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1 N-beta promoter and its coactivator protein (CREB-binding protein).
2 CBP (cAMP-response element-binding protein (CREB)-binding protein).
3 F-kappaB by physically interacting with p300/CREB binding protein.
4 omplexes on binding to the KIX domain of the CREB binding protein.
5 the transcriptional regulators E1A(p300) and CREB binding protein.
6 the levels of NF-kappaB p65 associated with CREB-binding protein.
7 gated the transcription-activating effect of CREB-binding protein.
8 ated its binding to another IDP, NCBD of the CREB-binding protein.
9 n domains of the transcriptional coregulator CREB-binding protein.
10 ID folding upon binding to the KIX domain of CREB-binding protein.
11 -catenin to its transcriptional coactivator, CREB-binding protein.
12 tenin by PKA, promoting its interaction with CREB-binding protein.
13 osed of phosphorylated ATF-2, C/EBPbeta, and CREB-binding protein.
14 ver, these lysines become acetylated by p300/CREB-binding protein.
15 go structural changes when it interacts with CREB-binding protein.
16 3 bound to its transcriptional cofactor, the CREB-binding protein.
17 ses and the nuclear calcium signaling target CREB-binding protein.
18 d binding of the transcriptional coactivator CREB-binding protein 1 to transcriptional complexes cont
19 teraction of the Smad complex with p300/CBP (CREB-binding protein), a co-activator with intrinsic ace
20 nteract with the transcriptional coactivator CREB-binding protein, a function not shared with the clo
22 ate (cAMP) response element-binding protein (CREB)-binding protein-a histone acetyltransferase (HAT)
23 of a p53 mutant with mutations of known p300/CREB-binding protein acetylation sites demonstrated that
25 strated previously that SRCAP (SNF-2-related CREB-binding protein activator protein), the human ortho
26 e, EMSAs demonstrated that the attachment of CREB binding protein and activating transcription factor
27 pha, RNA polymerase II, and the coactivators CREB binding protein and p300 to the CD40 promoter, as w
28 as accompanied by reduced recruitment of the CREB-binding protein and altered post-translational modi
30 rs including the histone acetyl transferases CREB-binding protein and NCoA-1 and other proteins such
31 We also noted that the acetyltransferases CREB-binding protein and p300 both can acetylate ERK1/2.
32 t IRF3 and IRF7, which with the coactivators CREB-binding protein and P300 form the virus-activated f
33 s, c-Jun, and the histone acetyltransferases CREB-binding protein and p300 to the IL-6 promoter in vi
34 f the nuclear co-activator binding domain of CREB-binding protein and the activation domain from the
35 n the reaction between the KIX domain of the CREB-binding protein and the transactivation domain of c
36 ade of the transcriptional coactivators CBP (CREB binding protein) and p300 as an alternative approac
37 7ac at the promoter, recruits the C/EBPbeta (CREB-binding protein) and CBP transcription factors and
38 utoinhibition to allow interaction with CBP (CREB-binding protein) and facilitates phosphorylation at
39 he binding epitopes in the ZZ domain of CBP (CREB-binding protein) and SUMO1 using NMR spectroscopy.
40 tivity was augmented by the coactivator CBP (CREB-binding protein) and was dependent on the p38 pathw
41 romatin immunoprecipitations employing CREB, CREB-binding protein, and acetylated H4 antibodies ident
42 anscriptional synergism with the coactivator CREB-binding protein, and rescue of susceptibility to vi
43 r of the thyroid and retinoic acid receptor, CREB-binding protein, and steroid receptor coactivator 1
44 prevents its interaction with a coactivator, CREB-binding protein, and subsequently reduces the BDNF
45 te transcription factors, the recruitment of CREB-binding protein, and the acetylation of histone H3
46 that include histone acetyltransferase p300/CREB-binding protein, as a critical mediator of acetylat
48 at acetylation of histone H3 by the p300 and CREB-binding protein associated factor, PCAF, suppressed
50 Thr312 phosphorylation, acetylation by p300/CREB binding protein-associated factor, and detachment f
51 the subsequent interaction of Fli1 with p300/CREB-binding protein-associated factor (PCAF) and an ace
53 f WRN(K577M), diminishes recruitment of p300/CREB-binding protein-associated factor (PCAF) and positi
54 r of the tumor suppressor p53, inhibits p300/CREB-binding protein-associated factor (PCAF)-mediated p
55 report that after differentiation, the p300/CREB-binding protein-associated factor is recruited by F
57 ely 1000-fold more efficient than PCAF (p300/CREB-binding protein-associated factor)-mediated acetyla
58 HDAC4, and a histone acetyltransferase, p300/CREB-binding protein-associated factor, associate with c
59 AMP response element-binding protein (CREB)/CREB-binding protein binding, accumulation of activating
60 inducible domain interacting (KIX) domain of CREB binding protein binds to multiple intrinsically dis
61 om displacement of Smad binding to DNA or to CREB-binding protein but from the recruitment of Evi-1 b
62 caused by mutations in the gene encoding the CREB binding protein (CBP) and characterized by mental r
63 responsive element binding protein 1 (CREB)/CREB binding protein (CBP) and inhibits PAX7 transcripti
64 f the histone acetylase coactivator paralogs CREB binding protein (CBP) and p300 to the promoter.
