Team:UNAM Genomics Mexico/Notebook/Protocols
From 2012.igem.org
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- | <td id="leftcolumn2"><center><p>'''E. Coli Protocols'''</p></center></td> | + | <td id="leftcolumn2"><center><p>'''''E. Coli'' Protocols'''</p></center></td> |
<td id="contentcolumn2"><center><p>__TOC__</p></center></td> | <td id="contentcolumn2"><center><p>__TOC__</p></center></td> | ||
<td id="rightcolumn2"><center><p>'''Bacillus Protocols'''</p></center></td> | <td id="rightcolumn2"><center><p>'''Bacillus Protocols'''</p></center></td> | ||
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</table> | </table> | ||
- | <center><h1>'''E. coli Protocols'''</h1></center> | + | <center><h1>'''''E. coli'' Protocols'''</h1></center> |
<br /> | <br /> | ||
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- | + | <td id="leftcolumn2"><p> | |
- | <h2>Gel electrophoresis</h2><br /> | + | <center><h2>Gel electrophoresis</h2></center><br /> |
-Sample preparation<br /> | -Sample preparation<br /> | ||
•Add 10 µl of DNA in each well. <br /> | •Add 10 µl of DNA in each well. <br /> | ||
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•Dye with ethidium bromide (5 minutes approximately). <br /> | •Dye with ethidium bromide (5 minutes approximately). <br /> | ||
•Rinse 10 minutes approximately with water. <br /> | •Rinse 10 minutes approximately with water. <br /> | ||
- | </p></td> | + | </p> </td> |
<td id="contentcolumn2"><p> | <td id="contentcolumn2"><p> | ||
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-Adjust pH at 6.5 with 1 M KOH<br /> | -Adjust pH at 6.5 with 1 M KOH<br /> | ||
-Sterilize by filtration.<br /> | -Sterilize by filtration.<br /> | ||
+ | </p></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td id="leftcolumn2"><center><p><h2>PCR purification</h2><br /> | ||
+ | •Add 500 μl solution I “green lid” from kit of PCR purification to eppendorf tube. <br /> | ||
+ | •Mix by inversion 5-6 times. <br /> | ||
+ | •Drain content to silicium column. <br /> | ||
+ | •Repeat band extraction protocol without heating to 65ºC since it is not necessary. <br /> | ||
+ | </p></center></td> | ||
+ | <td id="contentcolumn2"><center><p><h2>GLYCEROL PROTOCOL</h2><br /> | ||
+ | •Add 500 μl glycerol at 70% to a 1.5 mL eppendorf tube. <br /> | ||
+ | •Add 1 mL LB broth. <br /> | ||
+ | •Take respective colonie with a wooden toothpick. <br /> | ||
+ | •Place in eppendorf tube and mix with toothpick. <br /> | ||
+ | •Incubate at -80ºC and properly label tube. <br /> | ||
+ | </p></center></td> | ||
+ | <td id="rightcolumn2"><center><p><h2>PLASMID EXTRACTION 2</h2><br /> | ||
+ | Once grown in liquid culture: <br /><br /> | ||
+ | Obtain the pellet: <br /> | ||
+ | •Add 1 mL liquid culture to a 1.5mL eppendorf. <br /> | ||
+ | •Centrifuge at 13000 rpm for 2 minutes. <br /> | ||
+ | •Drain supernatant. <br /> | ||
+ | •Repeat 4 times. <br /> | ||
+ | •If you will continue with the extraction continue, if not store pellets (1.5 mL eppendorf tubes) at -20ºC. <br /> | ||
+ | •Add 250 mL solution one “white lid” RNase. <br /> | ||
+ | •Vortex. <br /> | ||
+ | •Add 250 mL solution 2 “red lid” SDS NaOH. <br /> | ||
+ | •Mix gently by inversion: <br /> | ||
+ | -50 times slow inversion. <br /> | ||
+ | -Let rest 1 minute. <br /> | ||
