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Attempt #1 GOAL: Test the strength of L7ae
24-WELL PLATE TRANSFECTION MAP:
RESULT: Transfection efficiency ~35%. FACS data is available Inconclusive. No L7ae was added. Attempt #2
24-WELL PLATE TRANSFECTION MAP:
RESULT: Transfection efficiency ~35%. FACS data is available : Inconclusive: Too much DNA in each well. Attempt #3
24-WELL PLATE TRANSFECTION MAP:
RESULT: Transfection efficiency ___%. FACS data Data is available GOAL: Test the strength sensitivity of TAL14L7ae repression
24-WELL PLATE TRANSFECTION MAP: GOAL: Test the sensitivity of L7ae repression
24-WELL PLATE TRANSFECTION MAP:
RESULT:Transfection efficiency ___%. Data can be found
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5. pEXPR: hEF1a-rtTA MAV1212-hEF1a-eBFP2 (1.0 fmole) Wild Type CAG-2xKturn-eGFP (1.5 fmoles) MAV1212-TRE-L7ae (1.5 fmoles) 0 uM DOX | 6. pEXPR: hEF1a-rtTA MAV1212-hEF1a-eBFP2 (1.0 fmole) Wild Type CAG-2xKturn-eGFP (1.5 fmoles) MAV1212-TRE-L7ae (1.5 fmoles) 1X DOX | 7. pEXPR: hEF1a-rtTA MAV1212-hEF1a-eBFP2 (1.0 fmole) Wild Type CAG-2xKturn-eGFP (1.5 fmoles) MAV1212-TRE-L7ae (1.5 fmoles) 10X DOX | 8. pEXPR: hEF1a-rtTA MAV1212-hEF1a-eBFP2 (1.0 fmole) Wild Type CAG-2xKturn-eGFP (1.5 fmoles) MAV1212-TRE-L7ae (1.5 fmoles) 100X DOX | 9. pEXPR: hEF1a-rtTA MAV1212-hEF1a-eBFP2 (1.0 fmole) Wild Type CAG-2xKturn-eGFP (1.5 fmoles) MAV1212-TRE-L7ae (1.5 fmoles) 1000X DOX | 10. pEXPR: hEF1a-rtTA MAV1212-hEF1a-eBFP2 (1.0 fmole) Wild Type CAG-2xKturn-eGFP (1.5 fmoles) MAV1212-TRE-L7ae (1.5 fmoles) 2000X DOX | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
////// | ////// | ////// | ////// | ////// | ////// | 13. No DNA No Lipofectamine | 14. No DNA No Lipofectamine |
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1. Neg Ctrl Dummy DNA With Lipofectamine | 2. Neg Ctrl Dummy DNA With Lipofectamine | 3. Neg/Neg Ctrl No DNA No Lipofectamine | 4. Neg/Neg Ctrl No DNA No Lipofectamine | ||
5. pEXPR: hEF1a-eYFP (1.0 fmoles) Dummy DNA (1.5 fmoles = 4.4 uL)
| 6. pEXPR: hEF1a-mKate (1.0 fmoles) Dummy DNA (1.5 fmoles = 4.4 uL) | 7. pEXPR: hEF1a-eBFP (1.0 fmoles) Dummy DNA (1.5 fmoles = 4.4 uL) | 8. pEXPR: hEF1a-eYFP (1.0 fmoles) pEXPR: hEF1a-mKate (1.0 fmoles) pEXPR: hEF1a-eBFP (1.0 fmoles) Dummy DNA (0.75 fmoles = 2.2 uL) | 9. hEF1a-eBFP2 (0.5 fmole) Wild Type CAG-2xKturn-eGFP (1.0 fmoles) Dummy DNA (1.5 fmoles = 2.4 uL) |
