Wiki/Team:Warsaw/protocols
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<p>Culture, induce and disrupt <i>E. coli</i> in the same way as to purify His_Z_alpha. The protein is present in supernatant (about 10% of total protein) and can be added to selection medium without further purification. Nevertheless we purified it to determine how much exactly should be added:<br> | <p>Culture, induce and disrupt <i>E. coli</i> in the same way as to purify His_Z_alpha. The protein is present in supernatant (about 10% of total protein) and can be added to selection medium without further purification. Nevertheless we purified it to determine how much exactly should be added:<br> | ||
<ol> | <ol> | ||
- | <li> | + | <li>Swing sonication products with Ni-nta-agarose bed for 2 hours at 4°C</li> |
- | <li> | + | <li>Load them onto column</li> |
- | <li> | + | <li>Wash the bed with 20 mM imidasole buffer</li> |
- | <li> | + | <li>Elute purified protein with 100 mM imidasole</li> |
</ol> | </ol> | ||
</p> | </p> | ||
<a name="Testing various hunter/prey combinations"><h3>Testing various hunter/prey combinations</h3></a> | <a name="Testing various hunter/prey combinations"><h3>Testing various hunter/prey combinations</h3></a> | ||
- | < | + | <ol> |
- | + | <li>Setup of culture E. coli carrying "hunter" with kanamycin and 0,2 mM IPTG </li> | |
- | + | <li>Inoculate liquid LB medium with kanamycin, 50 μg/ml ampicylin, 0,2 mM IPTG and "prey" (the control is medium without "prey")</li> | |
- | + | <li>Grow it 4-16h</li> | |
- | + | <li>Observe growth, or its lack</li> | |
- | + | <li>Isolate the plasmid DNA</li> | |
- | + | <li>Perform control digestion</li> | |
- | </ | + | </ol> |
<a name="plasmid_DNA_isolation"><h3>Plasmid DNA isolation</h3></a> | <a name="plasmid_DNA_isolation"><h3>Plasmid DNA isolation</h3></a> | ||
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<a name="chemocompetent"><h3>Preparation of chemocompetent bacteria</h3></a> | <a name="chemocompetent"><h3>Preparation of chemocompetent bacteria</h3></a> | ||
- | <p>Keep the bacteria on ice during the procedure. Pour ca. 25 ml of bacteria into a falcon tube and spin | + | <p>Keep the bacteria on ice during the procedure. Pour ca. 25 ml of bacteria into a falcon tube and spin at 4°C at 4 krpm, 8 min with prolonged acceleration and deceleration. |
Remove supernatant. The pellet mustn't run dry. You can pour another portion of bacteria onto it and spin again. | Remove supernatant. The pellet mustn't run dry. You can pour another portion of bacteria onto it and spin again. | ||
After desired amount of bacteria in pellet is collected, add CaCl<sub>2</sub> in an amount of 10% of initial culture used for spinning. Suspend the pellet until no debris is visible on the bottom. Incubate 45 min on ice. Then spin 8 min at 4 kg and remove supernatant. Suspend the pellet in 3 ml CaCl<sub>2</sub> and divide into aliquots of 100 μl.</p> | After desired amount of bacteria in pellet is collected, add CaCl<sub>2</sub> in an amount of 10% of initial culture used for spinning. Suspend the pellet until no debris is visible on the bottom. Incubate 45 min on ice. Then spin 8 min at 4 kg and remove supernatant. Suspend the pellet in 3 ml CaCl<sub>2</sub> and divide into aliquots of 100 μl.</p> | ||
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</ol></p> | </ol></p> | ||
<p>Overall mix volume is 20 μl.<br> | <p>Overall mix volume is 20 μl.<br> | ||
- | If ligated DNA has sticky ends - | + | If ligated DNA has sticky ends - incubate 2h at room temperature; |
- | if ligated DNA has blunt ends - overnight incubation | + | if ligated DNA has blunt ends - perform overnight incubation at 18°C.</p> |
<a name="blunting"><h3>DNA ends blunting</h3></a> | <a name="blunting"><h3>DNA ends blunting</h3></a> | ||
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<li>0,5 μl Klenow fragment (for 5' sticky ends)</li> | <li>0,5 μl Klenow fragment (for 5' sticky ends)</li> | ||
<li>0,5 μl T4 DNA polymerase (for 3' sticky ends)</li> | <li>0,5 μl T4 DNA polymerase (for 3' sticky ends)</li> | ||
- | <li>Incubate overnight | + | <li>Incubate overnight at 37 degrees.</li> |
</ul> | </ul> | ||
</p> | </p> | ||
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Inoculate two tubes with 3 ml LB + Amp30 μg/ml + Tet + 100 μl of 20% L-arabinose with colonies of transformants (negative control without arabinose)</li> | Inoculate two tubes with 3 ml LB + Amp30 μg/ml + Tet + 100 μl of 20% L-arabinose with colonies of transformants (negative control without arabinose)</li> | ||
<li> | <li> | ||
- | Incubate overnight | + | Incubate overnight at 37°C</li> |
<li> | <li> | ||
Plate 200 μl of bacterial culture on LB + 300 μg/ml Rifampicin + Tet</li> | Plate 200 μl of bacterial culture on LB + 300 μg/ml Rifampicin + Tet</li> | ||
<li> | <li> | ||
