Team:NRP-UEA-Norwich/Protocols
WET-LAB PROTOCOLS
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Preparation of LB-Antibiotic Plates
Restriction Digest Protocol for BioBricks
QIAGEN Gel Extraction Protocol
Heat-Shock Transformation Protocol
Agarose Gel Electrophoresis Protocol
-80°C stock preparation Protocol
Starch Quantification Protocol
Electroporation Transformation
Agrobacterium tumefaciens-mediated infiltration of Nicotiana benthamiana
One-Step Golden Gate Digestion-Ligation Protocol
Preparation of LB-Antibiotic Plates
1. Dissolve 200 mL LB agar in microwave (Power 5, 5 mins).
2. Allow to cool on bench.
Under aseptic conditions:
3.Add antibiotics to the desired final concentration.
4. Pour plates. Label edges first.
5. Allow to set near to flame, leave gap for condensation.
6. Store in the fridge.
Restriction Digest Protocol for BioBrick
1. Add 2 µL restriction enzyme buffer H ×10 to a sterile 0.6 mL tube.
2. Add 0.5-1 µg of DNA.
3. Add appropriate amount of deionized H2O to bring volume of entire digest once enzymes have been added, to 20 µL.
4. Add 0.5 µL of restriction enzyme (EcoR1, Spe1, Xba1 or Pst1).
5. Also, the enzyme is in some percentage of glycerol which tends to stick to the sides of the tip. To ensure only 0.5 µL of enzyme is added, just touch the tip to the surface of the liquid when pipetting.
6. Incubate for 2 hours at 37ºC.
QIAGEN Gel Extraction Protocol
1. Excise the DNA fragment from the agarose gel with a clean, sharp scalpel.
2. Weigh the gel slice in a colourless tube. Add 3 volumes of Buffer QG (Solubilization buffer) to 1 volume. For >2% agarose gels, add volumes Buffer QG.
3. Incubate at 50ºC for 10 minutes. Vortex the tube every 2-3 minutes to help dissolve the gel.
4. After the gel slice has dissolved completely, check that the colour of the mixture is yellow. If the colour of the mixture is orange or violet, add 10 µL of 3 M Sodium Acetate, pH 5.0, and mix. The colour of the mixture will turn yellow.
5. Add 1 gel volume of isopropanol to the sample and mix.
6. Place a QIAquick spin column in a provided 2 mL collection tube.
7. To bind DNA, apply the sample to the QIAquick column and centrifuge for 1 minute at 17,900 × g (13,000 rpm). Discard the flow-through and place the QIAquick column back into the same tube.
8. Add 0.5 mL Buffer QG to the QIAquick column and centrifuge for 1 minute at 17,900 × g (13,000 rpm). Discard the flow-through and place the QIAquick column back into the same tube.
9. To wash, add 0.75 mL Buffer PE (Wash Buffer) to QIAquick column and centrifuge for 1 minute at 17,900 × g (13,000 rpm). Discard flow-through and place the QIAquick column back into the same tube.
10. Centrifuge the QIAquick column once more in the provided 2 mL collection tube for 1 minute at 17,900 × g (13,000 rpm) to remove residual wash buffer.
11. Place QIAquick column into a clean 1.5 mL microcentrifuge tube.
12. Add 30 µL Buffer EB (Elution Buffer) to the centre of the QIAquick membrane, let the column stand for 1 minute, and then centrifuge for 1 minute at 17,900 × g (13,000 rpm).
Ligation Protocol
1. Add 8.5 μL of insert and plasmid vector in a specific ratio. The insert to vector ratios commonly used were 3:1, 6:1, and 10:1.
2. Add 1 μL of T4 ligase 10x buffer.
3. Add 0.5 μL of T4 ligase.
4. Incubated at 16°C overnight, 4° over the weekend or 30 minutes at room temperature.
Heat-Shock Transformation Protocol
1. Thaw competent E. coli cells on ice.
2. For DH5α cells, add 10 µL of plasmid DNA to 50 µL of competent cells. For BL21 cells, add 1 µL of plasmid DNA (1 pg – 100 ng) to 50 µL of competent cells.