+ | -Repeat 5 minutes. <br /> | ||
+ | •Add 350 mL solution 3 “green lid” KAc. <br /> | ||
+ | •Mix by inversion 20 secs. <br /> | ||
+ | •Incubate on ice 10 minutes. <br /> | ||
+ | •Centrifuge 13000 rpm for 15 minutes. <br /> | ||
+ | •During these 15 minutes place a silicium column inside a recollection tube for each eppendorf tube. <br /> | ||
+ | •Drain supernatant in the silicium column and close lid. <br /> | ||
+ | •Centrifuge at 13000 rpm for 1 minute. <br /> | ||
+ | •Drain supernatant from recollection tube. <br /> | ||
+ | •Add 700 mL solution 5 “blue lid” absolute ethanol in the center of the column and close. <br /> | ||
+ | •Centrifuge at 13000 rpm for a minute. <br /> | ||
+ | •Throw out column. <br /> | ||
+ | •Close tube and store -20ºC. <br /> | ||
+ | </p></center></td> | ||
+ | </tr> | ||
+ | |||
+ | </table> | ||
+ | |||
+ | |||
+ | |||
+ | |||
+ | <center><h1>'''''Bacillus subtilis'' Protocols'''</h1></center> | ||
+ | |||
+ | <table border="0" width="850px" cellspacing="15" bgcolor="transparent" id="tablecontentbg" cellpadding="10"> | ||
+ | <tr> | ||
+ | <td id="leftcolumn2"><p> | ||
+ | == '''''Escherichia coli MC1061'' competent cells protocol''' == | ||
+ | <br /> | ||
+ | |||
+ | 1.Plate the cells on LB, incubate at 37°C overnight. <br /> | ||
+ | 2.Prepare the solutions. <br /> | ||
+ | 3.Choose a colony and inoculate in 10 mL of LB media, incubate with vigorous shaking for about 16 hours. <br /> | ||
+ | 4.Subculture in 1L of LB media and incubate at 37°C until it reaches late logarithmic phase reading 0.4 OD600 nm. <br /> | ||
+ | 5.Incubate the culture on ice immediately after the desire concentration is reached. | ||
+ | 6.Note: Incubate on ice all the solutions too. <br /> | ||
+ | 7.Spin-dry 1000 g & 4°C for 30 minutes. Decant the supernatant. <br /> | ||
+ | 8.Resuspend gently on 250 mL of 0.1M MgCl2 solution. <br /> | ||
+ | 9.Spin-dry 1000 g & 4°C for 25 minutes. Decant the supernatant. <br /> | ||
+ | 10.Resuspend gently on 250 mL of 0.075M CaCl2 solution. Incubate on ice for 20 minutes. <br /> | ||
+ | 11.Spin-dry 1000 g & 4°C for 25 minutes. Decant the supernatant. <br /> | ||
+ | 12.Resuspend gently on 50 mL of 0.075M CaCl2+15% glycerol solution (vol/vol). Incubate on ice for 20 minutes. <br /> | ||
+ | 13.Alicuote (100 microliters) in sterile and cold eppendorff tubes. <br /> | ||
+ | 14.Store at -80°C. <br /> | ||
</p> | </p> | ||
</td> | </td> | ||
+ | </tr> | ||
+ | |||
<tr> | <tr> | ||
+ | <td id="contentcolumn2"><p> | ||
+ | =='''''Escherichia coli MC1061'' heat shock transformation protocol'''== | ||
+ | <br /> | ||
+ | 1.Add the DNA solution to the competent cells and let them 5-20 minutes on ice<br />. | ||
+ | 2.Put the cells on a 42°C termoblock for 5 minutes. <br /> | ||
+ | 3.Immediately get them back to ice for one minute. <br /> | ||
+ | 4.Add 1 mL of LB, mix gently and incubate for one hour at 37°C & 250 rpm . <br /> | ||
+ | 5.Plate 100 microliters onto selective media. <br /> | ||
+ | 6.Pellet the cells 1 min at 1200 rpm and resuspend in 100 microliters. <br /> | ||
+ | 7.Plate cells onto selective media. <br /> | ||
+ | </p> | ||
+ | </td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td id="rightcolumn2"><p> | ||
+ | <h2>'''Two-step Bacillus subtilis Transformation Procedure'''</h2> <br /> | ||