65 IF1alpha protein and recruiting coactivators CREB binding protein (CBP) and p300, and RNA polymerase
69 structures of the lead compound bound to the CREB binding protein (CBP) and the first bromodomain of
70 esult of its avid binding to the coactivator CREB binding protein (CBP) and the mammalian mediator co
71 ctor 4alpha (HNF4alpha), and the coactivator CREB binding protein (CBP) are required for the glucose
72 hosphorylate the transcriptional coactivator CREB binding protein (CBP) at serine 436 via PKC iota/la
75 the Notch1 gene, where it serves to recruit CREB binding protein (CBP) histone acetyltransferase.
76 or the histone acetyltransferase activity of CREB binding protein (CBP) in long-term memory and plast
79 cible domain interacting (KIX) domain of the CREB binding protein (CBP) is capable of simultaneously
82 We found that the monoallelic deletion of CREB binding protein (CBP) results in the induction of E
83 for recruiting the histone acetyltransferase CREB binding protein (CBP) to the FoxM1B transcriptional
84 the latter of which are known to recruit the CREB binding protein (CBP) transcriptional coactivator.
86 tivity (ir) detecting the Fos, pCREB, egr-1, CREB binding protein (CBP), and calbindin-D (28K) protei
87 AMP response element-binding protein (CREB), CREB binding protein (CBP), and histone deacetylases (HD
88 ATA-1 (FOG-1), the histone acetyltransferase CREB binding protein (CBP), and the key component of the
89 h as the general transcriptional coactivator CREB binding protein (CBP), its paralogue p300, and the
90 effects of TGFbeta+FSK on activated pSmad3, CREB binding protein (CBP), MAPKs, and RhoA were determi
93 at polyglutamine-expanded AR interferes with CREB binding protein (CBP)-mediated transcription of vas
97 Phosphorylation of CREB at Ser133 recruits CREB binding protein (CBP)/p300 coactivators to activate
98 53 function requires an association with the CREB binding protein (CBP)/p300 coactivators, and a tern
100 strongly recruits the cellular coactivators CREB binding protein (CBP)/p300 to the viral promoter co
101 l transcription factor binding domain of the CREB binding protein (CBP)/p300, KIX, we report the firs
102 ogous cAMP-response element-binding protein (CREB) binding protein (CBP) gene together are mutated in
104 include cyclic-AMP response element binding (CREB) binding protein (CBP)/p300 and the retinoblastoma
105 , the cAMP response element binding protein (CREB) binding protein (CBP)/p300 family and the recently
106 ts in cAMP response element-binding protein (CREB) binding protein (CBP; an essential cofactor for ac
107 sive element), activate CRE-binding protein (CREB)-binding protein (CBP) and gene activities causing
108 ate (cAMP) response element-binding protein (CREB)-binding protein (CBP) and is expressed in the deve
109 sine monophosphate response element binding (CREB)-binding protein (CBP) and p300 are multidomain tra
110 cyclic-AMP response element-binding protein (CREB)-binding protein (CBP) and p300, which activate tra
112 y the cAMP-response element binding protein (CREB)-binding protein (CBP) mediates sensitivity to coca
115 cyclicAMP response element binding protein (CREB)-binding protein (CBP), a histone acetyltransferase
116 p300/cAMP-response element-binding protein (CREB)-binding protein (CBP)-associated factor localize d
117 duced cAMP response element-binding protein (CREB)-binding protein (CBP)-mediated H3K9/14 hyperacetyl
118 tenin/cAMP-response element-binding protein (CREB)-binding protein (CBP)-mediated transcription, but
