Team:Frankfurt/Notebook
From 2012.igem.org
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#:* plasmid isolation of ''E.coli'' clones<br> | #:* plasmid isolation of ''E.coli'' clones<br> | ||
#:* control restriction of biobrick plasmids with ''EcoRI'' and ''SpeI''<br> | #:* control restriction of biobrick plasmids with ''EcoRI'' and ''SpeI''<br> | ||
+ | {|width="100%" align="center" | ||
[[Image:Gel3_1.png|450px|thumb|left|'''Gel 3: Control restriction of pSB1C3-HMG-CoA, pSB1C3-ERG20 and PCR of GGPPS.'''<br> | [[Image:Gel3_1.png|450px|thumb|left|'''Gel 3: Control restriction of pSB1C3-HMG-CoA, pSB1C3-ERG20 and PCR of GGPPS.'''<br> | ||
The biobrick plasmids were cut with EcoRI and SpeI. The correct sizes of pSB1C3-HMG- | The biobrick plasmids were cut with EcoRI and SpeI. The correct sizes of pSB1C3-HMG- | ||
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Ks from two clones could be observed (2050 bp + 2900 bp). The plasmid of clone 3 is the | Ks from two clones could be observed (2050 bp + 2900 bp). The plasmid of clone 3 is the | ||
pSB1C3 without the insert.]] | pSB1C3 without the insert.]] | ||
+ | |} | ||
#<li value="4">Formation of the mevalonate overexpression plasmid via gap repair | #<li value="4">Formation of the mevalonate overexpression plasmid via gap repair | ||
#:* first and second yeast transformation with equimolar quantities of DNA fragments for mevalonate overexpression (p426 with 7 inserts): only very small colonies could grow after the first and second transformation | #:* first and second yeast transformation with equimolar quantities of DNA fragments for mevalonate overexpression (p426 with 7 inserts): only very small colonies could grow after the first and second transformation | ||
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#:* trials to amplify pSB1C3, whose blunt ends were ligated and transformed in ''E.coli'' | #:* trials to amplify pSB1C3, whose blunt ends were ligated and transformed in ''E.coli'' | ||
#:* pSB1C3 should be linearized by ''EcoRI'' and ''PstI'' : did not work (two fragments instead of one)<br> | #:* pSB1C3 should be linearized by ''EcoRI'' and ''PstI'' : did not work (two fragments instead of one)<br> | ||
+ | {|width="100%" align="center" | ||
[[Image:Gel4_1.png|450px|thumb|left|'''Gel 4: Purified GGPPS and linearization of pSB1C3.'''<br>The 870 bp fragment of the GGPPS PCR (see gel 3) were cut out from a preparative gel and then purified with a gel extraction kit (The purified GGPPS could be used for transformation, but not for constructing a biobrick. Therefore another PCR was made with a very short | [[Image:Gel4_1.png|450px|thumb|left|'''Gel 4: Purified GGPPS and linearization of pSB1C3.'''<br>The 870 bp fragment of the GGPPS PCR (see gel 3) were cut out from a preparative gel and then purified with a gel extraction kit (The purified GGPPS could be used for transformation, but not for constructing a biobrick. Therefore another PCR was made with a very short | ||
synthesis time. So only the 870 bp fragment was obtained.)<br>Because of lack of pSB1C3 the remained linear pSB1C3 was ligated and transformed in E.coli. After isolation of the plasmid it was restricted with EcoRI and PstI. But there was not | synthesis time. So only the 870 bp fragment was obtained.)<br>Because of lack of pSB1C3 the remained linear pSB1C3 was ligated and transformed in E.coli. After isolation of the plasmid it was restricted with EcoRI and PstI. But there was not | ||
only the linear fragment of 2050 bp but also another fragment about 4000 bp.]] | only the linear fragment of 2050 bp but also another fragment about 4000 bp.]] | ||