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10. pEXPR: hEF1a-rtTA (1.0 fmoles) hEF1a-eBFP2 (0.5 fmole) Wild Type CAG-2xKturn-eGFP (1.0 fmoles) MAV1212-TRE-L7ae (1.0 fmoles) pEXPR: TRE-mKate (1.0 fmoles) 0 uM DOX | 11. pEXPR: hEF1a-rtTA (1.0 fmoles) hEF1a-eBFP2 (0.5 fmole) Wild Type CAG-2xKturn-eGFP (1.0 fmoles) MAV1212-TRE-L7ae (1.0 fmoles) pEXPR: TRE-mKate (1.0 fmoles) 1X DOX | 12. pEXPR: hEF1a-rtTA 1.0 fmoles) hEF1a-eBFP2 (0.5 fmole) Wild Type CAG-2xKturn-eGFP (1.0 fmoles) MAV1212-TRE-L7ae (1.0 fmoles) pEXPR: TRE-mKate (1.0 fmoles) 10X DOX | 13. pEXPR: hEF1a-rtTA (1.0 fmoles) hEF1a-eBFP2 (0.5 fmole) Wild Type CAG-2xKturn-eGFP (1.0 fmoles) MAV1212-TRE-L7ae (1.0 fmoles) pEXPR: TRE-mKate (1.0 fmoles) 100X DOX | 14. pEXPR: hEF1a-rtTA (1.0 fmoles) hEF1a-eBFP2 (0.5 fmole) Wild Type CAG-2xKturn-eGFP (1.0 fmoles) MAV1212-TRE-L7ae (1.0 fmoles) pEXPR: TRE-mKate (1.0 fmoles) 1000X DOX | 15. pEXPR: hEF1a-rtTA (1.0 fmoles) hEF1a-eBFP2 (0.5 fmole) Wild Type CAG-2xKturn-eGFP (1.0 fmoles) MAV1212-TRE-L7ae (1.0 fmoles) pEXPR: TRE-mKate (1.0 fmoles) 2000X DOX |
RESULT: Transfection efficiency ___%. Data can be found
GOAL: Test the sensors in absence of siRNA
- DNA Dilution: hEF1a-mKate (0.46 uL), Wild Type Kturn-eGFP (1.19 uL), Low Sensor miR-144 (1.29 uL),Low Sensor miR-181c (1.29 uL), High Sensor miR-30d (1.37 uL), High Sensor miR-146a (1.37 uL), High Sensor 125b (1.37 uL), High Sensor let-7f (1.37 uL)
24-WELL PLATE TRANSFECTION MAP:
1. miR-144 pEXPR: hEF1a-mKate Low Sensor miR-144 Dummy DNA (2.9 uL = 1 fmoles) | 2. miR-181c pEXPR: hEF1a-mKate Low Sensor miR-181c Dummy DNA (2.9 uL = 1 fmoles) | 3. miR-30d pEXPR: hEF1a-mKate Wild Type CAG-2xKturn-eGFP High Sensor miR-30d Dummy DNA (2.2 uL = 0.75 fmoles) | 4. miR-146a pEXPR: hEF1a-mKate Wild Type CAG-2xKturn-eGFP High Sensor miR-146a Dummy DNA (2.2 uL = 0.75 fmoles) | 5. miR-125b pEXPR: hEF1a-mKate Wild Type CAG-2xKturn-eGFP High Sensor miR-125b Dummy DNA (2.2 uL = 0.75 fmoles) | 6. let-7f pEXPR: hEF1a-mKate Wild Type CAG-2xKturn-eGFP High Sensor let-7f Dummy DNA (2.2 uL = 0.75 fmoles) |
1. miR-144 pEXPR: hEF1a-mKate Low Sensor miR-144 Dummy DNA (2.9 uL = 1 fmoles) | 2. miR-181c pEXPR: hEF1a-mKate Low Sensor miR-181c Dummy DNA (2.9 uL = 1 fmoles) | 3. miR-30d pEXPR: hEF1a-mKate Wild Type CAG-2xKturn-eGFP High Sensor miR-30d Dummy DNA (2.2 uL = 0.75 fmoles) | 4. miR-146a pEXPR: hEF1a-mKate Wild Type CAG-2xKturn-eGFP High Sensor miR-146a Dummy DNA (2.2 uL = 0.75 fmoles) | 5. miR-125b pEXPR: hEF1a-mKate Wild Type CAG-2xKturn-eGFP High Sensor miR-125b Dummy DNA (2.2 uL = 0.75 fmoles) | 6. let-7f pEXPR: hEF1a-mKate Wild Type CAG-2xKturn-eGFP High Sensor let-7f ( Dummy DNA (2.2 uL = 0.75 fmoles) |
