User:Allison K. Alix/Notebook/Thesis Research/2013/01/29: Difference between revisions

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==Procedures==
==Procedures==
'''ZnPPIX:'''


5μM ZnPPIX already prepared
5μM ZnPPIX already prepared


''To prepare 1 μM 4 telomeric repeat DNA:''
1. Prepare 1 μM 4 telomeric repeat DNA:


265.6μM (x) = 1μM (100μL)
265.6μM (x) = 1μM (100μL)
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x = '''2.656 μL''' in 97.344 μL H<sub>2</sub>O
x = '''2.656 μL''' in 97.344 μL H<sub>2</sub>O


''To prepare 1 μM 8 telomeric repeat DNA:''
2. Prepare 1 μM 8 telomeric repeat DNA


142.8μM (x) = 1μM (100μL)
142.8μM (x) = 1μM (100μL)


x = '''1.428 μL''' in 98.572 μL H<sub>2</sub>O
x = '''1.428 μL''' in 98.572 μL H<sub>2</sub>O
'''ThT'''
1. prepare 5mM tris-HCl buffer solution
  121.4 g/mol x 5mmol/L x 1mol/1000mmol x 50 mL x 1L/1000mL = 0.030285 g in 50 mL
  Add 1 N HCl (~8 drops) to obtain pH ~ 7.25
2.


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Revision as of 17:08, 4 February 2013

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Objectives

-Repeat ZnPPIX and DNA hybridizations in 5:1 ratios instead of 1:1

-Hybridize ThT and DNA strands

Procedures

ZnPPIX:

5μM ZnPPIX already prepared

1. Prepare 1 μM 4 telomeric repeat DNA:

265.6μM (x) = 1μM (100μL)

x = 2.656 μL in 97.344 μL H2O

2. Prepare 1 μM 8 telomeric repeat DNA

142.8μM (x) = 1μM (100μL)

x = 1.428 μL in 98.572 μL H2O

ThT

1. prepare 5mM tris-HCl buffer solution

  121.4 g/mol x 5mmol/L x 1mol/1000mmol x 50 mL x 1L/1000mL = 0.030285 g in 50 mL
  Add 1 N HCl (~8 drops) to obtain pH ~ 7.25

2.