Wash cells in the culture plate with 1xPBS for 1-2 times after removing the medium.
Add 1ml TriZol per 10 cm dish and pass the cells several times through tips to homogenize.
Transfer the lysates to RNase-free Eppendorf tubes and incubate the samples for 5-10 mins at RT.
Add 200 ml chloroform and shake the tubes vigorously for 15 seconds, followed by 2-3 mins incubation at RT.
Spin the samples at 12,000 g for 15 mins at 4°C in a microcentrifuge.
Transfer the upper clear aqueous phase to new RNase-free tubes and precipitate the RNA by adding 0.5 ml of isopropanol.
Incubate the samples for 10 mins at RT and spin at 12,000 g for 10 mins at 4°C in a microcentrifuge.
Remove supernatant and wash the pellets at least once with 1 ml 75% ethanol (pre-cold) in RNase-free water, vortex and centrifuge at 75,00 g for 5 mins at 4°C.
Remove ethanol and briefly air-dry the pellets for 5-10 mins.
Dissolve RNA in RNase-free water.
Determine RNA concentrations using NanoDrop.
Reverse transcription
Mix the following components into a microcentrifuge tube to the total volume of 15 ml:
0.5 or 1 mg total RNA
0.5 mg poly-(T)20 primer
RNase-free water
Heat the tube to 70°C for 5 mins and cool the tube immediately on ice.
Add the following components into the tube:
M-MLV 5x Reaction buffer 5 ml
dATP, 10 mM 1.25 ml
dCTP, 10 mM 1.25 ml
dGTP, 10 mM 1.25 ml
dTTP, 10 mM 1.25 ml
Recombinant RNasinâ Ribonuclease Inhibitor 25 units
M-MLV RT 200 units
Nuclease-free water to the final volume 25 ml
Mix the solution gently by flicking the tube and incubate at 37°C for 60 mins and cool the product at 4°C for 10 mins.
RT-qPCR
The following components are mixed for one reaction: 2x Sybr Green Supermix 10 ml Forward primer, 10 mM 1.5 ml Reverse primer, 10 mM 1.5 ml cDNA 100 ng Nuclease-free water Variable Total volume 20 ml
Load and seal the plate with adhesive film, and spin the plate briefly.
Load the plate into BioRadâ CFX96ä Touch, and run the PCR using the following program: 95°C 30 sec 95°C 15 sec 40 cycles 60°C 30 sec 65-95°C, 0.5°C increments at 5 sec/step (Melt Curve)
Analyze the data using ∆∆CT method.
The primers used in these studies include:
SPIN1, 5’-CAGAGCTGATGCAGGCCAT and 5’-ACTGGGTAACAGGGCCATTG
p53, 5’-CCCAAGCAATGGATGATTTGA and 5’-GGCATTCTGGGAGCTTCATCT
p21, 5’-CTGGACTGTTTTCTCTCGGCTC and 5’-TGTATATTCAGCATTGTGGGAGGA
PUMA, 5’-ACAGTACGAGCGGCGGAGACAA and 5’-GGCGGGTGCAGGCACCTAATT
pre-rRNA, 5’-GCTCTACCTTACCTACCTGG and 5’-TGAGCCATTCGCAGTTTCAC
18S rRNA, 5’-GCTTAATTTGACTCAACACGGGC and 5’-AGCTATCAATCTGTCAATCCTGTC
rRNA, 5’-TGAGAAGACGGTCGAACTTG and 5’-TCCGGGCTCCGTTAATGATC
GAPDH, 5’-GATTCCACCCATGGCAAATTC and 5’-AGCATCGCCCCACTTGATT
(Fang Z et al. eLIFE. 2018)
Related files
elife-31275-v3_RT-qPCR protocol 6 6 2021.docx
elife-31275-v3_RT-qPCR protocol 6-5.docx
Copyright: Content may be subjected to copyright.
How to cite:
Readers should cite both the Bio-protocol preprint and the original research article where this protocol was used:
Fang, Z, Zeng, S, Xiong, J and Lu, H(2021). Reverse transcription (RT) and quantitative RT-PCR analysis. Bio-protocol Preprint. bio-protocol.org/prep1139.
Fang, Z., Cao, B., Liao, J., Deng, J., Plummer, K. D., Liao, P., Liu, T., Zhang, W., Zhang, K., Li, L., Margolin, D., Zeng, S. X., Xiong, J. and Lu, H.(2018). SPIN1 promotes tumorigenesis by blocking the uL18 (universal large ribosomal subunit protein 18)-MDM2-p53 pathway in human cancer. eLife. DOI: 10.7554/eLife.31275
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