Team:NTU-Singapore/Notebook/27 May 2008
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====Phase II:==== | ====Phase II:==== | ||
- | # | + | #After incubating overnight, centrifuge the 2 tubes from phase I using a Mega centrifuge. The machine is settled at temperature 4oC, Rotor 11133, maximum 5500 RPM, time 10min. Check settings and set to ‘lock’ mode. |
- | # | + | #Empty the supernatant from both tubes and invert to dry remnants of liquid from the tubes. This is to ensure the bacteria pellet is as dry as possible. |
- | # | + | #Resuspend pelleted bacterial cells 250ul of buffer P1 and transfer to a micro centrifuge tube. The bacteria are resuspended by pipetting up and down several times until no cell clumps remain. Keep buffer P1 at 4oC after use. |
- | + | #Add 250ul of buffer P2 and mix gently by inverting the tubes 6 times. Do not allow lysis to exceed 5min. | |
+ | #Add 350ul of buffer N3 and mix thoroughly by inverting the tubes 6 times. Solution should turn cloudy. | ||
+ | #Centrifuge the tubes for 10 minutes at RPM of 13200. | ||
+ | #Gently pour the supernatant from step 4 to the QIAprep spin column. The plasmid DNA is now trapped within the membrane of the QIAprep column. Empty the filtrate and dry by inverting and tapping on tissue. Centrifuge for 1 minute at 13200 rpm. | ||
+ | #Add 750ul of PE buffer to wash the QIAprep column. Leave to stand for 5min. Spin for 1min at 13200rpm, then empty the filtrate and spin again. The outer tube of the QIAprep can be thrown away. | ||
+ | #Place the inner QIAprep column into clean 1.5ml micro centrifuge tube. Elute the plasmid DNA by adding 30ul of buffer EB just near to the inner membrane. Allow to stand for 1 minute, then centrifuge for another minute. 30ul is just sufficient to cover the membrane cross sectional area. | ||
+ | #Store LacI(1) and LacI(2) plasmid DNA at 4oC. | ||
+ | |||
====Phase III:==== | ====Phase III:==== | ||
#Soak the spots in 5ul of warmed TE for 20 minutes. Also, thaw the competent cells on wet crushed ice. | #Soak the spots in 5ul of warmed TE for 20 minutes. Also, thaw the competent cells on wet crushed ice. |
Revision as of 02:51, 30 May 2008
Contents |
Tuesday
- Chin Chong (ChinChong)
- Finalized Order-list for SBS store
- Requested W3110 strain with luxS knockout from Princeton university
- Canceled request from Yale
- Zhen Fu
- Come up with preliminary model for simulation
- Min Lin
- Finalized Sponsorship letter
- Ordered contact cards for the group
- Darius
- Read through articles related to the project
- Propose oligo nucleotides needed with the team
- Choon Kit & Hung (Greenbear)
- Repeated the transformation of plasmids with Fe promoter after the first one yielded no cell growth. This time, we used Ultracompetent TOP5 cells. :(
- Amplification of E coli that were successfully transformed with LacI (2 colonies grow).
Experiment No 3Date 27-28 May 2008 Start Time 1530 End Time 1800 Personnel:Choon Kit, Hung, Dr Tan TL Title of Experiment:The experiment could be classified in 3 phases 1. Amplification of transformed colonies (for 2 samples) 2. LacI Plasmid Extraction using Qiagen MiniPrep Kit 3. Plasmid analysis by Gel Electrophoresis
Materials:Phase I: 2 x 15ml centrifuge tubes Marker LB broth with amipicllin resistance 2 x inoculating loops Agar plate containing transformed colonies
Phase II: Qiagen MiniPrep Kit Mega Centrifuge Small Centrifuge Pipette with pipette tips 2 x 1.5ml centrifuge tubes 2 x 2.0ml centrifuge tubes
Phase III: PstI and EcoRI in icebox BSA and EcoRI buffer DI water 2 x PCR tubes Pipette with pipette tips DNA marker (10kb) Blue loading dye Gel Electrophoresis setup Protocols/Procedures:Phase I:(done in 27 May)
Phase II:
Phase III:
Observations:2 colonies observed in LacI LB plate, 0 colony in Fe2+ LB plate, positive control pUC-18 showed many colonies. Conclusion:Fe2+ not successfully transformed in home-made competent cells. LacI and pUC-18 transformation were successful. Notes:Refer to video clip 26 May 08 for details. To be follow up:1. Repeat whole transformation of Fe2+ plasmid using commercially competent cells. |