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13. pEXPR: hEF1a-mKate Dummy DNA (5.1uL = 1.75 fmoles) | 13. pEXPR: hEF1a-mKate Wild Type CAG-2xKturn-eGFP (1.5 fmoles) Dummy DNA (3.6 uL = 1.25 fmoles) | 19. Dummy DNA With Lipofectamine | 20. Dummy DNA With Lipofectamine |
GOAL: Determine how much TAL14 is needed to repress TAL14-UAS-mKate
- DNA Dilution: MAV1212-hEF1a-eBFP2 (0.47 uL), TAL14-mKate (0.62 uL), hEF1a-GAL4VP16 (0.72 uL), hEF1a-TAL14 (0.22 uL = 1 fmol), Dummy DNA (to 1 ug)
24-WELL PLATE TRANSFECTION MAP:
1. MAV1212-hEF1a-eBFP2 (1.0 fmole) Dummy DNA (1.75 fmoles = 4.06 uL) | 2. MAV1212-hEF1a-eBFP2 (1.0 fmole) Dummy DNA (1.75 fmoles = 04.06 uL) | 3. MAV1212-hEF1a-eBFP2 (1.0 fmole) UAS-TAL14-mKate (1.5 fmoles) Dummy DNA (1.0 fmoles = 2.32 uL) | 4. MAV1212-hEF1a-eBFP2 (1.0 fmole) UAS-TAL14-mKate (1.5 fmoles) Dummy DNA (1.0 fmoles = 2.32 uL) | 5. MAV1212-hEF1a-eBFP2 (1.0 fmole) UAS-TAL14-mKate (1.5 fmoles) hEF1a-Gal4VP16 (1.5 fmoles) Dummy DNA (0.75 fmoles = 1.74 uL) | 6. MAV1212-hEF1a-eBFP2 (1.0 fmole) UAS-TAL14-mKate (1.5 fmoles) hEF1a-Gal4VP16 (1.5 fmoles) Dummy DNA (0.75 fmoles = 1.74 uL) |
7. MAV1212-hEF1a-eBFP2 (1.0 fmole) UAS-TAL14-mKate (1.5 fmoles) hEF1a-Gal4VP16 (1.0 fmoles) hEF1a-TAL14 (1.0 fmoles) | 8. MAV1212-hEF1a-eBFP2 (1.0 fmole) UAS-TAL14-mKate (1.5 fmoles) hEF1a-Gal4VP16 (1.0 fmoles) hEF1a-TAL14 (1.5 fmoles) | 9. MAV1212-hEF1a-eBFP2 (1.0 fmole) UAS-TAL14-mKate (1.5 fmoles) hEF1a-Gal4VP16 (1.0 fmoles) hEF1a-TAL14 (2.0 fmoles) | 10. MAV1212-hEF1a-eBFP2 (1.0 fmole) UAS-TAL14-mKate (1.5 fmoles) hEF1a-Gal4VP16 (1.0 fmoles) hEF1a-TAL14 (2.5 fmoles) | 11. MAV1212-hEF1a-eBFP2 (1.0 fmole) UAS-TAL14-mKate (1.5 fmoles) hEF1a-Gal4VP16 (1.0 fmoles) hEF1a-TAL14 (3.0 fmoles) | 12. MAV1212-hEF1a-eBFP2 (1.0 fmole) UAS-TAL14-mKate (1.5 fmoles) hEF1a-Gal4VP16 (1.0 fmoles) hEF1a-TAL14 (3.5 fmoles) |
13. MAV1212-hEF1a-eBFP2 (1.0 fmole) UAS-TAL14-mKate (1.5 fmoles) hEF1a-Gal4VP16 (1.0 fmoles) hEF1a-TAL14 (4.0 fmoles) | 14. MAV1212-hEF1a-eBFP2 (1.0 fmole) UAS-TAL14-mKate (1.5 fmoles) hEF1a-Gal4VP16 (1.0 fmoles) hEF1a-TAL14 (4.5 fmoles) | 15. MAV1212-hEF1a-eBFP2 (1.0 fmole) UAS-TAL14-mKate (1.5 fmoles) hEF1a-Gal4VP16 (1.0 fmoles) hEF1a-TAL14 (5.0 fmoles) | 16. MAV1212-hEF1a-eBFP2 (1.0 fmole) UAS-TAL14-mKate (1.5 fmoles) hEF1a-Gal4VP16 (1.0 fmoles) hEF1a-TAL14 (10.0 fmoles) | 17. MAV1212-hEF1a-eBFP2 (1.0 fmole) UAS-TAL14-mKate (1.5 fmoles) hEF1a-Gal4VP16 (1.0 fmoles) hEF1a-TAL14 (15.0 fmoles) | 18. MAV1212-hEF1a-eBFP2 (1.0 fmole) UAS-TAL14-mKate (1.5 fmoles) hEF1a-Gal4VP16 (1.0 fmoles) hEF1a-TAL14 (20.0 fmoles) |