+ | |||
+ | '''Preparation of ''Bacillus subtilis'' competent cell''' <br /> | ||
+ | 1.Streak out the strain to be made competent on a LB agar plate as a large patch and incubate overnight at 28°C <br /> | ||
+ | |||
+ | 2.The following morning wash the cell growth of the plate with 3 ml of Spc and add 3 drops of the solution to inoculate fresh, pre-warmed, SpC medium (30 ml) in a klett flask and measure to give an OD600 reading of about 0.5 using a green filter. <br /> | ||
+ | |||
+ | 3.Incubate the culture at 37°C with vigorous aeration and take periodic OD readings (OD600) to assess cell growth. (measure every 15 minutes) <br /> | ||
+ | |||
+ | 4.When the rate of cell growth is seen to depart from exponential (i.e. no significant change in cell density ~5% over 15 min), dilute cell culture 1:10; inoculate 300 ml of pre-warmed, SpII medium with 30 ml of stationary-phase culture and continue incubation at 37°C with slower aeration. <br /> | ||
+ | |||
+ | 5.After 90 min incubation, pellet the cells by centrifugation (8,000 g, 10 min) at 4°C. | ||
+ | |||
+ | 6.Carefully decant the supernatant into a sterile container and save. <br /> | ||
+ | |||
+ | 7.Gently resuspend the cell pellet in 30 ml of the saved supernatant and add 3 ml of sterile glycerol to a 10% concentration; mix gently. <br /> | ||
+ | |||
+ | 8.Aliquot the competent cell (0.35 ml) in sterile eppendorf tubes, freeze rapidly in liquid nitrogen bath and store -80°C. <br /> | ||
+ | |||
+ | '''Transformation''' <br /> | ||
+ | |||
+ | 1.Add one volume of SpII + EGTA to the competent cells; mix gently <br /> | ||
+ | |||
+ | 2.Add the DNA solution (500 & 1000 ng) and incubate at 37°C for 1 hour at 200 rpm. <br /> | ||
+ | |||
+ | 3.Plate 100 microliters immediately onto selective media. <br /> | ||
+ | |||
+ | 4.Pellet the cells 1 min at 1200 rpm and resuspend in 100 microliters. <br /> | ||
+ | |||
+ | 5.Plate onto selective media. <br /> | ||
+ | |||
+ | NOTE: if you were not able to select you Bacillus, maybe it is because you kill them before they activate their resistance gene. So, made the 5th step different, plate but the 1/40 of the antibiotic, to active the gene and incubate for 1 hour. Then put soft-agar until the petri dish is cover and put the original amount of antibiotic. Leave them overnight (16-24 hours) to grow. <br /><br /> | ||
+ | |||
+ | Media for two-step trasformation procedure<br /> | ||
+ | T base per liter: <br /> | ||
+ | (NH4)2SO4 2 g <br /> | ||
+ | K2HPO4 13.96 g <br /> | ||
+ | KH2PO4 6 g <br /> | ||
+ | trisodium citrate•2H2O 1g <br /> | ||
+ | -> Autoclave | ||
+ | |||
+ | SpC Made fresh on the day of use from the following sterile solution: <br /> | ||
+ | T base 20 ml <br /> | ||
+ | 50% (w/v) glucose 0.2 ml <br /> | ||
+ | 1.2% (w/v) MgSO4•3H2O 0.3 ml <br /> | ||
+ | 10% (w/v) Bacto yeast extract 0.4 ml | ||
+ | 1% (w/v) casamino acids 0.5 ml <br /> | ||
+ | |||
+ | SpII Made fresh on the day of use from the following sterile solutions:<br /> | ||
+ | T base 200 ml <br /> | ||
+ | 50% (w/v) glucose 2 ml <br /> | ||
+ | 1.2% (w/v) MgSO4•3H2O 14 ml <br /> | ||
+ | 10% (w/v) Bacto yeast extract 2 ml <br /> | ||
+ | 1% (w/v) casamino acids 2 ml<br /> | ||
+ | 0.1 M CaCl2 1 ml <br /> | ||
+ | |||