120 he Drosophila melanogaster acetyltransferase CREB-binding protein (CBP) acetylates histone H3 lysine
123 to the nucleus where it forms a complex with CREB-binding protein (CBP) and acetylated RelA/p65 causi
125 ocks the interaction between the coactivator CREB-binding protein (CBP) and beta-catenin, resulting i
126 ershift EMSA identified FOXA2 to rs327T, and CREB-binding protein (CBP) and CCAAT displacement protei
127 of the histone acetyltransferase paralogues CREB-binding protein (CBP) and E1A-binding protein P300
128 inds to the MHC-II histone acetyltransferase CREB-binding protein (CBP) and is critical for the recru
130 acts with transcriptional co-activators like CREB-binding protein (CBP) and its paralog p300 in addit
132 association with transcription coactivators CREB-binding protein (CBP) and its paralog p300 to activ
133 resulting in recruitment of the coactivators CREB-binding protein (CBP) and p300 and subsequent activ
137 he related histone acetyltransferases (HATs) CREB-binding protein (CBP) and p300 are required for end
140 s cells, N-terminal E1A mutants defective in CREB-binding protein (CBP) and p300 binding capacity exh
141 s of specific acetyltransferases such as the CREB-binding protein (CBP) and p300 have been well docum
143 of the related transcriptional coactivators CREB-binding protein (CBP) and p300, an oxygen-regulated
145 e T3-induced recruitment of the co-activator CREB-binding protein (CBP) and release of nuclear recept
146 o be composed of the enzymatic activities of CREB-binding protein (CBP) and SMARCAD1, which belongs t
149 highly related acetyltransferases, p300 and CREB-binding protein (CBP) are coactivators of signal-re
150 istone acetyltransferase paralogues p300 and CREB-binding protein (CBP) are key transcriptional co-ac
151 tional coactivator/histone acetyltransferase CREB-binding protein (CBP) as being highly expressed in
153 l synergy was mediated by the recruitment of CREB-binding protein (CBP) coactivator through the HNF6
154 cruitment of the normally rate-limiting p300/CREB-binding Protein (CBP) coactivator to the transcript
156 Because p300 does not substitute for all CREB-binding protein (CBP) functions, we investigated wh
157 ouse MRTF-A(-/-) cells or upon inhibition of CREB-binding protein (CBP) histone acetyltransferase (HA
158 mmunoprecipitation assays revealed that p300/CREB-binding protein (CBP) histone acetyltransferases an
159 ls SATB1 family protein forms a complex with CREB-binding protein (CBP) important in transcriptional
160 REB function via brain viral delivery of the CREB-binding protein (CBP) improves learning and memory
161 e present study identifies the importance of CREB-binding protein (CBP) in facilitating TNF-alpha-med
162 eracts with the transcriptional co-activator CREB-binding protein (CBP) in nuclear speckle domains in
163 tivity of the histone acetyltransferase p300/CREB-binding protein (CBP) in regulating promoter-proxim
166 y reported that the lysine acetyltransferase CREB-binding protein (CBP) is required for HIF-2alpha ac
168 is associated with increased binding of p300/CREB-binding protein (CBP) molecules at the Fos promoter
172 Apoptosis was mediated by recruitment of CREB-binding protein (CBP) to the gamma-activating seque
174 gr-1, and Sp1 transcription factors and that CREB-binding protein (CBP) transcriptional complexes for
175 al coactivator and histone acetyltransferase CREB-binding protein (CBP) via the CREB-binding domain o
176 criptional coactivator and acetyltransferase CREB-binding protein (CBP) via the KIX domain of CBP.