+ | |} | ||
#:* preparative gel of the linear fragment: very low concentration of linear pSB1C3 (was not sufficient for ligation) | #:* preparative gel of the linear fragment: very low concentration of linear pSB1C3 (was not sufficient for ligation) | ||
#GC analysis | #GC analysis | ||
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#:* amplification of the fragments via PCR (there are four fragments of each gene with an overhang to the fragment beside of 30 bp) | #:* amplification of the fragments via PCR (there are four fragments of each gene with an overhang to the fragment beside of 30 bp) | ||
#:* Gibson assembly of the fragments of ''KO'' and ''KAH'': did not work<br> | #:* Gibson assembly of the fragments of ''KO'' and ''KAH'': did not work<br> | ||
+ | {|width="100%" align="center" | ||
+ | [[Image:Gel6_1.png|450px|thumb|left|'''Gel 6: PCR of KO and KAH fragments'''<br> | ||
+ | Each gene consists of four fragments, which have a 30 bp overhang to the fragments beside. | ||
+ | In order to do the Gibson Assembly, the fragments were amplified via PCR.]] | ||
+ | [[Image:Gel7_1.png|450px|thumb|left|'''Gel 7: Gibson Assembly of KO and KAH'''<br> | ||
+ | The assembly did not work, because there are only the 500 bp of the single fragments.]] | ||
==September 2012== | ==September 2012== |
Revision as of 16:17, 20 September 2012
Home | Team | Project | Organisms | New Yeast RFC | Notebook | Registered Parts | Modeling | Safety | Attributions | Official Team Profile |
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Contents |
Labwork
May and June 2012
- Arrangements for labwork
- preparation of competent cells (E.coli, S.cerevisiae), agarose plates (LB, YEPD, SCD-ura,…), medium for E.coli and S.cerevisiae
- Purchasing of the equipment (reaction tubes, glass bottles, pipette tips,..)
- Primer design
July 2012
- Plasmid isolation of p426, p423, pUD8e, pUD22e from E.coli
- Isolation of chromosomal DNA of CEN.PK2-1C
- Trials to get the genes, promoters and terminators via PCR
August 2012
- PCR of the genes, promoters and terminators
- all genes (without KO and KAH), promoters and terminators could be amplified
- Linearization of p426 and p423 with SpeI and XhoI
Templates | Amplified DNA Fragments |
---|---|
synthesized sequence of HMG-CoA | HMG-CoA |
synthesized sequence of GGPPS | GGPPS |
synthesized sequence of Cps/Ks | CPS/KS |
chromosomal DNA of CEN.PK2-1C | ERG20 |
- Biobrick production of the genes HMG-CoA, ERG20, CPS/KS
- restriction of 3 µg of the genes with EcoRI and PstI
- ligation of biobrick genes with linear pSB1C3
- transformation of the ligation in E.coli
- plasmid isolation of E.coli clones
- control restriction of biobrick plasmids with EcoRI and SpeI
- restriction of 3 µg of the genes with EcoRI and PstI
- Formation of the mevalonate overexpression plasmid via gap repair
- first and second yeast transformation with equimolar quantities of DNA fragments for mevalonate overexpression (p426 with 7 inserts): only very small colonies could grow after the first and second transformation
- using pure GGPPS (purification of a preparative gel) for the third yeast transformation: normal size of the colonies
- inoculation of several clones of the third yeast transformation
- plasmid preparation of the clones
- transformation of the plasmids in E.coli
- Amplifying pSB1C3 for biobrick production
- trials to amplify pSB1C3, whose blunt ends were ligated and transformed in E.coli
- pSB1C3 should be linearized by EcoRI and PstI : did not work (two fragments instead of one)
