Team:Goettingen/NoteBook w13
From 2013.igem.org
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<div class="monat">August</div> | <div class="monat">August</div> | ||
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+ | <div class="tlob" id="tl_0826"> | ||
+ | <span class="date">26th<img src="https://static.igem.org/mediawiki/2013/b/b7/Goe-timeline-dot.png" /></span> | ||
+ | <div class="cont"> | ||
+ | <p class="timeline-title">Sequencing results from 23.8.13, Restriction digests, Purification of vectors from today by PCR clean-up after first round of digest, Purification of part 6.4 A/B inserts by gel extraction....</p> | ||
+ | <div class="timeline-cont"> | ||
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+ | <p class="c138 c133"><span class="c135">Sequencing results from 23.8.13 </span></p><p class="c138 c133"><span>9 – DarR</span><span class="c131">rev</span><span>-Term</span><span class="c131">rev</span><span> C2 + VF2→ DarR</span><span class="c131">rev</span><span> and Terminator</span><span class="c131">rev</span><span> are inserted in the plasmid in the desired orientation without mutations</span></p><p class="c138 c133"><span>10 – DarR</span><span class="c131">rev</span><span>-Term</span><span class="c131">rev</span><span> C2 + VR→ DarR</span><span class="c131">rev</span><span> and Terminator</span><span class="c131">rev</span><span> are inserted in the plasmid in the desired orientation without mutations</span></p><p class="c138 c133"><span>11 – DarR</span><span class="c131">rev</span><span>-Term</span><span class="c131">rev</span><span> C3 + VF2→ DarR</span><span class="c131">rev</span><span> and Terminator</span><span class="c131">rev</span><span> are inserted in the plasmid in the desired orientation without mutations</span></p><p class="c138 c133"><span>12 - DarR</span><span class="c131">rev</span><span>-Term</span><span class="c131">rev</span><span> C3 + VR→ DarR</span><span class="c131">rev</span><span> and Terminator</span><span class="c131">rev</span><span> are inserted in the plasmid in the desired orientation without mutations </span></p><p class="c138 c133"><span>13 – part6.4 B C2 + VF2→ RBS</span><span class="c131">rev</span><span> is inserted in the desired orientation, but sequencing stopped again in reverse promoter 3</span></p><p class="c138 c133"><span>14 – part 6.4 B C5 + VF2→ RBS</span><span class="c131">rev</span><span> is inserted in the desired orientation, but sequencing stopped again in reverse promoter 3 </span></p><p class="c138 c133"><span>15 – part 6.4 A C2 + VF2 → RBS</span><span class="c131">rev</span><span> is not inserted</span></p><p class="c138 c133"><span>16 – part 6.4 A C3 + VF2→ RBS</span><span class="c131">rev</span><span> is inserted in the desired orientation, but a part of pSB1C3 is missing at the EcoRI restriction site (but EcoRI restriction site is present) and a G of NotI restriction site in prefix is missing…</span></p><p class="c138 c133"><span>17 - part 6.4 A C5 + VF2→ RBS</span><span class="c131">rev</span><span> is not inserted</span></p><p class="c138 c133"><span>18 – part 6.4 A C8 + VF2→ RBS</span><span class="c131">rev</span><span> is not inserted</span><span class="c135"> </span></p><p class="c138 c133"><span class="c135">Plan: </span><span> sequencing of the other 4 part 6.4 A clones and cutting out of part 6.4 A C3 insert with XbaI and PstI (one would get rid of missing/erroneous regions) and integration in vector DarR</span><span class="c131">rev</span><span>-Term</span><span class="c131">rev</span><span> plasmid C3; same for part 6.4 B