3. Mix by resuspending solution 4-5 times. Do not vortex.
4. Incubate on ice for 30 minutes. Do not vortex.
5. Heat shock at 42ºC for 2 minutes.
6. Incubate on ice for 2 minutes.
7. Add 1 mL of LB (no antibiotic).
8. Incubate at 37ºC for 2 hours with shaking (200 rpm).
9. Spin in centrifuge for 1 minute at 17,900 × g (13,000 rpm).
10. Plate out 100 µL of culture onto a plate with the relevant antibiotic.
11. Grow at 37ºC overnight or at room temperature over the weekend.
Colony PCR Protocol
Prepare a master-mix appropriate to the number of samples as follows (add Taq polymerase last). For 15 PCR samples, the amounts used were as follows:
37.5 µL of Taq Polymerase ×10 buffer
3.75 µL 200 µM dNTP mix
255 µL deionized H2O
30 µL 3.125 pmol/µL VF2 primer
30 µL 3.125 pmol/µL VR primer
3.75 µL Taq Polymerase
1. Aliquot into PCR tubes.
2. Label new agar plate (with same antibiotic) with area for each colony.
3. Choose colony, touch on new agar plate, and add to mastermix.
4. Controls: Water (negative) and plasmid vector with a different-size insert (positive).
5. PCR conditions
95ºC for 15 minutes
94ºC for 30 seconds
62ºC for 30 seconds
68ºC for 3.5 minutes
Repeat steps 2-4 39 times
68ºC for 20 minutes
4ºC forever
QIAGEN Plasmid Prep Protocol
1. Pellet 2 mL of a bacterial overnight-culture by centrifugation at >8000 rpm (6,800 × g) for 3 minutes at room temperature (15-25ºC).
2. Repeat Step 1.
3. Resuspend pelleted bacterial cells in 250 µL Buffer P1 (Resuspension Buffer) and transfer to a microcentrifuge tube.
4. Add 250 µL Buffer P2 (Lysis Buffer) and mix thoroughly by inverting the tube 4-6 times until the solution becomes clear. Do not allow the lysis reaction to proceed for more than 5 minutes.
5. Add 350 µL Buffer N3 (Neutralization Buffer) and mix immediately and thoroughly by inverting the tube 4-6 times.
6. Centrifuge for 10 minutes at 17,900 × g (13,000 rpm).
7. Apply the supernatant from Step 6 to the QIAprep spin column by pipetting. Centrifuge for 60 seconds at 17,900 × g (13,000 rpm) and discard the flow-through.
8. Wash the QIAprep spin column by adding 0.5 mL Buffer PB (Binding Buffer). Centrifuge for 60 seconds at 17,900 × g (13,000 rpm) and discard the flow-through.
9. Wash the QIAprep spin column by adding 0.75 mL Buffer PE. Centrifuge for 60 seconds at 17,900 × g (13,000 rpm) and discard the flow-through. Transfer the QIAprep spin column to the collection tube.
10. Centrifuge for 1 minute to remove residual wash buffer.
11. Place the QIAprep column in a clean 1.5 mL microcentrifuge tube. To elute DNA, add 30 µL Buffer EB (10 mM Tris.Cl, pH 8.5) to the centre of the QIAprep spin column, let stand for 1 minute, and centrifuge for 1 minute.
M9 Minimal Media Protocol
Add the following materials to a 1 L flask:
6 g Na2HPO4
3 g KH2PO4
0.5 g NaCl
0.222 g (NH4)2SO4
Adjust the pH to 7.4 and make up to 1 litre with water and autoclave.
To the above, under sterile conditions, add:
650 µL Trace Elements Stock (composition below),
6 mL 50% Glucose
1 mL 1% filter-sterilised Thiamine
1 mL 1 M MgCl2
0.1 mL 1 M CaCl2
Trace Element Stock Composition
500 mg EDTA
Adjust pH to 8.0 and add:
550 mg CaCl2.2H2O
140 mg MnSO4.H2O
27 mg CuCl2
220 mg ZnSO4.7H2O
45 mg CoCl2.6H2O
26 mg Na2MoO4.2H2O
40 mg H3Bo4
26 mg KI
Adjust pH to 8.0 then add:
375 mg FeSO4.7H2OAdjust pH to 8.0 again and filter sterilise.
