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1  regulatory site in the promoter of the MDR1 multidrug resistance gene.
2            AEG-1 increases the expression of multidrug resistance gene 1 (MDR1) protein, resulting in
3                            We found that the multidrug resistance gene 1 (MDR1) transporter was respo
4 iated with rapid drug efflux mediated by the multidrug resistance gene 1 (MDR1; encoding P-glycoprote
5 d amplification of the Plasmodium falciparum multidrug resistance gene 1 (pfmdr1) as being the most i
6                                P. falciparum multidrug resistance gene 1 (pfmdr1) genotypes of these
7  x Dd2 cross, we show that the P. falciparum multidrug resistance gene 1 (pfmdr1) interacts with the
8 ereas expression of carbonic anhydrase 9 and multidrug resistance gene 1 was up-regulated in the rena
9  with p53 bound to promoters of Survivin and multidrug resistance gene 1, both targets for transcript
10 e-spanning transporter PfMDR1 (P. falciparum multidrug resistance gene-1) as a determinant of parasit
11 of HIF-1-regulated barrier-protective genes (multidrug resistance gene-1, intestinal trefoil factor,
12 mation: the dextran sodium sulfate model and multidrug resistance gene 1a-deficient mice.
13        Herein, using the mouse model of PSC (multidrug resistance gene 2 knockout), the hepatic knock
14 in administration on hepatic fibrosis in the multidrug resistance gene 2-knockout (Mdr2(-/-)) mouse m
15 ral lines of evidence suggest a role for the multidrug resistance gene (ABCB1/MDR1) and its product,
16                            Overexpression of multidrug resistance genes and their encoded P-glycoprot
17                       Additionally, putative multidrug resistance genes (emrE) were found in YSLPV1 a
18  tetracycline resistance genes (manures) and multidrug resistance genes (greenhouse soils).
19                      Regulation of the human multidrug resistance gene (hMDR1) was studied by mapping
20 me (rho(0)) strongly induce transcription of multidrug resistance genes, including the ATP-binding ca
21                        The expression of the multidrug resistance genes is regulated in a tissue-spec
22 rugs, we examined hepatic CYP3A1/2, Pgp, and multidrug resistance gene (mdr) mRNA during chronic ther
23 tant RPMI 8226 variants that overexpress the multidrug-resistance gene, MDR-1, and its product, p-gly
24 o derivative clones overexpressing the human multidrug resistance gene MDR1 (also designated PGY1) be
25                     To determine whether the multidrug resistance gene MDR1 could act as a selectable
26 ein P-glycoprotein (Pgp), the product of the multidrug resistance gene MDR1, might influence hepatic
27 cts as its coactivator for the expression of multidrug resistance gene MDR1, thereby causing drug res
28 ox element, leading to the activation of the multidrug resistance gene MDR1.
29 ession of P-glycoprotein, the product of the multidrug resistance gene MDR1.
30  which harbor extrachromosomal copies of the multidrug resistance gene (MDR1) almost exclusively on c
31 53 accumulation has been shown to induce the multidrug resistance gene (MDR1) and ATP binding cassett
32 ty is due to p53-dependent regulation of the multidrug resistance gene (MDR1) expression in tumors th
33                            Expression of the multidrug resistance gene (MDR1) p170 protein is frequen
34 ivo, KC progenitor cells transduced with the multidrug resistance gene (MDR1).
35 or the efflux transporter Mrp1/Mrp2) and the multidrug resistance gene (MDR1, which encodes for the e
36                              Variants of the multidrug resistance gene (MDR1/ABCB1) have been associa
37  (X-CGD), gp91phox, and the selectable human multidrug resistance gene, MDR1 linked together by the e
38                     A mutation in the canine multidrug resistance gene, MDR1, has previously been ass
39 e discovered that HSF-1 ablation induced the multidrug resistance gene, MDR1b, in the heart and incre
40                                    The human multidrug resistance gene MDR3 encodes a P-glycoprotein
41  for a naturally occurring polymorphism in a multidrug resistance gene (Mdr65A) in alpha-amanitin res
42 yeast genes) and targeted (three pleiotropic multidrug resistance genes of the ATP binding cassette t
43 plified by overexpressions of P-glycoprotein multidrug-resistance gene or multidrug resistance-associ
44  was a less significant association with the multidrug resistance gene pfmdr1-Y86 allele.
45                    The Plasmodium falciparum multidrug resistance gene, pfmdr1, has been shown to be
46        The contribution of the P. falciparum multidrug resistance gene, pfmdr1, to antimalarial resis
47                                          The multidrug resistance gene product P-glycoprotein confers
48 L transported rhodamine 123, a substrate for multidrug resistance gene products, from the basal side
49                Quantification of several key multidrug resistance genes showed a much higher number o
50 iew focuses on the hepatic regulation of the multidrug resistance genes that encode the P-glycoprotei
51 on of ssa and transposable elements encoding multidrug resistance genes triggered the expansion of sc
52  regulatory pathway connecting expression of multidrug resistance genes with mitochondrial function.
53        Two main target genes of Haa1 are the multidrug resistance gene YGR138c and the YRO2 homolog t

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