C2</span></p><p class="c1318 c133"><span></span></p><p class="c133"><span class="c135">Plates for C1 – C3 of parts 1 – 4 </span></p><p class="c133 c1317 c1310"><span>- today, the part 2 clones C2 and C3 are slightly pink, while C1 is white as C1 and C2 of part 1 (C3 of part 1 never existed…)</span></p><p class="c133 c1317 c1310"><span>- clones of part 3 and part 4 are very pink</span></p><p class="c133 c1317 c1310"><span>- pictures were taken:</span></p><img src="https://static.igem.org/mediawiki/2013/3/30/Goe-26.08.13-RT-1.png" /><p class="c1318 c133"><span></span></p><p class="c133"><span class="c135">Restriction digests </span></p><p class="c133"><span class="c135">a) DarR</span><span class="c135 c131">rev</span><span class="c135">-Term</span><span class="c135 c131">rev</span><span class="c135"> in pSB1C3; C3 with EcoRI and SpeI</span><span> </span></p><p class="c133"><span>3 μl SpeI FD</span></p><p class="c133"><span>3 μl EcoRI FD</span></p><p class="c133"><span>4 μl FD buffer 10x</span></p><p class="c133"><span>7 μl plasmid (229.7 ng/μl, purified on 23.8.13 → ca. 1500 ng)</span></p><p class="c133"><span>23 μl dH</span><span class="c131">2</span><span>O</span></p><p class="c133"><span>in total: 40 μl</span></p><p class="c133"><span class="c135"> </span></p><p class="c133"><span class="c135">b) part 6.4 A C3 and part 6.4 B C2 with EcoRI </span></p><p class="c133"><span>4μl EcoRI FD</span></p><p class="c133"><span>4 μl FD buffer 10x</span></p><p class="c133"><span>15μl plasmid (6.4 A: 107.5 ng/μl, purified on 23.8.13 → ca. 1500 ng; 6.4 B: 114.6 ng/μl, purified on 23.8.13 → ca. 1500 ng)</span></p><p class="c133"><span>17μl dH</span><span class="c131">2</span><span>O</span></p><p class="c133"><span>in total: 40 μl </span></p><p class="c133"><span class="c1316">Cloning strategy changed</span><span> - suddenly new idea occurred to Katrin and me: sequencing of the other 4 part 6.4 A clones and cutting out of part 6.4 A C3 insert with XbaI and PstI and integration in vector DarR</span><span class="c131">rev</span><span>-Term</span><span class="c131">rev</span><span> plasmid C3; same for part 6.4 B C2; but to avoid a waste of material, the above mentioned reactions were incubated as well and stored at – 20°C in DarR box (in addition, they can serve as a control for part 6.4A, to see, if EcoRI site is really there!) </span></p><p class="c133"><span> </span></p><p class="c133"><span class="c135">c) DarR</span><span class="c135 c131">rev</span><span class="c135">-Term</span><span class="c135 c131">rev</span><span class="c135"> in pSB1C3; C3 with SpeI </span></p><p class="c133"><span>4μl SpeI FD</span></p><p class="c133"><span>4 μl FD buffer 10x</span></p><p class="c133"><span>7 μl plasmid (229.7 ng/μl, purified on 23.8.13 → ca. 1500 ng)</span></p><p class="c133"><span>25μl dH</span><span class="c131">2</span><span>O</span></p><p class="c133"><span>in total: 40 μl </span></p><p class="c133"><span> </span></p><p class="c133"><span class="c135">d) part 6.4 A C3 and part 6.4 B C2 with XbaI and PstI </span></p><p class="c133"><span>3μl PstI FD</span></p><p class="c133"><span>3 μl XbaI FD</span></p><p class="c133"><span>4 μl FD buffer 10x</span></p><p class="c133"><span>15μl plasmid (6.4 A: 107.5 ng/μl, purified on 23.8.13 → ca. 1500 ng; 6.4 B: 114.6 ng/μl, purified on 23.8.13 → ca. 1500 ng)</span></p><p class="c133"><span>15μl dH</span><span class="c131">2</span><span>O</span></p><p class="c133"><span>in total: 40 μl </span></p><p class="c133"><span> </span></p><p class="c1325 c133 c1328"><span>→ all reactions incubated for 1.5 h at 37 °C (incubation time decreased since missing part of vector in plasmid part 6.4 A C3 might result from EcoRI FD overdigest within 2 h incubation time…)</span></p><p class="c1325 c1318 c133 c1328"><span></span></p><p class="c133"><span class="c135">Test Gel run for Restriction digests (see above) </span></p><p class="c133 c1317 c1310"><span>- 1 % agarose-1x TAE gel</span></p><p class="c133 c1317 c1310"><span>- loading of 3 μl 2 log ladder</span></p><p class="c133 c1317 c1310"><span>- loading of 3 μl RD reaction + 1 μl dH</span><span class="c131">2</span><span>O + 1 μl 5xLD</span></p><p class="c133 c1317 c1310"><span>- loading of 1 μl uncut plasmid + 3 μl dH</span><span class="c131">2</span><span>O + 1 μl 5xLD</span></p><p class="c133 c1317 c1310"><span>- rut at 100 V</span></p><p class="c133 c1317 c1310"><span>- EtBr staining + destaining in water</span></p><p class="c133 c1317 c1310"><span>- UV detection</span></p><p class="c133"><span> </span></p><p class="c133"><span>Gel: </span></p><p class="c133"><span>Loading: Marker/ part 6.4 A C3 uncut/ part 6.4 A C3 RD EcoRI/ part 6.4 A C3 RD XbaI + PstI/ part 6.4 B C2 uncut/ part 6.4 B C2 RD EcoRI/ part 6.4 B C2 RD XbaI + PstI/DarR</span><span class="c131">rev</span><span>Term</span><span class="c131">rev</span><span> C3 uncut/ DarR</span><span class="c131">rev</span><span>Term</span><span class="c131">rev</span><span> C3 RD EcoRI + SpeI/ DarR</span><span class="c131">rev</span><span>Term</span><span class="c131">rev</span><span> C3 RD SpeI/Marker</span></p><img src="https://static.igem.org/mediawiki/2013/f/f5/Goe-26.08.13-RT-2.png" /><p class="c1318 c133"><span></span></p><p class="c139 c133"><span>→ </span><span>both digests of part 6.4 A seemed to be complete (expected bands for XbaI/PstI double digest were obtained, i.e. ca. 1 kb and ca. 2 kb band; expected band for EcoRI single digest, i. e. 3 kb band, was also obtained)</span></p><p class="c139 c133"><span>→ </span><span>single digest of part 6.4 B seemed to be slightly incomplete, while double digest appeared to be complete (expected bands for XbaI/PstI double digest were obtained, i.e. ca. 1 kb and ca. 2 kb band; expected band for EcoRI single digest, i. e. 3 kb band, was also obtained)</span></p><p class="c133 c139"><span>→ </span><span>single digest of DarR</span><span class="c131">rev</span><span>-Term</span><span class="c131">rev</span><span> seemed to be slightly incomplete, while double digest appeared to be complete (expected bands for EcoRI/SpeI double digest were obtained, i.e. ca. 0.8 kb and ca. 2 kb band; expected band for SpeI single digest, i. e. ca. 2.8 kb band, was also obtained) </span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>purification of inserts (except for DarR</span><span class="c131">rev</span><span>-Term</span><span class="c131">rev</span><span> insert, stored unpurified at – 20 °C in To-do-box) by gel ex and purification of vectors by PCR clean-up</span></p><p class="c1318 c133"><span class="c135"></span></p><p class="c133"><span class="c135">Purification of vectors from today by PCR clean-up (DarR</span><span class="c135 c131">rev</span><span class="c135">-Term</span><span class="c135 c131">rev</span><span class="c135"> vector/part 6.4 A/B vector) after first round of digest </span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>with Qiagen PCR purification kit</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>500 μl PB buffer were added to the samples</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>elution with 30 μl pre-warmed HPLC water, incubation for 2 min at 50 °C</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>further digest</span></p><p class="c1318 c133"><span></span></p><p class="c133"><span class="c135">Second round of restriction digest to generate vectors for ligation</span></p><p class="c133"><span class="c135"> </span></p><p class="c133"><span class="c135">a) DarR</span><span class="c135 c131">rev</span><span class="c135">-Term</span><span class="c135 c131">rev</span><span class="c135"> vector previously cut with SpeI </span></p><p class="c133"><span>30 μl linearized plasmid</span></p><p class="c133"><span>2 μl dH</span><span class="c131">2</span><span>O</span></p><p class="c133"><span>4 μl PstI FD</span></p><p class="c133"><span>4 μl FD buffer 10x</span></p><p class="c133"><span>in total: 40 μl</span></p><p class="c1318 c133"><span></span></p><p class="c133"><span class="c135">b) part 6.4 A/B vector previously cut with EcoRI </span></p><p class="c133"><span>30 μl linearized plasmid</span></p><p class="c133"><span>2 μl dH</span><span class="c131">2</span><span>O</span></p><p class="c133"><span>4 μl XbaI FD</span></p><p class="c133"><span>4 μl FD buffer 10x</span></p><p class="c133"><span>in total: 40 μl</span></p><p class="c133"><span> </span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>incubation of all three reactions at 37 °C for 1.5 h</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>samples stored at – 20 °C in to-do-box</span></p><p class="c1318 c133"><span class="c135"></span></p><p class="c133"><span class="c135">Purification of part 6.4 A/B inserts by gel extraction </span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>1 % agarose-1x TAE gel</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>loading of 3 μl 2 log ladder</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>loading of entire RD reaction (ca. 37 μl supplied with 7μl 5xLD)</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>loading of 1 μl uncut plasmid + 3 μl dH</span><span class="c131">2</span><span>O + 1 μl 5xLD</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>rut at 85 V</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>brief EtBr staining + brief destaining in water</span></p><p class="c133 c1310 c1317"><span>-</span><span> </span><span>short UV detection, then gel extraction as described on 25.6.13</span></p><p class="c133"><span> </span></p><p class="c133"><span>gel after gel ex: </span></p><p class="c133"><span class="c1322">loading:</span><span> Marker/ uncut part 6.4 A C3/ - /RD part 6.4 A C3/ RD part 6.4 A C3/ RD part 6.4 A C3/ RD part 6.4 A C3/ RD part 6.4 A C3/-/RD part 6.4 B C2/ RD part 6.4 B C2/ RD part 6.4 B C2/ RD part 6.4 B C2/uncut part 6.4 B C2/ Marker</span></p><img src="https://static.igem.org/mediawiki/2013/7/77/Goe-26.08.13-RT-3.png" /><p class="c1318 c133"><span class="c135"></span></p><p class="c133"><span class="c135">Inoculation of clones for CryoStocks and MiniPrep for Test RD/Sequencing </span></p><p class="c133"><span>inoculation of</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>part 1 C2</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>part 2 C3</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>part 3 C2 and C3</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>part 4 C2 and C3 </span></p><p class="c1325 c133 c1328"><span>→</span><span> </span><span>in 4 ml LB</span><span class="c1331">Amp</span></p><p class="c1325 c133 c1328"><span>→</span><span> </span><span>all for cryo stocks and MiniPrep</span></p><p class="c133"><span> </span></p><p class="c133"><span>inoculation