- preparative gel of the linear fragment: very low concentration of linear pSB1C3 (was not sufficient for ligation)
- GC analysis
- GC analysis of the wild type CEN.PK2-1C (standard GGOH): as expected no GGOH could be observed
- Assembly of the KO and the KAH fragments
- amplification of the fragments via PCR (there are four fragments of each gene with an overhang to the fragment beside of 30 bp)
- Gibson assembly of the fragments of KO and KAH: did not work
Substance | Volume [µl] |
PEG 3350 (50% (w/v)) | 260 |
LiAcetat 1.0 M | 36 |
Single-stranded carrier DNA (10 mg/ml) | 10 |
Total volume | 306 |
10. Prepare DNA aliquots: Solute enough DNA (e.g. 100 ng plasmid) in 54 µl of water
11. Unfreeze the cells in a 37°C block for 15-30 sec
12. Centrifuge the solution at 13000x g for 2 minutes
13. Remove the supernatant
14. Add 306 µl of FCC transformation mixture to the cells
15. Add 54 µl of the DNA to the solution and vortex shortly
16. When all the reaction tubes are prepared, vortex the samples well until all pellets are completely resoluted
17. Incubate the samples for 40 minutes at 42°C in a heating block
18. Centrifuge the cells at 13000x g for 30 sec and pour off the supernatant
19. Resuspend the cells in sterile water by vortexing
20. Spread onto the appropriate medium
21. Let the cells grow at 30°C
E.coli Transformation
PCR
Culture Medium
Full Medium (YEPD) for Yeast | |||
---|---|---|---|
Yeast Extract | 1 % (weight/volume) | ||
Pepton | 2 % (w/v) | ||
Glucose | 2 % (w/v) |
Synthetic Complete Medium (SC) for Yeast | |||
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Yeast Nitrogen Base | 0.17 % (w/v) | ||
Ammoniumsulfate | 0.5 % (w/v) | ||
Glucose | 2 % (w/v) | ||
Amino Acid Mix° | 50 ml/l | ||
Histidin** | 0.25 mM | ||
Tryptophan** | 0.19 mM | ||
Leucin** | 0.35 mM | ||
Uracil** | 0.44 mM |
pH has to be regulated with KOH to pH=6.3
° contains no His, Leu, Trp and Uracil
** addition of this components depents on the respective selection medium
SOC-Medium for Regeneration of transformed Escherichia coli`s after Electroporation | |||
---|---|---|---|
Trypton | 2 % (w/v) | ||
Yeast Extract | 0.5 % (w/v) | ||
NaCl | 10 mM | ||
KCl | 2,5 mM | ||
MgCl2 | 10 mM | ||
MgSO4 | 10 mM | ||
Glucose | 20 mM |
pH has to be regulated to pH=6.8-7.0
Full Medium (LB) for E.coli | |||
---|---|---|---|
Yeast Extract | 0.5 % (w/v) | ||
Trypton | 1 % (w/v) | ||
NaCl | 0.5 % (w/v) |
pH has to be regulated with NaOH to pH=7.5
Every cluture medium has to be autoclaved to be sterile.
Agar Plate
LBampicillin-Agar
Add 2 % agar to LB-medium. After autoclaving and cooling-down to 60 °C steril ampicillin is added. Plates were poured.
SCD-Agar
Add 2 % agar to SCD-medium. After autoclaving and cooling-down steril amino acid solution is added. Dependent on the respective selective medium Histidin (0.25 mM), Trypthophan (0.19 mM), Uracil (0.44 mM) or Leucin (0.35 mM) are added. Plates were poured.
YEPDG418-Agar
Add 2 % agar to YEPD-medium. After autoclaving and cooling-down sterile G418 (final concentration 2g/l) is added. Plates were poured.
Gel Electrophoresis
Agarose Gel (1x) | |||
---|---|---|---|
TAE puffer | 1x | ||
Agarose | 1 % (w/v) |
Solve agarose in TAE by boiling it. After cooling-down to 55-60 °C gel is poured.
TAE Puffer (50x) for Gel Electrophoresis | |||
---|---|---|---|
EDTA | 18,6 g | ||
Tris | 242g | ||
Glacial Acetic Acid | 57,2 ml | ||
Purified Water | 1000ml |
pH has to be regulated with glacial acetic acid to pH=8.
Kit
PCR Purification Kit from Qiagen
Gel Extraction Kit from Qiagen
Midi Plasmid Preparation Kit from Qiagen