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1 rker PGP 9.5 and the Schwann cell marker p75 nerve growth factor receptor.
2  cells overexpressing trkA but devoid of p75 nerve growth factor receptor.
3  fibrillary acidic protein, and low-affinity nerve growth factor receptor.
4 Ephrins (EFNs), 8 semaphorins (SEMAs), and 2 nerve growth factor receptors.
5 hese (AG879) is a selective inhibitor of the nerve growth factor receptor and human epidermal growth
6 he binding of nuclear Sp1 to the promoter of nerve growth factor receptor and suppresses its transcri
7 ties to bind stably to RTKs such as the TrkA nerve growth factor receptor and the insulin receptor.
8  of Drosophila orthodenticle gene), p75NGFR (nerve growth factor receptor) and Msx1 (muscle segment h
9 3, 71% coexpressed Trk(A) (the high-affinity nerve growth factor receptor), and 68% coexpressed antig
10 owth factor, platelet-derived growth factor, nerve growth factor receptors, and nonreceptor tyrosine
11 iral vector, NIT, which encodes low-affinity nerve growth factor receptor as an immunoselectable mark
12 totic Schwann cells express the low-affinity nerve growth factor receptor but not myelin-related prot
13 holinesterase, choline acetyltransferase and nerve growth factor receptors, confirming their choliner
14 , consisting of antibody to the low-affinity nerve growth factor receptor conjugated to saporin (192
15                   The data suggest that both nerve growth factor receptors could be involved in the n
16                           Adult C57BL/6N and nerve growth factor receptor-deficient mice.
17 D30 is a member of the tumor necrosis factor/nerve growth factor receptor family and has been propose
18  known as the tumor necrosis factor receptor/nerve growth factor receptor family cysteine-rich region
19 possible role of Fas Ag, a member of the TNF/nerve growth factor receptor family, in monocyte apoptos
20                         Cancer cells without nerve growth factor receptors (gp140TrkA) were not prote
21                                     P75NGFR (nerve growth factor receptor) is a marker for the three
22 rt, including expression of the low-affinity nerve growth factor receptor (L-NGFr) and similar growth
23 ith a retrovirus containing the low-affinity nerve growth factor receptor (LNGFR) and the HSV-TK gene
24 viral vector encoding the human low-affinity nerve growth factor receptor (LNGFR) for selection and a
25 r hierarchical expression of CD271/p75/NGFR (nerve growth factor receptor) marks cells with enriched
26                                      The Trk/Nerve Growth Factor receptor mediates the rapid activati
27 acellular and transmembrane domains of human nerve growth factor receptor (NGFR) and cytoplasmic CD.
28 arkers, CD29, CD44, CD49b, CD49f, CD104, and nerve growth factor receptor (NGFR) are not expressed by
29 with an internal ribosome entry site and the nerve growth factor receptor (NGFR) as a selectable mark
30 receptor (LT beta R) and weakly with the p75 nerve growth factor receptor (NGFR) but not with TNFR1,
31 viral vector carrying the low-affinity human nerve growth factor receptor (NGFR) gene as reporter to
32            The vector also encoded the human nerve growth factor receptor (NGFR) to serve as a cell-s
33 asolateral expression of the apically sorted nerve growth factor receptor (NGFR, p75; extracellular a
34 ) favored the smaller cell population, while nerve growth factor receptor often labeled larger cells.
35 pulations expressing TrkA, the high-affinity nerve growth factor receptor, or TrkC, the neurotrophin-
36 icroscopy and antibodies to the low affinity nerve growth factor receptor p75 (p75), glial fibrillary
37 rophin receptors (trks) and the low-affinity nerve growth factor receptor p75 in developing oligodend
38 erved in the number of ChAT- or low-affinity nerve growth factor receptor (p75(NTR))-immunoreactive p
39 d demyelination, remyelination, Schwann cell nerve growth factor receptor (p75) expression, and endon
40  OECs, selected on the basis of low-affinity nerve growth factor receptor (p75) expression, results i
41 antage of their restricted expression of the nerve growth factor receptor (p75) in conjunction with f
42 pha and beta receptors, and the low-affinity nerve growth factor receptor (p75) were used to study th
43 ell sorting based on their expression of the nerve growth factor receptor (p75), a surface marker for
44 nal amino acids of LET-23 fused to truncated nerve growth factor receptor/P75.
45 acetyltransferase (ChAT) or the low-affinity nerve growth factor receptor (p75NGFR), and the number o
46 istochemistry for expression of low-affinity nerve growth factor receptor (p75NGFR), neural cell adhe
47 lopment, including basal cells (low-affinity nerve growth factor receptor, p75NGFR), postmitotic imma
48                          Here we report that nerve growth factor receptor signaling induces nuclear t
49 ts were CD45(low) and expressed low-affinity nerve growth factor receptor, similar to in vivo BM MPCs
50 first demonstration that a member of the TNF/nerve growth factor receptor superfamily can use an IRS-
51 e protein of the tumor necrosis factor (TNF)/nerve growth factor receptor superfamily that induces ap
52 elongs to the tumor necrosis factor receptor/nerve growth factor receptor superfamily.
53  vector, AAV-tNGFR, carrying a truncated rat nerve growth factor receptor (tNGFR) cDNA as a cell surf
54  assay and by Northern blotting; a truncated nerve growth factor receptor (tNGFR), whose expression w
55 sphorylation of APP by overexpression of the nerve growth factor receptor Trk A in 293T cells promote
56 we show that individual tyrosines within the nerve growth factor receptor TrkA are phosphorylated in
57                      We stably expressed the nerve growth factor receptor trkA or a truncated trkA la
58 athways involved in survival signalling, the nerve growth factor receptor TrkA was expressed in Rat-1
59 oma cells newly expressing the high affinity nerve growth factor receptor trkA, using Fura-2 fluoresc
60 opaminergic cells, through the activation of nerve growth factor receptor TrkA.
61 gy domain transcription factor RUNX1 and the nerve growth factor receptor TrkA.
62 re initially marked by the expression of the nerve growth factor receptor TrkA.
63 he NTRK1 gene that encodes the high-affinity nerve growth factor receptor (TRKA protein).
64 owth factor-I (IGF-I) receptor (IGF-IR), and nerve growth factor receptor (TrkA).
65 sine phosphorylation sequences of either the nerve growth factor receptor, TrkA (tropomyosin receptor
66                                          The nerve growth factor receptor, TrkA, has a critical role
67              We found that the high-affinity nerve growth factor receptor, TrkA, is down-regulated by
68 otic properties via mechanisms involving the nerve growth factor receptors (tropomyosin-related kinas
69     DHEA was previously shown to bind to the nerve growth factor receptor, tropomyosin-related kinase
70 factor 1, and nerve growth factor and of the nerve growth factor receptors, tyrosine kinase receptor
71                Immunoreactivity to TrkA, the nerve growth-factor receptor, was observed in nonneurona
72  kinase A receptor tyrosine kinase (TrkA), a nerve growth factor receptor whose internalization and t
73 hat links fibroblast growth factor (FGF) and nerve growth factor receptors with the Ras/mitogen-activ
74 n linking fibroblast growth factor (FGF) and nerve growth factor receptors with the Ras/mitogen-activ

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