19. Dummy DNA (3.2 fmoles = 2.05 uL) With Lipofectamine | 20. Dummy DNA (3.2 fmoles = 2.05 uL) With Lipofectamine | 21. No DNA No Lipofectamine | 22. No DNA No Lipofectamine |
RESULT: Brief description of experimental outcome (mean transfection efficiency and implications). Link to results page with data analysis.Transfection efficiency ___%. Data can be found
GOAL: Test the sensors in absence the presence of siRNA
- DNA Dilution: hEF1a-mKate (0.46 uL), Wild Type Kturn-eGFP (1.19 uL), Low Sensor miR-144 (___ 1.29 uL),Low Sensor miR-181c (___ 1.29 uL), High Sensor miR-30d (___ 1.37 uL), High Sensor miR-146a (___ 1.37 uL), High Sensor 125b (___ 1.37 uL), High Sensor let-7f (___ uL)
24-WELL PLATE TRANSFECTION MAP:
- 1.37 uL), 5 uL Mature 144, 5 uL Mature 181c, 5 uL Mature 30d, 5 uL Mature 146a, 5 uL Mature 125b and 5 uL Mature let-7f
24-WELL PLATE TRANSFECTION MAP:
1. miR-144 pEXPR: hEF1a-mKate Low Sensor miR-144 siRNA-144 Dummy DNA (2.9 uL = 1 fmoles) | 2. miR-181c pEXPR: hEF1a-mKate Low Sensor miR-181c siRNA-181c Dummy DNA (2.9 uL = 1 | .5 fmoles) | 3. miR-30d pEXPR: hEF1a-mKate Wild Type CAG-2xKturn-eGFP High Sensor miR-30d | (1.5 fmoles)siRNA-30d Dummy DNA (2.2 uL = 0.75 fmoles) | 4. miR-146a pEXPR: hEF1a-mKate Wild Type CAG-2xKturn-eGFP High Sensor miR-146a siRNA-146a | (1.5 Dummy DNA (2.2 uL = 0.75 fmoles) | 5. miR-125b pEXPR: hEF1a-mKate Wild Type CAG-2xKturn-eGFP High Sensor miR-125b siRNA-125b | (1.5 Dummy DNA (2.2 uL = 0.75 fmoles) | 6. let-7f pEXPR: hEF1a-mKate Wild Type CAG-2xKturn-eGFP High Sensor let-7f | (1.5 siRNA-7f Dummy DNA (2.2 uL = 0.75 fmoles) | |||||||
1. miR-144 pEXPR: hEF1a-mKate Low Sensor miR-144 siRNA-144 Dummy DNA (2.9 uL = 1 | .5 fmoles) | 82. miR-181c pEXPR: hEF1a-mKate Low Sensor miR-181c siRNA-181c Dummy DNA (2.9 uL = 1 | .5 fmoles) | 93. miR-30d pEXPR: hEF1a-mKate Wild Type CAG-2xKturn-eGFP High Sensor miR-30d siRNA-30d | (1.5 Dummy DNA (2.2 uL = 0.75 fmoles) | 104. miR-146a | High pEXPR: hEF1a-mKate Wild Type CAG-2xKturn-eGFP High Sensor miR-146a | (1.5 siRNA-46a Dummy DNA (2.2 uL = 0.75 fmoles) | 115. miR-125b pEXPR: hEF1a-mKate Wild Type CAG-2xKturn-eGFP High Sensor miR-125b | (1.5 siRNA-125b Dummy DNA (2.2 uL = 0.75 fmoles) | 126. let-7f pEXPR: hEF1a-mKate Wild Type CAG-2xKturn-eGFP High Sensor let-7f siRNA-7f | (1.5 Dummy DNA (2.2 uL = 0.75 fmoles) | |||||
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13. pEXPR: hEF1a-mKate Dummy DNA ( | 35. | 2 fmoles 1uL = | 21. | 05 uL)75 fmoles) | 13. pEXPR: hEF1a-mKate Wild Type CAG-2xKturn-eGFP (1.5 fmoles) Dummy DNA (3. | 2 fmoles 6 uL = | 21. | 0525 fmoles) | 19. Dummy DNA | uL)With Lipofectamine | 20. Dummy | No DNA | No With Lipofectamine | Neg/Neg Ctrl21. No DNA No Lipofectamine |