of</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>DarR</span><span class="c131">rev</span><span>-Term</span><span class="c131">rev</span><span> in pSB1C3 C3 → for cryostock and MiniPrep</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>part 6.4 A C3 → for cryostock and MiniPrep</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>part 6.4 B C2 and C5 → for cryostock and MiniPrep</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>Promoter1</span><span class="c131">rev</span><span> in pSB1C3 C4 → for cryostock, MiniPrep, test RD and sequencing</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>Promoter3</span><span class="c131">rev</span><span> in pSB1C3 C5 → for cryostock, MiniPrep, test RD and sequencing</span></p><p class="c133 c1310"><span>→</span><span> </span><span>in 4 ml LB</span><span class="c1331">Cm</span><span> </span></p><p class="c1325 c133"><span>incubation ON at 37 °C, 200 - 210 rpmpurification: no isopronol used since fragments ca. 1 kb; each sample (part 6.4 A or part 6. 4 B) was distributed onto two colums, DNA from each column was eluted with 30 μl pre-warmed HPLC water (incubation of sample for 2 min at 50 °C. The DNA from both columns of one sample was collected in the same tube.</span></p><p class="c133 c1317 c1310"><span>-</span><span> </span><span>NanoDrop concentration measurement: </span></p><a href="#" name="c72f93a6b039c950faf971456f2c565e2ef48731"></a><a href="#" name="0"></a><table cellpadding="0" cellspacing="0" class="c1323"><tbody><tr><td class="c1338"><p class="c130"><span class="c135">sample</span></p></td><td class="c1346"><p class="c130"><span class="c135">concentration (ng/μl)</span></p></td><td class="c1335"><p class="c130"><span class="c135">A</span><span class="c135 c131">260nm</span><span class="c135">/A</span><span class="c135 c131">280nm</span></p></td><td class="c1335"><p class="c130"><span class="c135">A</span><span class="c135 c131">260nm</span><span class="c135">/A</span><span class="c135 c131">230nm</span></p></td></tr><tr><td class="c1338"><p class="c130"><span>part 6.4 A C3 insert</span></p><p class="c130"><span> + P</span></p></td><td class="c1346"><p class="c130"><span>6.0</span></p></td><td class="c1335"><p class="c130"><span>1.51</span></p></td><td class="c1335"><p class="c130"><span>0.07</span></p></td></tr><tr><td class="c1338"><p class="c130"><span>part 6.4 B C2 insert X + P</span></p></td><td class="c1346"><p class="c130"><span>6.5</span></p></td><td class="c1335"><p class="c130"><span>1.66</span></p></td><td class="c1335"><p class="c130"><span>0.06</span></p></td></tr></tbody></table><p class="c133 c1317 c1310"><span>-</span><span> </span><span>sample stored in To-do-box</span></p><p class="c1318 c133"><span></span></p><p class="c133"><span class="c135">Inocculation of Ribo A C5.6 and C5.8 from cryo stocks in LB medium containing Cm </span></p><p class="c133"><span class="c135">Inoccultion of DAC (GP1013) and the empty vector (pGP172) from cryo stocks in LB medium containing Amp</span></p><p class="c133"><span>both stored at 30°C over night in the shaker</span></p><p class="c1318 c133"><span></span></p> | ||
+ | |||
+ | <div class="fbutton">Fold ↑</div> | ||
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Revision as of 13:52, 24 September 2013
Sequencing results from 23.8.13, Restriction digests, Purification of vectors from today by PCR clean-up after first round of digest, Purification of part 6.4 A/B inserts by gel extraction....
Sequencing results from 23.8.13
9 – DarRrev-Termrev C2 + VF2→ DarRrev and Terminatorrev are inserted in the plasmid in the desired orientation without mutations