+ | SpII + EGTA SpII (200 ml) with 4 ml EGTA (0.1 M, pH 8.0) but without CaCl2. SpII + EGTA can be frozen at -20 in small ℃ aliquots, although repeated freeze-thawing should be avoided.<br /> | ||
+ | Note: filter EGTA.<br /> | ||
+ | |||
+ | </p> | ||
+ | </td> | ||
+ | </tr> | ||
+ | |||
+ | <tr> | ||
+ | <td id="leftcolumn2"><p> | ||
+ | <h2>'''SEM Analysis (Scanning Electron Microscope)[1]'''</h2> <br /> | ||
+ | |||
+ | Exponentially growing cells were plated on LB. Cells were incubated for 3hr at 37°C and then EM grids (FCF200-Cu) were placed on top of the growing cells. Plates were incubated for additional 3 hr and EM grids in the plate was fixed with 2% glutaraldehyde in sodium cacodylate buffer (0.2 M, [pH 7.2]) for 12 hr at 25°C. Cells attached to the grids were washed with 0.1 M sodium cacodylate buffer Na (CH3)2 AsO2 , 3H2O) (pH 7.2), 3X for 5 min each wash. <br /><br /> | ||
+ | |||
+ | Next, cells were postfixed by incubation with 1% osmium tetroxide for 30 min at 25°C and then dehydrated by exposure to a graded series of ethanol washes (30%, 40%, 50%, 60%, 70%, 80%, 90%,; 5 min each and two times with: 100%; 10 min each).<br /><br /> | ||
+ | Finally, the grid-attached cells were washed with a graded series of liquid CO2. The liquefied gas must be miscible with the solvent in the cells. After sufficient equilibration time, the liquefied gas replaces the alcohol. The temperature of the pressure chamber is then raised above the critical point of the gas and the liquefied gas returns to the gaseous state without a change in volume or density and without surface tension forces. After drying, the specimens are mounted on a stub. Specimens were coated with gold-palladium with a Sputter Coater and cells observed with a SEM.<br /><br /> | ||
+ | |||
+ | [1]Dunlap, M. Introduction to the Scanning Electron Microscope, 1997, FACILITY FOR ADVANCED INSTRUMENTATION | ||
+ | |||
+ | </p> | ||
+ | </td> | ||
+ | </tr> | ||
</table> | </table> | ||
+ | |||
+ | |||
+ | |||
}} | }} |
Latest revision as of 09:36, 25 October 2012
Protocols
E. coli Protocols
PCR Protocol (50µl)Buffer Pfu 5 µl |
Hot start PCR protocolPreheated 105ºC |
LigationThese are done in 1 mL eppendorf tubes and normally have a T.V. of 20 µl. •Add A µl of the insert (plasmid digested with corresponding enzymes). |
Dephosphorylation protocol-It is done to plasmids digested with the corresponding enzymes that will serve as a “vector” in a ligation. |
Transformation•Pipette the plasmid to a 1.3 mL eppendorf with competent cells and mix with the pipette. |
Liquid culture•Once the bacteria has grown, add 4 mL LB broth to a glass tube. |
Digestion protocol (20 µl)H2O 9.5 µl |
Gel extraction protocol(Fermentas Gene Jet Gel extraction kit) |
Lysis protocol1. Cultivate strain of interest in 5 µl LB with antibiotics. |
Gel electrophoresis-Sample preparation -Gel preparation and loading |
Competent cells protocol•Grow cells in LB all night. |
BUFFERSTfbI: Mw-> 100ml TfbI:100ml
10mM MOPS or PIPES 209.27->0.20927 |
PCR purification•Add 500 μl solution I “green lid” from kit of PCR purification to eppendorf tube. |
GLYCEROL PROTOCOL•Add 500 μl glycerol at 70% to a 1.5 mL eppendorf tube. |
PLASMID EXTRACTION 2Once grown in liquid culture: |
Bacillus subtilis Protocols
Escherichia coli MC1061 competent cells protocol
