Team:Freiburg/Notebook/31 August

From 2011.igem.org

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(Precipitator)
(Precipitator)
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==<span style="color:grey;">Precipitator</span>==
==<span style="color:grey;">Precipitator</span>==
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{| style="border-spacing:0;"
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| style="border:0.0069in solid #00000a;padding-top:0in;padding-bottom:0in;padding-left:0.075in;padding-right:0.075in;"| Name
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Rüdiger
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| style="border:0.0069in solid #00000a;padding-top:0in;padding-bottom:0in;padding-left:0.075in;padding-right:0.075in;"| Date:
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31.08.2011
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|-
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| colspan="2"  style="border:0.0069in solid #00000a;padding-top:0in;padding-bottom:0in;padding-left:0.075in;padding-right:0.075in;"| Continue from Experiment Gibson-Assembly (Date) 30.08. (repeated)
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(Name) Rüdiger
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|-
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| colspan="2"  style="border:0.0069in solid #00000a;padding-top:0in;padding-bottom:0in;padding-left:0.075in;padding-right:0.075in;"| Project Name: Blue light receptor: Ligation of Lovtap and Not-Gate
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|}
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Gibson-Assembly
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1. Prepare 5X ISO buffer. Six ml of this buffer can be prepared by combining the following:
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3 ml of 1 M Tris-HCl pH 7.5150 μl of 2 M MgCl<sub>2</sub>60 μl of 100 mM dGTP 60 μl of 100 mM dATP 60 μl of 100 mM dTTP60 μl of 100 mM dCTP300 μl of 1 M DTT 1.5 g PEG-8000300 μl of 100 mM NADAdd water to 6 ml Aliquot 100 μl and store at -20 °C
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2. Prepare an assembly master mixture. This can be prepared by combining the following:
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320 μl 5X ISO buffer0.64 μl of 10 U/ μl T5 exo20 μl of 2 U/μl Phusion pol160 μl of 40 U/μl Taq ligAdd water to 1.2 ml
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Aliquot 15 μl and store at -20 °C. This assembly mixture can be stored at -20 °C for at least one year. The enzymes remain active following at least 10 freeze-thaw cycles. This is ideal for the assembly of DNA molecules with 20-150 bp overlaps. For DNA molecules overlapping by larger than 150 bp, prepare the assembly mixture by using 3.2 μl of 10 U/ μl T5 exo.
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3. Thaw a 15 μl assembly mixture aliquot and keep on ice until ready to be used.
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4. Add 5 μl of DNA to be assembled to the master mixture. The DNA should be in equimolar amounts. Use 10-100 ng of each ~6 kb DNA fragment. For larger DNA segments, increasingly proportionate amounts of DNA should be added (e.g. 250 ng of each 150 kb DNA segment).
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5. Incubate at 50 °C for 15 to 60 min (60 min is optimal).
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6. If cloning is desired, electroporate 1 μl of the assembly reaction into 30 μl electrocompetent ''E. coli''.
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'''Documentation:'''
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Why are you doing this experiment? Name the parts for the Gibson-Assembly.
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{| style="border-spacing:0;"
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| style="border:0.0069in solid #00000a;padding-top:0in;padding-bottom:0in;padding-left:0.075in;padding-right:0.075in;"|
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{| style="border-spacing:0;"
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| style="border-top:0.0007in solid #000000;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| Label
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| style="border-top:0.0007in solid #000000;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| Concentrations ng/ μl
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| style="border:0.0007in solid #000000;padding:0.0382in;"| μl to add to Gibson
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|-
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| 4
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| 55
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:0.0007in solid #000000;padding:0.0382in;"| 0,5
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|-
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| 5
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| 40
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:0.0007in solid #000000;padding:0.0382in;"| 0,6
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|-
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| 6
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| 50
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:0.0007in solid #000000;padding:0.0382in;"| 0,5
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|-
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| 9
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| 47
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:0.0007in solid #000000;padding:0.0382in;"| 0,55
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|-
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| 10
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| 56
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:0.0007in solid #000000;padding:0.0382in;"| 0,45
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|-
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| 11
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| 30
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:0.0007in solid #000000;padding:0.0382in;"| 0,8
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|}
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4 with 9, 5 with 10, 6 with 11
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|}
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Probes
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{| style="border-spacing:0;"
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| style="border-top:0.0007in solid #000000;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"|
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| style="border-top:0.0007in solid #000000;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| 2
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| style="border-top:0.0007in solid #000000;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| 42
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| style="border:0.0007in solid #000000;padding:0.0382in;"| 4
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|-
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| Inserts
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| 4,9
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| 5,10
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:0.0007in solid #000000;padding:0.0382in;"| 6,11
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|-
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| μl H2o
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| 4
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:none;padding:0.0382in;"| 4
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| style="border-top:none;border-bottom:0.0007in solid #000000;border-left:0.0007in solid #000000;border-right:0.0007in solid #000000;padding:0.0382in;"| 3,7
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|}
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Describe your results and mistakes. Did you digest it? Results?
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{| style="border-spacing:0;"
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| style="border:0.0069in solid #00000a;padding-top:0in;padding-bottom:0in;padding-left:0.075in;padding-right:0.075in;"| See gel next day
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>Did not work due to wrong DNA concentrations and no PCR purification
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|}
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How did you label your samples and where are they stored?
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{| style="border-spacing:0;"
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| style="border:0.0069in solid #00000a;padding-top:0in;padding-bottom:0in;padding-left:0.075in;padding-right:0.075in;"|
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|}
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'''Digestion'''
'''Digestion'''

Revision as of 20:42, 21 September 2011


This is the wiki page
of the Freiburger student
team competing for iGEM 2011.
Thank you for your interest!