10 – DarRrev-Termrev C2 + VR→ DarRrev and Terminatorrev are inserted in the plasmid in the desired orientation without mutations
11 – DarRrev-Termrev C3 + VF2→ DarRrev and Terminatorrev are inserted in the plasmid in the desired orientation without mutations
12 - DarRrev-Termrev C3 + VR→ DarRrev and Terminatorrev are inserted in the plasmid in the desired orientation without mutations
13 – part6.4 B C2 + VF2→ RBSrev is inserted in the desired orientation, but sequencing stopped again in reverse promoter 3
14 – part 6.4 B C5 + VF2→ RBSrev is inserted in the desired orientation, but sequencing stopped again in reverse promoter 3
15 – part 6.4 A C2 + VF2 → RBSrev is not inserted
16 – part 6.4 A C3 + VF2→ RBSrev is inserted in the desired orientation, but a part of pSB1C3 is missing at the EcoRI restriction site (but EcoRI restriction site is present) and a G of NotI restriction site in prefix is missing…
17 - part 6.4 A C5 + VF2→ RBSrev is not inserted
18 – part 6.4 A C8 + VF2→ RBSrev is not inserted
Plan: sequencing of the other 4 part 6.4 A clones and cutting out of part 6.4 A C3 insert with XbaI and PstI (one would get rid of missing/erroneous regions) and integration in vector DarRrev-Termrev plasmid C3; same for part 6.4 B C2
Plates for C1 – C3 of parts 1 – 4
- today, the part 2 clones C2 and C3 are slightly pink, while C1 is white as C1 and C2 of part 1 (C3 of part 1 never existed…)
- clones of part 3 and part 4 are very pink
- pictures were taken:
Restriction digests
a) DarRrev-Termrev in pSB1C3; C3 with EcoRI and SpeI
3 μl SpeI FD
3 μl EcoRI FD
4 μl FD buffer 10x
7 μl plasmid (229.7 ng/μl, purified on 23.8.13 → ca. 1500 ng)
23 μl dH2O
in total: 40 μl
b) part 6.4 A C3 and part 6.4 B C2 with EcoRI
4μl EcoRI FD
4 μl FD buffer 10x
15μl plasmid (6.4 A: 107.5 ng/μl, purified on 23.8.13 → ca. 1500 ng; 6.4 B: 114.6 ng/μl, purified on 23.8.13 → ca. 1500 ng)
17μl dH2O
in total: 40 μl
Cloning strategy changed - suddenly new idea occurred to Katrin and me: sequencing of the other 4 part 6.4 A clones and cutting out of part 6.4 A C3 insert with XbaI and PstI and integration in vector DarRrev-Termrev plasmid C3; same for part 6.4 B C2; but to avoid a waste of material, the above mentioned reactions were incubated as well and stored at – 20°C in DarR box (in addition, they can serve as a control for part 6.4A, to see, if EcoRI site is really there!)
c) DarRrev-Termrev in pSB1C3; C3 with SpeI
4μl SpeI FD
4 μl FD buffer 10x
7 μl plasmid (229.7 ng/μl, purified on 23.8.13 → ca. 1500 ng)
25μl dH2O
in total: 40 μl
d) part 6.4 A C3 and part 6.4 B C2 with XbaI and PstI
3μl PstI FD
3 μl XbaI FD
4 μl FD buffer 10x
15μl plasmid (6.4 A: 107.5 ng/μl, purified on 23.8.13 → ca. 1500 ng; 6.4 B: 114.6 ng/μl, purified on 23.8.13 → ca. 1500 ng)
15μl dH2O
in total: 40 μl
→ all reactions incubated for 1.5 h at 37 °C (incubation time decreased since missing part of vector in plasmid part 6.4 A C3 might result from EcoRI FD overdigest within 2 h incubation time…)
Test Gel run for Restriction digests (see above)
- 1 % agarose-1x TAE gel
- loading of 3 μl 2 log ladder
- loading of 3 μl RD reaction + 1 μl dH2O + 1 μl 5xLD
- loading of 1 μl uncut plasmid + 3 μl dH2O + 1 μl 5xLD
- rut at 100 V
- EtBr staining + destaining in water
- UV detection
Gel:
Loading: Marker/ part 6.4 A C3 uncut/ part 6.4 A C3 RD EcoRI/ part 6.4 A C3 RD XbaI + PstI/ part 6.4 B C2 uncut/ part 6.4 B C2 RD EcoRI/ part 6.4 B C2 RD XbaI + PstI/DarRrevTermrev C3 uncut/ DarRrevTermrev C3 RD EcoRI + SpeI/ DarRrevTermrev C3 RD SpeI/Marker