Agarose Gel Electrophoresis Protocol
1. To prepare a 1% agarose solution, place 5 g of agarose into 500 mL of TAE buffer and dissolve in microwave (Power 5, 10 minutes). To prepare a 2% agarose solution, place 10 g of agarose into 500 mL of TAE buffer and dissolve in microwave (Power 5, 10 minutes). Store in 50°C oven.
For small gels, place 30 mL of agarose and 15 μL of Ethidium Bromide into a small gel tray. For larger gels, place 200 mL of agarose and 100 μL of Ethidium Bromide into a large gel tray.
Insert well mold and allow gel to cool and set.
Place tray into electrophoresis apparatus and remove well mold.
Add 4 μL of Loading Buffer (x6) to all samples.
Add 2 μL of Ladder to extremity wells and fill wells with 24 μL of samples.
For small gels, run gel at 95 V for 30 minutes. For larger gels, run gel at 95 V for 2 hours.
-80°C stock preparation Protocol
Place 952 μL of liquid culture into an eppendorf tube.
Add 75 μL of dimethyl sulfoxide and mix.
Store in -80°C freezer.
Mutagenesis PCR Protocol
Prepare the PCR samples, in PCR tubes, as follows;
4µL HF ×5 Buffer
0.25 µL 20 mM dNTPs
2 µL 3.125 µM Forward Modification Primer
2 µL 3.125 µM Reverse Modification Primer
50 ng of DNA
Deionized H2O to bring total volume up to 25 μL
0.5 µL Phusion polymerase
PCR Conditions
95°C for 15 minutes.
94°C for 30 seconds.
72°C for 3.5 minutes.
Repeat Step 3 for 34 cycles.
72°C for 20 minutes.
4°C forever.
Alkaline Phosphatase Protocol
1. Vortex all reagents before use.
2. Place all of the linearized vector from a restriction digest in an eppendorf tube.
3. Add 2 μL of rAPid alkaline phosphatase x10 buffer.
4. Add 1 μL rAPid alkaline phosphatase.
5. Add deionized water to make the final volume up to 20 μL.
6. Incubate at 37°C for 60 minutes.
7. Heat-inactivated at 75°C for 2 minutes.
Glycogen Extraction Protocol
1. Harvest E. coli cells from liquid cultures by centrifugation at 5000 rpm for 10 minutes and resuspended in 10 mL water in a 50 mL Falcon tube.
2. Pellet resuspended cells by spinning at 5,000 × g for 10 minutes. Discard supernatant and resuspend pellet in 10 mL fresh water.
3. Sonicate at room temperature at 10 micron amplitude for 3 minutes, 1 second on and 2 seconds off.
4. Transfer to 50 mL centrifuge tubes and centrifuge at 30,000 × g for 15 minutes.
5. Transfer supernatant to a 50 mL Falcon tube. Add 5 mL of 0.2 M glycine, pH 10.5 and 5 mL chloroform. Shake vigorously and spin at 2000 rpm for 3 minutes to separate into aqueous and organic layers.
6. Transfer top, aqueous layer to a new 50 mL Falcon tube with a pipette and repeat step 5.
7. Transfer top, aqueous layer to a round-bottomed flask and remove any remaining chloroform using rotary evaporation.
8. Transfer to a 30 kDa spin filter and concentrate to ~8 mL by spinning at 5000 × g for approximately 55 minutes. Check after 30 minutes of centrifugation.
9. Transfer to 8 × 1 mL ultracentrifuge tubes and balance all to within 1 mg of each other.
10. Spin in Ultracentrifuge at 108,000 × g (55,000 rpm) at 4ºC for 2-3 hours.
11.Discard supernatant and resuspend pellets in 2 mL total volume of water and add to 50 mL Falcon tube.v
12. Precipitate glycogen with 8 mL cold ethanol.
13. Spin at 4,000 × g for 10 minutes and discard supernatant.
14. Dissolve pellet in 2 mL of water and freeze-dry overnight to yield the glycogen as an amorphous white powder.
Debranching Glycogen Protocol
1. 1 mg of glycogen sample was dissolved in 50 μL of 100 mM sodium acetate buffer, pH 4.0.
2. 2 μL of isoamylase was added.
3. Incubated at 37°C for 2 hours.
4. Terminate reaction by heating at 95°C for 5 minutes.
5. Precipitated with 125 μL ethanol and dissolved in 50 μL deionized water.
6. Freeze-dried overnight to yield an amorphous white powder.