| Literature DB >> 21320353 |
Wanna Chaijaroenkul1, Stephen A Ward, Mathirut Mungthin, David Johnson, Andrew Owen, Patrick G Bray, Kesara Na-Bangchang.
Abstract
BACKGROUND: Plasmodium falciparum chloroquine resistance (CQR) transporter protein (PfCRT) is known to be the important key of CQR. Recent studies have definitively demonstrated a link between mutations in the gene pfcrt and resistance to chloroquine in P. falciparum. Although these mutations are predictive of chloroquine resistance, they are not quantitatively predictive of the degree of resistance.Entities:
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Year: 2011 PMID: 21320353 PMCID: PMC3055224 DOI: 10.1186/1475-2875-10-42
Source DB: PubMed Journal: Malar J ISSN: 1475-2875 Impact factor: 2.979
Primers used for pfcrt sequencing and real-time PCR quantification
| Exon 1-2 | |
| Primary | |
| E1/2-F | CGACATTCCGATATATTATATTTTTAGAC |
| E1/2-R | TATATGTGTAATGTTTTATATTGG |
| Nested | |
| E1/2-NF | CCGTTAATAATAAATACACGCAG |
| E1/2-NR | AATGTTTTATATTGGTAGGTGG |
| Exon 3-8 | |
| Primary | |
| E3/8-F | CCACCTACCAATATAAAACATTAC |
| E3/8-R | GTTAAAATATATATAAATGTCTC |
| Nested | |
| E3/8-NF | TATATATATATGTATGTATGTTG |
| E3/8-NR | AATGTCTCTTATAATTTTGAAATT |
| Exon 9-13 | |
| Primary | |
| E9/13-F | CTTATAATAAAATTTCAAAATTATAAGAGAC |
| E9/13-R | GAGATCTCTATACCTTCAACATTATTCC |
| Nested | |
| E9/13-NF | GAGACATTTATATATATTTTAAC |
| E9/13-NR | CCTTATAAAGTGTAATGCG |
| pfcrt RT-PCR | |
| pfcrt-F | CTTTATTTGTATGATTATGTTCTTTATTGTTTATTCCTTATTTGGA |
| pfcrt-R | AACAGGCATCTAACATGGATATAGCAAA |
| pfcrt-probe | TCGGTGTCGTTCTTTTG |
| pfmdr RT-PCR | |
| pfmdr-F | GCATTCGGTTTTTGGTATGGTACAA |
| pfmdr-R | CCTAATAAAATGGATATAACTGAGGCACCA |
| pfmdr-probe | ACGAATCAATACCCCAATAAT |
| EF-1a RT-PCR | |
| EF-1a-F | GGCAGAAAGAGAAAGAGGTATTACCA |
| EF-1a-R | CCTGGTGCATCAATGACAGTAAAGA |
| EF-1a-probe | TTATGGAAATTTGAAACCCC |
Figure 1Box plot between logICand the order of drug susceptibility. A: CQ was categorised into high resistance (HR: IC50 >101 nM), moderate resistance (MR: 30.9
Sequence polymorphism in pfcrt
| Isolate/clone | Amino acid in | |||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 72 | 73 | 74 | 75 | 76 | 198 | 220 | 271 | 326 | 356 | 371 | ||
| 3D7 | 8 | C | V | M | N | K | E | A | Q | N | I | R |
| Dd2 | 48 | C | V | I | E | T | E | S | E | S | T | I |
| BC1 | 76 | C | V | I | E | T | E | S | E | S | T | I |
| BC7 | 54 | C | V | I | E | T | E | S | E | S | T | I |
| BC12 | 49 | C | V | I | E | T | E | S | E | S | T | I |
| BC22 | 42 | C | V | I | E | T | K* | S | E | S | T | I |
| BC31 | 31 | C | V | I | E | T | K* | S | E | S | T | I |
| BC35 | 57 | C | V | I | E | T | K* | S | E | S | T | I |
| J1 | 107 | C | V | I | E | T | E | S | E | S | T | I |
| J3 | 119 | C | V | I | E | T | E | S | E | S | T | I |
| J4 | 114 | C | V | I | E | T | E | S | E | S | T | I |
| J5 | 121 | C | V | I | E | T | E | S | E | S | T | I |
| J6 | 167 | C | V | I | E | T | E | S | E | S | T | I |
| J9 | 123 | C | V | I | E | E | S | E | S | T | I | |
| KS14 | 67 | C | V | I | E | T | E | S | E | S | T | I |
| KS21 | 68 | C | V | I | E | T | E | S | E | S | T | I |
| KS28 | 74 | C | V | I | E | T | E | S | E | S | T | I |
| KS33 | 55 | C | V | I | E | T | E | S | E | S | T | I |
| KS50 | 78 | C | V | I | E | T | K* | S | E | S | T | I |
| PCM2 | 75 | C | V | I | E | T | E | S | E | S | T | I |
| PCM7 | 51 | C | V | I | E | T | E | S | E | S | T | I |
| RN54 | 47 | C | V | I | E | T | E | S | E | S | T | I |
* Glutamic acid = > Lysine
** Lysine == > Alanine
Figure 2Correlation analysis between ) and relative . The analysis was deduced using the comparative ΔΔCt method (log 2-ΔΔCt) using either EF1-alpha as endogenous control gene.
Figure 3Correlation analysis between ) and relative . The analysis was deduced using the comparative ΔΔCt method (log 2-ΔΔCt) using either EF1-alpha as endogenous control gene.