→ both digests of part 6.4 A seemed to be complete (expected bands for XbaI/PstI double digest were obtained, i.e. ca. 1 kb and ca. 2 kb band; expected band for EcoRI single digest, i. e. 3 kb band, was also obtained)
→ single digest of part 6.4 B seemed to be slightly incomplete, while double digest appeared to be complete (expected bands for XbaI/PstI double digest were obtained, i.e. ca. 1 kb and ca. 2 kb band; expected band for EcoRI single digest, i. e. 3 kb band, was also obtained)
→ single digest of DarRrev-Termrev seemed to be slightly incomplete, while double digest appeared to be complete (expected bands for EcoRI/SpeI double digest were obtained, i.e. ca. 0.8 kb and ca. 2 kb band; expected band for SpeI single digest, i. e. ca. 2.8 kb band, was also obtained)
- purification of inserts (except for DarRrev-Termrev insert, stored unpurified at – 20 °C in To-do-box) by gel ex and purification of vectors by PCR clean-up
Purification of vectors from today by PCR clean-up (DarRrev-Termrev vector/part 6.4 A/B vector) after first round of digest
- with Qiagen PCR purification kit
- 500 μl PB buffer were added to the samples
- elution with 30 μl pre-warmed HPLC water, incubation for 2 min at 50 °C
- further digest
Second round of restriction digest to generate vectors for ligation
a) DarRrev-Termrev vector previously cut with SpeI
30 μl linearized plasmid
2 μl dH2O
4 μl PstI FD
4 μl FD buffer 10x
in total: 40 μl
b) part 6.4 A/B vector previously cut with EcoRI
30 μl linearized plasmid
2 μl dH2O
4 μl XbaI FD
4 μl FD buffer 10x
in total: 40 μl
- incubation of all three reactions at 37 °C for 1.5 h
- samples stored at – 20 °C in to-do-box
Purification of part 6.4 A/B inserts by gel extraction
- 1 % agarose-1x TAE gel
- loading of 3 μl 2 log ladder
- loading of entire RD reaction (ca. 37 μl supplied with 7μl 5xLD)
- loading of 1 μl uncut plasmid + 3 μl dH2O + 1 μl 5xLD
- rut at 85 V
- brief EtBr staining + brief destaining in water
- short UV detection, then gel extraction as described on 25.6.13
gel after gel ex:
loading: Marker/ uncut part 6.4 A C3/ - /RD part 6.4 A C3/ RD part 6.4 A C3/ RD part 6.4 A C3/ RD part 6.4 A C3/ RD part 6.4 A C3/-/RD part 6.4 B C2/ RD part 6.4 B C2/ RD part 6.4 B C2/ RD part 6.4 B C2/uncut part 6.4 B C2/ Marker
Inoculation of clones for CryoStocks and MiniPrep for Test RD/Sequencing
inoculation of
- part 1 C2
- part 2 C3
- part 3 C2 and C3
- part 4 C2 and C3
→ in 4 ml LBAmp
→ all for cryo stocks and MiniPrep
inoculation of
- DarRrev-Termrev in pSB1C3 C3 → for cryostock and MiniPrep
- part 6.4 A C3 → for cryostock and MiniPrep
- part 6.4 B C2 and C5 → for cryostock and MiniPrep
- Promoter1rev in pSB1C3 C4 → for cryostock, MiniPrep, test RD and sequencing
- Promoter3rev in pSB1C3 C5 → for cryostock, MiniPrep, test RD and sequencing
→ in 4 ml LBCm
incubation ON at 37 °C, 200 - 210 rpmpurification: no isopronol used since fragments ca. 1 kb; each sample (part 6.4 A or part 6. 4 B) was distributed onto two colums, DNA from each column was eluted with 30 μl pre-warmed HPLC water (incubation of sample for 2 min at 50 °C. The DNA from both columns of one sample was collected in the same tube.
- NanoDrop concentration measurement:
sample | concentration (ng/μl) | A260nm/A280nm | A260nm/A230nm |
part 6.4 A C3 insert + P | 6.0 | 1.51 | 0.07 |
part 6.4 B C2 insert X + P | 6.5 | 1.66 | 0.06 |
- sample stored in To-do-box
Inocculation of Ribo A C5.6 and C5.8 from cryo stocks in LB medium containing Cm
Inoccultion of DAC (GP1013) and the empty vector (pGP172) from cryo stocks in LB medium containing Amp
both stored at 30°C over night in the shaker