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1 we examined the cellular nuclear factor 45 (NF45).
2 hesis that this pathway is regulated by NF90/NF45.
3 sion, exists as a heterodimeric complex with NF45.
4 teins together with the less-studied protein NF45.
5 ut not of NF110 greatly reduces the level of NF45.
6 he NF90 proteins, including NF110, NF90, and NF45.
7 at in IBDV-infected cells the mainly nuclear NF45 accumulated at the sites of viral replication in th
9 show that heterodimeric core complexes, NF90-NF45 and NF110-NF45, exist within larger complexes that
12 m affinity purification, we identified human NF45 and NF90 as components of precursors to 60S (pre-60
14 binding domains of NF90, while depletion of NF45 and NF90 by RNA interference leads to a defect in 6
16 of 60S subunit biogenesis, downregulation of NF45 and NF90 leads to a p53 response, accompanied by in
17 NA-binding subunits were identified as NF90, NF45 and systemic lupus erythematosis autoantigens, Ku80
19 sitely dependent on the levels of endogenous NF45 (and to a lesser degree NF90), because HS4-dependen
20 e interleukin enhancer binding factors ILF2 (NF45) and ILF3 (NF90/NF110) have been implicated in vari
21 mplementary DNAs encoding nuclear factor 45 (NF45) and NF90 were used to generate (35)S-methionine-la
22 M, hnRNP H, hnRNP C, Matrin3, NF110/NFAR-2, NF45, and DDX5, all approximately equimolar to Rbfox.
23 associated regulatory proteins p68, hnRNPA1, NF45, and NF90 in nuclei of PDAC and other tumor cells.
24 A granule assembly and disassembly by NFAR2, NF45, and phosphorylation at double-stranded RNA-activat
25 ecipitation analysis demonstrates that NF90, NF45, and PKR form a complex in both nuclear and cytosol
26 dues on NF90 that make up its interface with NF45 are conserved in two related proteins, spermatid pe
28 howed that NF90 and its heteromeric partner, NF45, are predominantly nuclear and largely chromatin-as
31 dentified in complex with nuclear factor 45 (NF45) as a sequence-specific DNA-binding protein, NF90 c
32 ulation and bound nuclear factor (NF) 90 and NF45, as demonstrated by DNA affinity chromatography cou
34 ic nuclear factor (NF) 90/NF45 complex (NF90/NF45) binds nucleic acids and is a multifunctional regul
36 ease of virus yield, our study suggests that NF45, by association with viral proteins, is part of a y
38 The heterodimeric nuclear factor (NF) 90/NF45 complex (NF90/NF45) binds nucleic acids and is a mu
40 isk strains of HPV utilize the cellular NF90/NF45 complex for viral E6 expression in infected cervica
42 45 as an unstable regulatory subunit of NF90-NF45 complexes and uncovered their critical role in norm
48 odimeric core complexes, NF90-NF45 and NF110-NF45, exist within larger complexes that are more labile
55 esults of this study suggest that the DRBP76:NF45 heterodimer selectively blocks HRV2 IRES-driven tra
56 system, DNA end joining was reduced by NF90/NF45 immunodepletion or by RNA digestion to an extent si
60 h the same binding interface, revealing that NF45 is able to form a variety of cellular complexes wit
61 d site-specific mutants, we demonstrate that NF45 is also able to recognize SPNR and Zfr through the
68 tro differentiated Th2 cells from wild-type, NF45(+/-), or NF90(+/-) mice showed that HS4 activity wa
70 th dsRNA 2 (NFAR2), and we demonstrated that NF45 promotes disassembly of RNA granules, whereas NFAR2
74 fering RNA(siRNA)-mediated downregulation of NF45 resulted in an approximately 5-fold increase of vir
80 t were identified, 4 (RACK1, Ku70, RPS3, and NF45) were expressed in rabbit reticulocyte lysate, bact
81 2 became dissociated from nuclear factor 45 (NF45), which was requisite for NFAR reshuttling, causing
82 ey copurified with the smaller NFAT subunit, NF45, which did not bind VA RNAII, and with an unidentif
83 not result in a cytoplasmic accumulation of NF45, which, among other data, showed that recruitment o
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