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1 served with elastase, beta-galactosidase, or cellular retinoic acid binding protein.
2 n of a model aggregation-prone protein, P39A cellular retinoic acid-binding protein.
3                                              Cellular retinoic acid binding protein 1 (Crabp1) gene i
4                            We determine that cellular retinoic acid binding protein 1 (Crabp1) mediat
5 munohistochemical staining for beta-catenin, cellular retinoic acid binding protein 1 (CRABP1), cellu
6 otein M and in the retinoic acid-transporter cellular retinoic acid binding protein 1 (p < 0.05 vs. N
7  aromatic ladder in the beta-barrel protein, cellular retinoic acid-binding protein 1 (CRABP1), as a
8 otein-7, claudin-4, collagen type IX alpha2, cellular retinoic acid binding protein-1, forkhead box J
9  embryos with a cardiac neural crest marker, cellular retinoic acid-binding protein-1, shows that the
10 t for treatment, we investigated the role of cellular retinoic acid binding protein 2 (CRABP2) in MPN
11 ore, very selectively and efficiently modify cellular retinoic acid binding protein 2 (CRABP2), both
12 ar retinoic acid binding protein 1 (CRABP1), cellular retinoic acid binding protein 2 (CRABP2), fatty
13                                              Cellular retinoic acid-binding protein 2 (CRABP2) potent
14     We show that HuR directly interacts with cellular retinoic acid-binding protein 2 (CRABP2), a pro
15 (ileal fatty acid-binding protein), CRABP I (cellular retinoic acid-binding protein), and CRBP II (ce
16 eins: the retinoic acid receptors (RAR), and cellular retinoic acid binding proteins (CRABP-I and CRA
17 has demonstrated cell specific expression of cellular retinoic acid-binding protein (CRABP) and cellu
18 eceptor retinoic acid receptor (RAR) and the cellular retinoic acid-binding protein (CRABP) II, in th
19 teins: the retinoic acid receptors (RAR) and cellular retinoic acid-binding proteins (CRABP-I and CRA
20 are critical for binding of retinoic acid by cellular retinoic acid-binding proteins (CRABP-I and CRA
21 tinoids were evaluated in binding assays for cellular retinoic acid-binding proteins (CRABP-I and CRA
22                            The expression of cellular retinoic-acid-binding protein (CRABP) and cellu
23 e of a site-directed mutant of type-II human cellular retinoic acid binding protein (CRABPII) with Ar
24 ca sexta, which is related to the vertebrate cellular retinoic acid binding proteins (CRABPs).
25 lular lipid binding proteins, which includes cellular retinoic acid-binding proteins (CRABPs) and fat
26                                              Cellular retinoic acid-binding proteins (CRABPs) I and I
27                                              Cellular retinoic acid-binding proteins (Crabps) transpo
28         Cellular retinol binding protein and cellular retinoic acid binding protein enjoy widespread
29  exit from, the internal binding site of the cellular retinoic acid binding protein I (CRABP I) occur
30 the role of local sequence in the folding of cellular retinoic acid binding protein I (CRABP I).
31                                              Cellular retinoic acid binding protein I (CRABPI) belong
32                                          The cellular retinoic acid binding protein I gene is induced
33                           The involvement of cellular retinoic acid-binding protein I (CRABP I) in th
34                                    Mammalian cellular retinoic acid-binding protein I (CRABP I) was m
35 ding landscape of a model beta-rich protein, cellular retinoic acid-binding protein I (CRABP I), in t
36 , we have characterized Pro-->Ala mutants of cellular retinoic acid-binding protein I (CRABP I).
37  its upstream regulatory region of the mouse cellular retinoic acid-binding protein I (crabp-I) gene
38 ular retinol-binding protein (CRBP), and the cellular retinoic acid-binding protein I (CRABPI) have b
39 low-folding mutant of the beta-clam protein, cellular retinoic acid-binding protein I (P39A CRABP I),
40 ative, regulatory DNA element from the mouse cellular retinoic acid-binding protein I gene promoter w
41 d to a hormone response element of the mouse cellular retinoic acid-binding protein I gene promoter.
42        The actions of TR2-11-f in regulating cellular retinoic acid-binding protein I gene will likel
43                                              Cellular retinoic acid-binding proteins I and II (CRABP-
44                   The structure of human apo-cellular retinoic acid binding protein II (apo-CRABPII)
45 ic acid (ATRA) receptor alpha (RARalpha) and cellular retinoic acid binding protein II (CRABPII) gene
46   Rational redesign of the binding pocket of Cellular Retinoic Acid Binding Protein II (CRABPII) has
47                     Protein reengineering of cellular retinoic acid binding protein II (CRABPII) has
48                             Reengineering of cellular retinoic acid binding protein II (CRABPII) to b
49 erentiation in part through deacetylation of cellular retinoic acid binding protein II (CRABPII).
50                                              Cellular retinoic acid-binding protein II (CRABP-II) is
51                                              Cellular retinoic acid-binding protein II (CRABP-II) und
52 ic transactivation of retinoid target genes, cellular retinoic acid-binding protein II and p21.
53                                          The cellular retinoic acid-binding protein II mRNA levels ar
54                   It has been suggested that cellular retinoic acid-binding protein (II) (CRABP(II))
55 ar retinoic acid-binding protein (CRABP) and cellular retinoic-acid binding protein(II) [CRABP(II)] i
56                         The up-regulation of cellular retinoic acid binding protein-II (CRABP-II) has
57  acid induction of two RAR/RXR target genes, cellular retinoic acid binding protein-II and RA 4-hydro
58                              The role of the cellular retinoic acid binding protein type II (CRABPII)
59 tructure of unliganded mutant R111M of human cellular retinoic acid-binding protein type II (apo-CRAB

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