Team:UCL/protocols

From 2014.igem.org

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<h4>Transformation of competent cells</h4>
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<b>Materials</b>
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Competent Cells - 50ul per transformation
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DNA - 1ug of DNA per 50ul
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Antibiotic Plates
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Procedure
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·      Check which resistance plates you need!
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Thaw competent cells on ice
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50uL cells enough for 1 transformation
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Add 1ug of DNA to 50uL competent cells
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If biobrick from distribution, resuspend DNA well in 10uL ddH20
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Add 1uL biobrick DNA to 50uL competent cells
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Add 1uL RFP control to 50uL competent cells for your control transformation
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pSB1A3 w/ BBa_J04450
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Flick by hand or pipette up and down gently
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Ice for 30 min (roughly)
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40s incubation at 42oC in water bath
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2 min on ice (minimum - 30 min max)
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Add 0.5mL of LB media and shake for 30min to 2h
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Just tape down tube to incubator
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This is the recovery step
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SOC media is used if doing cloning in order to improve efficiency
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Label two petri dishes with LB agar and the appropriate antibiotics(s) with the part number, plasmid backbone and antibiotic resistance
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Plate 50 µl and 500 µl of the transformation onto the dishes, and spread.
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This helps ensure that you will be able to pick out a single colony.
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Use sterile spreader
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For the control, label two petri dishes with LB agar (AMP). Plate 50 µl and 500 µl of the transformation onto the dishes, and spread.
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Incubate the plates at 37ºC for 12-14 hours, making sure the agar side of the plate is up.
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If incubated for too long the antibiotics start to break down and un-transformed cells will begin to grow. This is especially true for ampicillin - because the resistance enzyme is excreted by the bacteria, and inactivates the antibiotic outside of the bacteria
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You can pick a single colony, make a glycerol stock, grow up a cell culture and miniprep.
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Count the colonies on the 20 μl control plate and calculate your competent cell efficiency.
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Revision as of 14:38, 5 September 2014

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