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1 th elastase, beta-galactosidase, or cellular retinoic acid binding protein.
2 del aggregation-prone protein, P39A cellular retinoic acid-binding protein.
5 chemical staining for beta-catenin, cellular retinoic acid binding protein 1 (CRABP1), cellular retin
6 nd in the retinoic acid-transporter cellular retinoic acid binding protein 1 (p < 0.05 vs. NC-HDL).
7 ladder in the beta-barrel protein, cellular retinoic acid-binding protein 1 (CRABP1), as a case stud
8 claudin-4, collagen type IX alpha2, cellular retinoic acid binding protein-1, forkhead box J1, and S1
9 with a cardiac neural crest marker, cellular retinoic acid-binding protein-1, shows that the migratio
10 atment, we investigated the role of cellular retinoic acid binding protein 2 (CRABP2) in MPNST in vit
11 selectively and efficiently modify cellular retinoic acid binding protein 2 (CRABP2), both in vitro
12 ic acid binding protein 1 (CRABP1), cellular retinoic acid binding protein 2 (CRABP2), fatty acid-bin
14 ow that HuR directly interacts with cellular retinoic acid-binding protein 2 (CRABP2), a protein know
15 stellate cells and elevated levels of serum retinoic acid-binding protein 4, indicating increased bi
16 tty acid-binding protein), CRABP I (cellular retinoic acid-binding protein), and CRBP II (cellular re
17 ld of NGAL is most similar to the epididymal retinoic acid-binding protein, another lipocalin, though
18 retinoic acid receptors (RAR), and cellular retinoic acid binding proteins (CRABP-I and CRABP-II).
19 strated cell specific expression of cellular retinoic acid-binding protein (CRABP) and cellular retin
20 etinoic acid receptor (RAR) and the cellular retinoic acid-binding protein (CRABP) II, in this proces
21 ere evaluated in binding assays for cellular retinoic acid-binding proteins (CRABP-I and CRABP-II), a
22 e retinoic acid receptors (RAR) and cellular retinoic acid-binding proteins (CRABP-I and CRABP-II).
23 cal for binding of retinoic acid by cellular retinoic acid-binding proteins (CRABP-I and CRABP-II).
25 -all-trans-retinoic acid between cytoplasmic retinoic acid binding proteins, CRABP-I and CRABP-II, an
26 teins, CRBP and CRBP II, and two cytoplasmic retinoic acid-binding proteins, CRABP-I and CRABP-II, ha
27 te-directed mutant of type-II human cellular retinoic acid binding protein (CRABPII) with Arg111 repl
29 id binding proteins, which includes cellular retinoic acid-binding proteins (CRABPs) and fatty acid b
32 virus type 1 (HIV-1) may inhibit cytoplasmic retinoic acid-binding proteins, cytochrome P450 isoforms
33 ellular retinol binding protein and cellular retinoic acid binding protein enjoy widespread expressio
34 m, the internal binding site of the cellular retinoic acid binding protein I (CRABP I) occurs via a f
40 scape of a model beta-rich protein, cellular retinoic acid-binding protein I (CRABP I), in the presen
42 ream regulatory region of the mouse cellular retinoic acid-binding protein I (crabp-I) gene were exam
43 nol-binding protein (CRBP), and the cellular retinoic acid-binding protein I (CRABPI) have been chara
44 ng mutant of the beta-clam protein, cellular retinoic acid-binding protein I (P39A CRABP I), which fo
45 gulatory DNA element from the mouse cellular retinoic acid-binding protein I gene promoter was identi
47 e actions of TR2-11-f in regulating cellular retinoic acid-binding protein I gene will likely influen
50 ATRA) receptor alpha (RARalpha) and cellular retinoic acid binding protein II (CRABPII) genes are sen
51 l redesign of the binding pocket of Cellular Retinoic Acid Binding Protein II (CRABPII) has provided
60 ic acid-binding protein (CRABP) and cellular retinoic-acid binding protein(II) [CRABP(II)] in the ute
62 uction of two RAR/RXR target genes, cellular retinoic acid binding protein-II and RA 4-hydroxylase, b
63 murine epididymis synthesizes and secretes a retinoic acid-binding protein (mE-RABP) that belongs to
66 of unliganded mutant R111M of human cellular retinoic acid-binding protein type II (apo-CRABPII (R111
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