| Literature DB >> 21122122 |
Marten B Maess1, Stefanie Sendelbach, Stefan Lorkowski.
Abstract
BACKGROUND: Reliable reference genes are a vital prerequisite for any functional study employing quantitative real-time RT-PCR (RT-qPCR) for analyzing gene expression. Yet a proper selection and assessment of the chosen reference genes is only rarely included into a study. To date, no reference genes have been validated for differentiation of THP-1 monocytes. Here we report on the selection of validated reference genes during differentiation of THP-1 monocytes into macrophages induced by phorbol 12-myristate 13-acetate (PMA).Entities:
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Year: 2010 PMID: 21122122 PMCID: PMC3002353 DOI: 10.1186/1471-2199-11-90
Source DB: PubMed Journal: BMC Mol Biol ISSN: 1471-2199 Impact factor: 2.946
Figure 1Observed ranges of C. Cq values were recorded for six days of differentiation as described in the Methods section. Boxes indicate the 25 and 75 percentile, means are indicated by squares, and whiskers represent maximum and minimum data points.
Figure 2Average expression stability ranking of the 21 preselected potential reference genes. Ranking of the potential reference genes as calculated by the Microsoft Excel-based application GeNorm is shown. ACTB and RPL37A are the most stably expressed genes of the entire set during maturation of THP-1 monocytes into macrophages.
Figure 3Comparison of alternative procedures for normalization of CD36 expression data obtained during THP-1 monocyte differentiation. A: Normalization using GeNorm normalization factor (ACTB and RPL37A). B: Normalization using G6PD expression data. Different fold changes and statistical interpretations are due to normalization procedures only. Error bars indicate standard deviations. *, p < 0.05; **, p < 0.01; ***, p < 0.001.
Comparison of stability ranking of the 21 preselected potential reference genes by BestKeeper, GeNorm and NormFinder.
| Ranking | BestKeeper | GeNorm | NormFinder |
|---|---|---|---|
| Most stable | RPL37A | RPL37A/ACTB | EIF2B2 |
| ACTB | GUSB | ||
| EIF2B2 | PPARA | ACTB | |
| GUSB | UBE2D2 | RPL37A | |
| H3F3A | EIF2B2 | PPARA | |
| UBE2D2 | H3F3A | UBE2D2 | |
| POLR2K | QARS | SRP14 | |
| PPIB | POLR2K | GAPDH | |
| SRP14 | ABL1 | H3F3A | |
| B2M | PPIB | PSMB2 | |
| QARS | SRP14 | PSMB6 | |
| PSMB2 | PSMB2 | POLR2K | |
| GAPDH | GAPDH | B2M | |
| TUBA1 | PSMB6 | QARS | |
| PSMB6 | GUSB | PPIB | |
| PPARA | TUBA1 | ABL1 | |
| G6PD/TXNRD1 | G6PD | G6PD | |
| TXNRD1 | TXNRD1 | ||
| PPARG | B2M | TUBA1 | |
| PPARD | PPARG | PPARG | |
| Least stable | ABL1 | PPARD | PPARD |
PCR primers used in this study.
| mRNA | mRNA name | Amplicon Size [bp] | PCR efficiency [%] | |||
|---|---|---|---|---|---|---|
| ABL1 | c-abl oncogene 1 | GAGCACAGAGACACCACTGACG | GCTCATCTTCATTCAGGCCG | 148 | 100.9 | |
| ACTB | β-actin | ATTGCCGACAGGATGCAGAA | GCTGATCCACATCTGCTGGAA | 150 | 97.9 | |
| B2M | β-2-microglobulin | GCTCCGTGGCCTTAGCTGT | ACGTGAGTAAACCTGAATCTTTGGA | 89 | 101.1 | |
| CD36 | CD36 | TCACTGCGACATGATTAATGGTACA | ACGTCGGATTCAAATACAGCATAGAT | 126 | 99.2 | |
| EIF2B2 | Eukaryotic translation initiation factor 2B2 | TCCACCCCACTCATCGTCTG | TGGCAGGACTTCTTCAGGAGC | 105 | 101.1 | |
| G6PD | Glucose-6-phosphate dehydrogenase | CCGTCACCAAGAACATTCACG | GGACAGCCGGTCAGAGCTCT | 107 | 98.7 | |
| GAPDH | Glyceraldehyde-3-phosphate dehydrogenase | CAACAGCGACACCCACTCCT | CACCCTGTTGCTGTAGCCAAA | 115 | 101.7 | |
| GUSB | β-glucuronidase | AGCTCATTTGGAATTTTGCCG | GAGTGAAGATCCCCTTTTTATTCCC | 81 | 101.8 | |
| H3F3A | H3 histone, family 3A | TGGCGCTCCGTGAAATTAGA | TGAGCAATTTCTCGCACCAGA | 91 | 97.0 | |
| POLR2K | Polymerase (RNA) II (DNA-directed) polypeptide K | ACCCAGAAGGACGTTCAACCTC | TCTCTGCATCTGATTGGATCCC | 107 | 98.9 | |
| PPARA | Peroxisome proliferator-activated receptor α | AGCCCCTCCTCGGTGACTTAT | GCTTGAGTCGAATCGTTCGC | 172 | 94.6 | |
| PPARD | Peroxisome proliferator-activated receptor δ | AGAACCGCAACAAGTGCCAG | GCATCCGACCAAAACGGA | 87 | 99.1 | |
| PPARG | Peroxisome proliferator-activated receptor γ | TTCAGAAATGCCTTGCAGTGG | AGCTTCTCCTTCTCGGCCTG | 79 | 100.6 | |
| PPIB | Peptidylprolyl isomerase B (cyclophilin B) | ATGGCAAGCATGTGGTGTTTG | CCCGGCTGTCTGTCTTGGT | 84 | 96.8 | |
| PSMB2 | Proteasome subunit, β type 2 | ACGGCAGCAGCTAACTTCACA | TGGCCCTTCATGCTCATCA | 108 | 101.9 | |
| PSMB6 | Proteasome subunit, β type 6 | GGAATCATCATCGCAGGCTG | CTGCCTTACCATCATACCCCC | 81 | 101.6 | |
| QARS | Glutaminyl-tRNA synthetase | GAGCGTCTTGGATATTTCTCCGT | GCTTCCAGCTCACACCTTTCC | 108 | 98.3 | |
| RPL37A | Ribosomal protein L37a | ATTGAAATCAGCCAGCACGC | AGGAACCACAGTGCCAGATCC | 94 | 97.6 | |
| SRP14 | Signal recognition particle 14 kDa | AGCACTGTGGTGAGCTCCAAG | TCAGCCCATCCATGTTAGCTCTA | 82 | 95.1 | |
| TUBA1 | α1-tubulin | GCACTACACCATTGGCAAGGA | AACCAGTTCCCCCACCAAAG | 122 | 98.4 | |
| TXNRD1 | Thioredoxin reductase 1 | CACAATTGGAATCCACCCTGTC | GCTTGCCCCAGAGCGC | 73 | 99.2 | |
| UBE2D2 | Ubiquitin-conjugating enzyme E2D 2 | CCAGATGATCCTTTAGTGCCTGAG | ACATCGCATACTTCTGAGTCCATTC | 100 | 102.5 |
1In each case, forward and reverse primers are located in different exons.