for 30 sec at 11,000 x g.</li> | ||
+ | <li>Discard flow-through and replace column on tube.</li> | ||
+ | <li>Add 700 µL Buffer NT3 and centrifuge for 30 sec. at 11,000 x g. Discard flow-through.</li> | ||
+ | <li>Centrifuge for 2 min at 11,000 x g to completely remove buffer.</li> | ||
+ | <li>Transfer column to a 1.5 mL tube and add 20 µL ddH<sub>2</sub>O.</li> | ||
+ | <li>Incubate at room temperature for 10 min.</li> | ||
+ | <li>Centrifuge for 1 min at 11,000 x g. </li> | ||
+ | </ol> | ||
+ | |||
+ | |||
<h2 class="title">PCR Amplification for Golden Gate Assembly</h2> | <h2 class="title">PCR Amplification for Golden Gate Assembly</h2> | ||
<h2 class="title">Golden Gate Assembly</h2> | <h2 class="title">Golden Gate Assembly</h2> |
Revision as of 22:18, 15 August 2013
Protocols
LB Media
Antibiotic Stock Solutions
ChloramphenicolHeat Shock Transformation
- Preheat water bath to 42º C.
- Thaw competent cells on ice for 10 minutes.
- Use 50 µL competent cells, add transforming DNA [up to 25 ng per 50 µL of cells, volume not exceeding 2.5 µL (5%)]. For control add 1 µL of control DNA (PUC19 carb resistance). Swirl to mix, store on ice 5 minutes.
- Heat shock in 42º C water bath for 45 seconds.
- Cool cells in ice bath for a few minutes.
- Add 800 µL LB to each tube, set in shaker at 37º C for 45 minutes.
- Transfer 200 µL of culture per plate (containing the appropriate antibiotic).
- Spread using glass beads.
- Invert plates and incubate overnight (12-16 hrs) at 37º C.
Making Chemically Competent Cells
- Prepare 0.5 M PIPES (pH 6.7) (piperazine-1,2-bis[2-ethanesulfonic acid]) by dissolving 15.1 g of PIPES in 80 ml of pure H2O (Milli-Q, or equivalent). Adjust the pH of the solution to 6.7 with 5 M KOH, and then add pure H2O to bring the final volume to 100 ml. Sterilize the solution by filtration through a disposable pre-rinsed Nalgene filter (0.45-µm pore size). Divide into aliquots and store frozen at -20°C. Prepare Inoue transformation buffer by dissolving all of the solutes listed below in 800 mL of pure H2O and then add 20 ml of 0.5 M PIPES (pH 6.7). Adjust the volume of the Inoue transformation buffer to 1 liter with pure H2O.
- Pick a single bacterial colony (2-3 mm in diameter) from a plate that has been incubated for 16-20 hours at 37°C. Transfer the colony into 25 ml of SOB medium (LB may be used instead) in a 250-ml flask. Incubate the culture for 6-8 hours at 37°C with vigorous shaking (250-300 rpm).
- At about 6 o'clock in the evening, use this starter culture to inoculate three 1-liter flasks, each containing 250 ml of SOB. The first flask receives 10 ml of starter culture, the second receives 4 ml, and the third receives 2 ml. Incubate all three flasks overnight at 18-22°C with moderate shaking.
- The following morning, read the OD600 of all three cultures. Continue to monitor the OD every 45 minutes.
- When the OD600 of one of the cultures reaches 0.55, transfer the culture vessel to an ice-water bath for 10 minutes. Discard the two other cultures.
- Harvest the cells by centrifugation at 2500g (3900 rpm in a Sorvall GSA rotor) for 10 minutes at 4°C.
- Pour off the medium and store the open centrifuge bottle on a stack of paper towels for 2 minutes. Use a vacuum aspirator to remove any drops of remaining medium adhering to walls of the centrifuge bottle or trapped in its neck.
- Resuspend the cells gently in 80 ml of ice-cold Inoue transformation buffer.
- Harvest the cells by centrifugation at 2500g (3900 rpm in a Sorvall GSA rotor) for 10 minutes at 4°C.
- Pour off the medium and store the open centrifuge tube on a stack of paper towels for 2 minutes. Use a vacuum aspirator to remove any drops of remaining medium adhering to the walls of the centrifuge tube or trapped in its neck.
- Resuspend the cells gently in 20 ml of ice-cold Inoue transformation buffer.
- Add 1.5 ml of DMSO. Mix the bacterial suspension by swirling and then store it in ice for 10 minutes.
- Working quickly, dispense aliquots of the suspensions into chilled, sterile microcentrifuge tubes. Immediately snap-freeze the competent cells by immersing the tightly closed tubes in a bath of liquid nitrogen. Store the tubes at -70°C until needed.
Reagent | Amount per liter | Final Concentration | |
---|---|---|---|
MnCl2•4H2O | 10.88 g | 55 mM | |
CaCl2•2H2O | 2.20 g | 15 mM | |
KCl | 18.65 g | 250 mM | |
PIPES (0.5 M, pH 6.7) | 20 ml | 10 mM |
Double Restriction (Fast) Digest
Ligations (Standard Assembly)
Use Excel macro to determine vector/insert volumes based off the DNA concentrations, where a vector to insert ratio is maintained at 3:1 and the desired vector mass in the reaction 200 ng.Ligation reaction:
Vector control:
Insert control:
Gel Electrophoresis
- Add 0.5 grams of agarose to 50 mL of 1X TAE buffer.
- Microwave agarose/TAE until agarose completely dissolved.
- Cool under water, add SYBR safe dye (2.5-3µL).
- Pour into mold with appropriate comb.
- Wait 15 minutes for gel to solidify.
- Load DNA with dye into wells while submerged in 1X TAE.
- Run gel at a constant 120V.
- Check gel periodically.
Gel Extraction and Purification
- Prepare agarose gel and use 3 combs to make a bigger well.
- Once it has run, use hand held UV lamp (in the dark, wearing goggles) to identify bands.
- Cut out desired band with stamp pipette tip and transfer to a clean tube. The stamp pipette tip can be left in the tube to be cleaned out with a smaller pipette tip.
- Weigh gel fragments and add 200 µL Buffer NTI for every 100 mg agarose gel. Incubate sample for 5-10 min at 50º C, vortexing every 2-3 min until the gel is completely dissolved.
- Load sample onto column over collection tube. Centrifuge for 30 sec at 11,000 x g.
- Discard flow-through and replace column on tube.
- Add 700 µL Buffer NT3 and centrifuge for 30 sec. at 11,000 x g. Discard flow-through.
- Centrifuge for 2 min at 11,000 x g to completely remove buffer.
- Transfer column to a 1.5 mL tube and add 20 µL ddH2O.
- Incubate at room temperature for 10 min.
- Centrifuge for 1 min at 11,000 x g.