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1 ferential display, that bears homology to an oxysterol-binding protein.
2 red JAK2 and tyrosine 394 phosphorylation of oxysterol-binding protein-1.
3 -miR-885-5p levels correlated inversely with oxysterol-binding protein 2 (OSBPL2) expression (r = -0.
4                                          The oxysterol binding protein and beta-spectrin PH domains b
5                                   Studies on oxysterol binding protein and oxysterol binding protein-
6 ls regulate cellular functions by binding to oxysterol binding protein and oxysterol binding protein-
7 erto unknown relationship between members of oxysterol-binding protein and VAP33 families of plant pr
8 ing proteins similar to poly(A) polymerases, oxysterol binding proteins, and phosphatidylinositol kin
9               These studies define Insigs as oxysterol-binding proteins, explaining the long-known ab
10                        In non-plant systems, oxysterol-binding proteins have been involved in sterol
11                                          The oxysterol binding protein homologue Kes1p has been impli
12 flip at the TGN appears to be to control the oxysterol-binding protein homologue Kes1/Osh4 and regula
13 nderstanding the possible function(s) of the oxysterol-binding proteins in mediating oxysterol cytoto
14        There are at least twelve homologs of oxysterol-binding proteins in the Arabidopsis genome, bu
15                                              Oxysterol binding protein is a sterol-dependent scaffold
16 H-1 K289R mutation induced the expression of oxysterol binding protein-like 3 (OSBPL3), enhanced SREB
17 e studies identify a previously unrecognized oxysterol-binding protein-mediated mode of activation of
18                                  A homologue oxysterol binding protein of yeast (Osh4) peripherally b
19 ction between ER-localized VAP and endosomal oxysterol-binding protein ORP1L, and is required for the
20 re, the RIDalpha pathway is regulated by the oxysterol-binding protein ORP1L.
21 ol-binding properties of a small Arabidopsis oxysterol-binding protein, ORP3a.
22 se PP2A, the tyrosine phosphatase HePTP, the oxysterol-binding protein OSBP and cholesterol.
23 y a novel substrate of PKD at the Golgi, the oxysterol-binding protein OSBP.
24      The pleckstrin homology (PH) domains of oxysterol binding protein (OSBP) and its relatives have
25 tion complex have been identified, including oxysterol binding protein (OSBP) and phosphatidylinosito
26 CV RNP complexes revealed the association of oxysterol binding protein (OSBP) as one of the component
27 logy with the ligand-binding domain of human oxysterol binding protein (OSBP).
28                                              Oxysterol-binding protein (OSBP) and OSBP-related protei
29                                              Oxysterol-binding protein (OSBP) exchanges cholesterol a
30                                              Oxysterol-binding protein (OSBP) is the founding member
31         Ceramide transfer protein (CERT) and oxysterol-binding protein (OSBP) play a crucial role in
32 rane-protein-associated protein A (VAPA) and oxysterol-binding protein (OSBP) regulate intracellular
33 culum (ER)-Golgi sterol transfer activity of oxysterol-binding protein (OSBP) regulates sphingomyelin
34                                              Oxysterol-binding protein (OSBP) translocates from the c
35                              PI 4-kinase and oxysterol-binding protein (OSBP) were inhibited using RN
36 me encodes seven homologues of the mammalian oxysterol-binding protein (OSBP), a protein implicated i
37 ynamin-1, kinesin, beta-tubulin, beta-actin, oxysterol-binding protein (OSBP)-related protein 2 (ORP2
38 t two similar ER integral membrane proteins, oxysterol-binding protein (OSBP)-related protein 5 (ORP5
39 er of the evolutionarily conserved family of oxysterol-binding protein (OSBP)-related proteins (ORPs)
40         We show that this transport requires oxysterol-binding protein (OSBP)-related proteins (ORPs)
41                                          The oxysterol-binding-protein (OSBP)-related proteins (ORPs)
42 lization, and biological activity of a novel oxysterol-binding protein (OSBP2), and complete the mole
43                                              Oxysterol binding proteins (OSBPs) comprise a large cons
44                                              Oxysterol-binding proteins (OSBPs) and oxysterol-binding
45                                              Oxysterol-binding proteins (OSBPs) have been described i
46               We show here that in yeast the oxysterol-binding proteins Osh1-Osh7 are collectively ne
47       Oxysterol-binding proteins (OSBPs) and oxysterol-binding-protein related proteins (ORPs) are en
48                     Two peptides matching to oxysterol binding protein-related protein 1L (ORP1L) and
49 g to a recently solved structure for a yeast oxysterol binding protein-related protein, Osh4, some me
50     Studies on oxysterol binding protein and oxysterol binding protein-related proteins should lead t
51                                              Oxysterol binding protein-related proteins, including th
52  by binding to oxysterol binding protein and oxysterol binding protein-related proteins.
53                                          The oxysterol-binding protein-related protein (ORP) family i
54 ab7-interacting lysosomal protein (RILP) and oxysterol-binding protein-related protein 1L (ORP1L) are
55                                              Oxysterol-binding protein-related protein 8, which was r
56                                              Oxysterol-binding protein-related proteins (ORPs) have b
57                              Kes1, and other oxysterol-binding protein superfamily members, are invol
58 asome, and OSBPL1A, which encodes a presumed oxysterol-binding protein, were both preferentially expr
59  Mesmin et al. show how a single molecule of oxysterol binding protein, which has a lipid binding dom

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