- | Incubate overnight | + | Incubate overnight at 37°C.</li> |
</ol> | </ol> | ||
</p> | </p> | ||
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<li>Make digestion mix in overall volume of 50 μl. </li> | <li>Make digestion mix in overall volume of 50 μl. </li> | ||
<li>Add 1 μl of Calf Intestinal Alkaline Phosphatase to the reaction mix.</li> | <li>Add 1 μl of Calf Intestinal Alkaline Phosphatase to the reaction mix.</li> | ||
- | <li>Incubate 2h or overnight | + | <li>Incubate 2h or overnight at 37°C.</li> |
</ol></p> | </ol></p> | ||
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<li>Place 10 μl of sample in a cuvette. Use 10 μl of solution, in which the sample is suspended, as control.</li> | <li>Place 10 μl of sample in a cuvette. Use 10 μl of solution, in which the sample is suspended, as control.</li> | ||
- | <li>Mix BCA (bicinchoninic acid) with CuSO<sub>4</sub> (concentration?) | + | <li>Mix BCA (bicinchoninic acid) with CuSO<sub>4</sub> (concentration?) at ratio of 50:1 . </li> |
<li>Add 1.99 ml of BCA with CuSO<sub>4</sub> to the cuvettes.</li> | <li>Add 1.99 ml of BCA with CuSO<sub>4</sub> to the cuvettes.</li> | ||
<li>Incubate 30 min at 37°C.</li> | <li>Incubate 30 min at 37°C.</li> | ||
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<a name="pcr"><h3>PCR</h3></a> | <a name="pcr"><h3>PCR</h3></a> | ||
- | <p>Most PCR was carried out in following | + | <p>Most PCR was carried out in following conditions: <br> |
3 min 94°C - preincubation<br> | 3 min 94°C - preincubation<br> | ||
30 s 94°C - melting<br> | 30 s 94°C - melting<br> |
Revision as of 14:45, 1 October 2008
Culture E. coli producer strain in 3 ml of liquid LB medium + kanamycin for 8 hours. Then use it to inoculate 200 ml of liquid LB medium + kanamycin supplemented with 0,5 mM IPTG and grow it overnight. In the morning spin down the culture (5000 RPM, 10 min, 4°C). Resuspend the pellet in PBS buffer and disrupt cells by sonication. Spin down sonication mixture (13200 RPM, 10 min, 4°C) and discard supernatant – protein is present in sonication debris. Resuspend it in sterile ice cold ddH2O and Spin down (13200 RPM, 10 min, 4°C). Discard supernatant and resuspend it in sterile ice cold ddH2O and store at 4°C. Purification of His_A_alphaCulture, induce and disrupt E. coli in the same way as to purify His_Z_alpha. The protein is present in supernatant (about 10% of total protein) and can be added to selection medium without further purification. Nevertheless we purified it to determine how much exactly should be added:
Testing various hunter/prey combinations
Plasmid DNA isolationWe use "Plasmid Mini" plasmid DNA isolation kit from A&A Biotechnology and follow the protocol of producer. DNA isolation from agarose gelWe use "Gel-Out" DNA isolation kit from A&A Biotechnology and follow the protocol of producer. DNA purification after enzymatic reactionWe use "Clean-Up" DNA purification kit from A&A Biotechnology and follow the protocol of producer. Genomic DNA isolationWe use "Genomic-Mini" universal genomic DNA isolation kit from A&A Biotechnology and follow the protocol of producer. DNA digestionWe use restriction enzymes and buffers provided by Fermentas. Overall volume of digestion mix is either 20 μl, either 50 μl in case of digesting for ligation. We usually use 1 μl of restriction enzyme and the buffer in 10x dilution (as they initially are 10x concentrated). The rest of mix is plasmid DNA.
Preparation of chemocompetent bacteriaKeep the bacteria on ice during the procedure. Pour ca. 25 ml of bacteria into a falcon tube and spin at 4°C at 4 krpm, 8 min with prolonged acceleration and deceleration. Remove supernatant. The pellet mustn't run dry. You can pour another portion of bacteria onto it and spin again. After desired amount of bacteria in pellet is collected, add CaCl2 in an amount of 10% of initial culture used for spinning. Suspend the pellet until no debris is visible on the bottom. Incubate 45 min on ice. Then spin 8 min at 4 kg and remove supernatant. Suspend the pellet in 3 ml CaCl2 and divide into aliquots of 100 μl. Preparation of electrocompetent bacteria
Electrotransformation
ChemotransformationAdd desired volume of DNA to the 100-μl-culture in eppendorf tube. Incubate 30 min on ice. Heat shock for 90 s at 42°C. Incubate 10 min on ice. Add 0.9 ml of culture medium and let the bacteria grow at 37°C. LigationWe use the following mixture:
Overall mix volume is 20 μl. DNA ends blunting
Prepare digestion mix in overall volume of 50 μl.
Standard concentrations of antibiotics and other supplements
Ampicillin Rifampicin test
Removing 5' phosphate groups from DNA ends
TAXI protocol (Tet+Ap 30+X-Gal+IPTG)
Protein concentration measurement (BCA method)
PCRMost PCR was carried out in following conditions: PCR standard mix For obtaining PCR product to cloning (50 μl) |