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1 FPGS) but not intracellular transport by the reduced folate carrier.
2 nsport and how they differ from those of the reduced folate carrier.
3 -localized genes, carbonyl reductase and the reduced folate carrier.
4 ructure-function relationships of the murine reduced folate carrier 1 (RFC1), a glutamate to lysine m
5 methylenetetrahydrofolate reductase (MTHFR), reduced folate carrier 1 (RFC1), and glutamate carboxype
6 genes, folate binding protein 1 (Folbp1) and reduced folate carrier 1 (RFC1), on folate homeostasis t
7 uctase gene and the A80C polymorphism of the reduced folate carrier 1 gene were not statistically sig
12 effectively transported into the cell by the reduced folate carrier and intracellularly sequestered b
15 and requires transport into the cell by the reduced folate carrier but, unlike 1, is independent of
17 tion or translation of the recently isolated reduced folate carrier gene (RFC1) was the cause of MTX
20 promoters (designated A and B) for the human reduced folate carrier (hRFC) gene that result in hRFC t
21 eported an intricate regulation of the human reduced folate carrier (hRFC) gene, involving multiple p
22 hip between loss of functional p53 and human reduced folate carrier (hRFC) levels and function was ex
24 in the protein and mRNA levels of the human reduced-folate carrier (hRFC) and a decrease in the acti
25 pha and beta over the ubiquitously expressed reduced folate carrier is a paradigm for selective tumor
26 stream structure and regulation of the mouse reduced folate carrier (mRFC) gene was characterized.
27 on phase, when antifolates predominated, the reduced folate carrier polymorphism predicted gastrointe
28 ve documented the roles of transport via the reduced folate carrier, retention via polyglutamylation,
29 ine hydroxymethyltransferase (SHMT1 C1420T); reduced folate carrier (RFC G80A); and methionine syntha
33 ansporter (PCFT) uptake specificity over the reduced folate carrier (RFC) and inhibition of de novo p
34 cells engineered to express PCFT without the reduced folate carrier (RFC) and of HepG2 cells expressi
41 y (CHO) cells that expressed FRs but not the reduced folate carrier (RFC) or proton-coupled folate tr
42 mulation in T-lineage ALL, expression of the reduced folate carrier (RFC) was assessed by reverse tra
43 d transport due to a genomic deletion of the reduced folate carrier (RFC) was only 2-fold resistant t
44 x into CCRF-CEM human leukemia cells via the reduced folate carrier (RFC) were 0.28 and 1.1 muM, resp
45 s for this defect, Northern analyses for the reduced folate carrier (RFC) were performed on the RNA a
49 ere found to have two point mutations in the reduced folate carrier (RFC), resulting in a replacement
50 h these compounds are not substrates for the reduced folate carrier (RFC), the major facilitative fol
58 Methotrexate (MTX) enters cells through the reduced folate carrier (RFC-1) and exerts part of its ef
60 kemia cells is mediated by the bidirectional reduced folate carrier (RFC1) and independent unidirecti
64 In previous reports, an E45K mutation in reduced folate carrier (RFC1) resulted in marked substra
65 iamin transporter encoded by SLC19A2 and the reduced folate carrier (RFC1) share 40% homology at the
66 yed to study the pattern of mutations in the reduced folate carrier (RFC1) that results in transport-
67 roton-coupled folate transporter (PCFT), and reduced folate carrier (RFC1), were studied in a cohort
68 PMT), gamma-glutamyl hydrolase (GGH) and the reduced folate carrier (SLC19A1) to assess the nature of
69 of hTHTR2 with that of hTHTR1 and the human reduced folate carrier (SLC19A1) to underscore commonali
70 found significantly lower expression of the reduced folate carrier (SLC19A1, an MTX uptake transport
71 genes responsible for pemetrexed transport (reduced folate carrier [SLC19A1]) and metabolism (folylp
73 which cannot be internalized by the cellular reduced folate carrier, with carboxypeptidase A (CPA), w
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