1.Plate the cells on LB, incubate at 37°C overnight. |
Escherichia coli MC1061 heat shock transformation protocol
1.Add the DNA solution to the competent cells and let them 5-20 minutes on ice |
Two-step Bacillus subtilis Transformation ProcedurePreparation of Bacillus subtilis competent cell 2.The following morning wash the cell growth of the plate with 3 ml of Spc and add 3 drops of the solution to inoculate fresh, pre-warmed, SpC medium (30 ml) in a klett flask and measure to give an OD600 reading of about 0.5 using a green filter. 3.Incubate the culture at 37°C with vigorous aeration and take periodic OD readings (OD600) to assess cell growth. (measure every 15 minutes) 4.When the rate of cell growth is seen to depart from exponential (i.e. no significant change in cell density ~5% over 15 min), dilute cell culture 1:10; inoculate 300 ml of pre-warmed, SpII medium with 30 ml of stationary-phase culture and continue incubation at 37°C with slower aeration. 5.After 90 min incubation, pellet the cells by centrifugation (8,000 g, 10 min) at 4°C. 6.Carefully decant the supernatant into a sterile container and save. 7.Gently resuspend the cell pellet in 30 ml of the saved supernatant and add 3 ml of sterile glycerol to a 10% concentration; mix gently. 8.Aliquot the competent cell (0.35 ml) in sterile eppendorf tubes, freeze rapidly in liquid nitrogen bath and store -80°C. Transformation 1.Add one volume of SpII + EGTA to the competent cells; mix gently 2.Add the DNA solution (500 & 1000 ng) and incubate at 37°C for 1 hour at 200 rpm. 3.Plate 100 microliters immediately onto selective media. 4.Pellet the cells 1 min at 1200 rpm and resuspend in 100 microliters. 5.Plate onto selective media. NOTE: if you were not able to select you Bacillus, maybe it is because you kill them before they activate their resistance gene. So, made the 5th step different, plate but the 1/40 of the antibiotic, to active the gene and incubate for 1 hour. Then put soft-agar until the petri dish is cover and put the original amount of antibiotic. Leave them overnight (16-24 hours) to grow. Media for two-step trasformation procedure SpC Made fresh on the day of use from the following sterile solution: SpII Made fresh on the day of use from the following sterile solutions: SpII + EGTA SpII (200 ml) with 4 ml EGTA (0.1 M, pH 8.0) but without CaCl2. SpII + EGTA can be frozen at -20 in small ℃ aliquots, although repeated freeze-thawing should be avoided. |
SEM Analysis (Scanning Electron Microscope)[1]Exponentially growing cells were plated on LB. Cells were incubated for 3hr at 37°C and then EM grids (FCF200-Cu) were placed on top of the growing cells. Plates were incubated for additional 3 hr and EM grids in the plate was fixed with 2% glutaraldehyde in sodium cacodylate buffer (0.2 M, [pH 7.2]) for 12 hr at 25°C. Cells attached to the grids were washed with 0.1 M sodium cacodylate buffer Na (CH3)2 AsO2 , 3H2O) (pH 7.2), 3X for 5 min each wash. Next, cells were postfixed by incubation with 1% osmium tetroxide for 30 min at 25°C and then dehydrated by exposure to a graded series of ethanol washes (30%, 40%, 50%, 60%, 70%, 80%, 90%,; 5 min each and two times with: 100%; 10 min each). [1]Dunlap, M. Introduction to the Scanning Electron Microscope, 1997, FACILITY FOR ADVANCED INSTRUMENTATION |