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////// | 22. No DNA No Lipofectamine |
RESULT: Transfection efficiency ___%. Data can be found
GOAL: Test the sensors in the presence and absence of siRNA
- DNA Dilution: ___ uL Low Sensor miR-144, ___ uL Low Sensor miR-181c, ___ uL High Sensor miR-30d, ___ uL High Sensor miR-146a, ___ uL High Sensor 125b, ___ uL High Sensor let-7f , ___ uL Mature 144, ___ uL Mature 181c, ___ uL Mature 30d, ___ uL Mature 146a, ___ uL Mature 125b and ___ uL Mature let-7f
24-WELL PLATE TRANSFECTION MAP:
144
- Low Sensor miR-144
- Mature 144
- Low Sensor miR-181c
- Mature 181c
- High Sensor miR-30d
- Mature 30d
- High Sensor miR-146a
- Mature 146a
- High Sensor miR-125b
- Mature 125b
- High Sensor let-7f
- Mature let-7f
- Low Sensor miR-144
- Mature 144
- Low Sensor miR-181c
- Mature 181c
- High Sensor miR-30d
- Mature 30d
- High Sensor miR-146a
- Mature 146a
- High Sensor miR-125b
- Mature 125b
- High Sensor let-7f
- Mature let-7f
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Neg Ctrl
- Dummy DNA
- With Lipofectamine
Neg Ctrl
- Dummy DNA
- With Lipofectamine
Neg/Neg Ctrl
- No DNA
- No Lipofectamine
Neg/Neg Ctrl
- No DNA
- No Lipofectamine
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RESULT: Brief description of experimental outcome (mean transfection efficiency and implications). Link to results page with data analysis.
Toggle Cloak |
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24-WELL PLATE TRANSFECTION MAP:
RESULT: Transfection efficiency ___%. Data can be found GOAL: Test the sensors in the presence and absence of siRNA
24-WELL PLATE TRANSFECTION MAP:
RESULT: Transfection efficiency ___%. Data can be found GOAL: Test the strength of TAL14
24-WELL PLATE TRANSFECTION MAP:
Results: Transfection efficiency ___%. Data can be found GOAL: Determine how much TAL14 is needed to repress TAL14-UAS-mKate
24-WELL PLATE TRANSFECTION MAP:
RESULT: Transfection efficiency ___%. Data can be found here. |
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Testing effectiveness of miRNA1–miRNA4 in down-regulating BACE1 expression
Repeat for miRNA2, miRNA3, and miRNA4 (same arrangement of wells as shown here, just substituting out "miRNA1" for the appropriate miRNA) A1 Positive Control A2
Negative Control A3 0 nM Dox A4
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