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1 d testis-associated receptor (RTR)/germ cell nuclear factor is a nuclear orphan receptor that plays a
2                 NLI/Ldb1, a widely expressed nuclear factor, is a potential mediator of long-range in
3 differentiation-related transcription factor nuclear factor I-A (NFI-A) controls MDSC expansion durin
4                     Previously we identified nuclear factor I-A (NFIA) as a key regulator of developm
5 n the flanking 5' untranslated region of the nuclear factor I/A (NFIA) gene, a strong candidate gene
6 /Notch-like EGF repeat containing (Dner) and nuclear factor I/A (Nfia), that are each heavily express
7 Gpr85 (G protein-coupled receptor 85), Nfia (nuclear factor I/A), and Cd93.
8 ir core element containing binding sites for nuclear factor I- and nuclear receptor-like factors.
9 rotein gene promoters have binding sites for nuclear factor I, as well as the glucocorticoid receptor
10                                        NFIB (nuclear factor I B) is a NFI transcription factor family
11  avian myeloblastosis viral oncogene homolog-nuclear factor I/B (MYB-NFIB) gene fusion that activates
12 lly cell-specific isoform usage, identifying nuclear factor I/B (NFIB) as a regulator of megakaryocyt
13  of a novel, oncogenic transcription factor, Nuclear factor I/B (Nfib), in the mouse SCLC model and i
14 tion factors, Cut-like homeobox 1 (Cux1) and nuclear factor I/B (Nfib).
15    The discovery of the unique role of Nfic (nuclear factor I C; a transcriptional factor) in control
16 toblast differentiation with upregulation of nuclear factor I/C (Nfic).
17              Moreover, we show that the same nuclear factor is involved in these DNA-protein interact
18              Nuclear proteins related to the nuclear factor I (NF1) family of transcription factors b
19 oRE have demonstrated the importance of both nuclear factor I (NFI) and STAT5 as well as cooperative
20 r region contains critical binding sites for nuclear factor I (NFI) and thyroid transcription factor
21                                          Six nuclear factor I (NFI) binding sites occur in sequences
22 , CpG-dinucleotide content (CpGs), potential nuclear factor I (NFI) binding sites, and potential Z-DN
23                                              Nuclear factor I (NFI) binds to a region of the phosphoe
24  and -153 on the TTF-1 promoter contains two nuclear factor I (NFI) elements whose function is involv
25                 Transcription factors of the Nuclear Factor I (Nfi) family are important for the deve
26                                              Nuclear factor I (NFI) family members are transcription
27                             We now show that nuclear factor I (NFI) family members bind to both indiv
28                                          The Nuclear Factor I (NFI) family of site-specific DNA-bindi
29                                The conserved nuclear factor I (NFI) family of transcription factors i
30                                          The nuclear factor I (NFI) family of transcription factors i
31                                          The nuclear factor I (NFI) family of transcription factors p
32      Here we show that Nfix, a member of the nuclear factor I (Nfi) family of transcription factors,
33 he previously identified binding site of the nuclear factor I (NFI) family of transcription factors.
34               The phylogenetically conserved nuclear factor I (NFI) family of transcription/replicati
35                        Here we show that the nuclear factor I (NFI) family of transcriptional regulat
36               The phylogenetically conserved nuclear factor I (NFI) gene family encodes site-specific
37                         Three members of the Nuclear Factor I (Nfi) gene family of transcription fact
38                                              Nuclear factor I (NFI) genes are expressed in multiple o
39  the rat homolog of CYP2A13, is regulated by nuclear factor I (NFI) in a tissue-specific manner.
40                                              Nuclear factor I (NFI) is a family of transcription fact
41              These studies demonstrated that nuclear factor I (NFI) proteins are required for both tr
42                                              Nuclear factor I (NFI) proteins constitute a family of s
43 mal transcriptional activation potentials of nuclear factor I (NFI) proteins encoded by each of the f
44         To better understand the function of nuclear factor I (NFI) proteins in transcription, we hav
45 a6 transcription required a binding site for nuclear factor I (NFI) proteins.
46                                          The Nuclear factor I (NFI) transcription factor family consi
47                          Four genes encoding nuclear factor I (NFI) transcription-replication protein
48 re TFs of the basic helix-loop-helix (bHLH), nuclear factor I (NFI), SOX, and FOX families, with CREs
49 ing sites, including seven binding sites for nuclear factor I (NFI), the specific sequences within th
50  in the fragment -612/-580, which contains a nuclear factor I (NFI)-binding site at the region -594/-
51 dentified multiple, developmentally distinct nuclear factor I (NFI)-containing protein complexes from
52      Using microarrays, we have identified a nuclear factor I (NFI)-regulated temporal switch program
53 orming regions (ZDRs) and promoter sites for nuclear factor-I (NFI) are correlated with the locations
54                                              Nuclear factor-I (NFI) binds to the phosphoenolpyruvate
55 microarray analyses, here we have shown that nuclear factor I, subtype A (NFI-A), a member of the NFI
56  using mice lacking the transcription factor nuclear factor I/X (Nfix).
57                                              Nuclear factor I-X3 (NFI-X3) is a newly identified splic

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