177 grated by the acetyltransferase co-activator CREB-binding protein (CBP) was suggested by bioinformati
178 causes to the interactions of KIX domain of CREB-binding protein (CBP) with phosphorylated kinase in
179 nin with either the Kat3 coactivator CREBBP (CREB-binding protein (CBP)) or the highly homologous EP3
181 ntly reduced by siRNA-mediated knock down of CREB-binding protein (CBP), a transcriptional co-activat
182 of co-activator complexes containing p300 or CREB-binding protein (CBP), and increased acetylation of
184 ein tethered to the LacO locus recruits p300/CREB-binding protein (CBP), induces histone hyperacetyla
185 that is acetylated by its coactivator, p300/CREB-binding protein (CBP), resides in the C-terminal tr
186 kappaB and STAT1, as well as the coactivator CREB-binding protein (CBP), to facilitate transcriptiona
187 ingly, the nuclear transcription coactivator CREB-binding protein (CBP), which can bind to Nrf2 trans
188 rk, we showed that survivin is acetylated by CREB-binding protein (CBP), which restricts its localiza
189 o role of the histone acetyltransferase p300/CREB-binding protein (CBP), which was reported to be a c
190 omoting its association with the coactivator CREB-binding protein (CBP), which was required to regula
191 lear accumulation of survivin is promoted by CREB-binding protein (CBP)-dependent acetylation on lysi
192 ously reported that HOX proteins can inhibit CREB-binding protein (CBP)-histone acetyltransferase-med
210 usly demonstrated that human SREBPs bind the CREB-binding protein (CBP)/p300 acetyltransferase KIX do
211 cription factor complex and its coactivators CREB-binding protein (CBP)/p300 and mixed-lineage leukem
215 es and recruits transcriptional coactivators CREB-binding protein (CBP)/p300 to effect potent transcr
216 activation recruits CREB and the coactivator CREB-binding protein (CBP)/p300 to the endogenous CNS-1.
217 Smads and beta-catenin/TCF4 was dependent on CREB-binding protein (CBP)/P300, as demonstrated by over
218 iggers IRF-3 to react with the coactivators, CREB-binding protein (CBP)/p300, to form a complex that
219 tion of p65 at Thr-305 and Ser-319 increased CREB-binding protein (CBP)/p300-dependent activating ace
223 of candidate enhancer regions using data on CREB-binding protein co-factor binding or ATAC-seq chrom
225 oding the histone acetyl-transferases (HATs) CREB binding protein (CREBBP) and EP300 are recurrently
226 these are two compounds, ICG-001, targeting CREB binding protein (CREBBP), and PKF118-310, targeting
230 Importantly, we discovered that Drosophila CREB-binding protein (dCBP) is a co-activator for Caudal
232 beta-catenin C-terminal interactions inhibit Creb-binding protein-dependent p53 acetylation and p53 t
233 f the homologous Kat3 co-activators, p300 or CREB-binding protein, differentially regulates maintenan
234 activator in IFN signaling, thereby inducing CREB-binding protein downregulation in EBV-transformed B
236 uclear co-activator binding domain (NCBD) of CREB-binding protein, each forming three well-defined al
237 ly showed that in quiescent cells, p300/CBP (CREB-binding protein)family coactivators repress c-myc a
238 The nuclear coactivator binding domain of CREB binding protein folds into remarkably different str
239 ors depleted the transcriptional coactivator CREB-binding protein from the NF-kappaB complex in the n
240 , and cAMP-response element-binding protein (CREB)-binding protein in the common regulatory region of
241 estigated the role of p300 and its homologue CREB-binding protein in prostate cancer cells treated ch
242 5, and 4 and the transcriptional coactivator CREB-binding protein in the BMP-responsive element-prote
243 demonstrated that overexpression of p300 or CREB-binding protein increases the PKCdelta promoter act
246 Moreover, overexpression of TTP blocked CREB-binding protein-induced acetylation of p65/NF-kappa
247 and FRET microscopy for monitoring CREB and CREB-binding protein interaction in the nuclei of live c
249 a1 promoter, suggesting that competition for CREB-binding protein may contribute to STAT1-dependent d
250 phate (cAMP) response element binding (CREB)/CREB binding protein-mediated expression of the purinerg
252 nd the nuclear coactivator binding domain of CREB-binding protein (NCBD), along with their bimolecula
253 itment of HDAC1 and increased recruitment of CREB-binding protein on the Mcp-1 promoter in TTP(-/-) c
254 fnb1, along with IFN regulatory factor-3 and CREB binding protein only during concomitant UPR and LPS
255 nteracts with co-activators such as p300 and CREB-binding protein or co-repressors such as HDAC3.
256 Overexpression of the acetyltransferases CREB-binding protein or p300 resulted in the acetylation
258 ltered, GTP mutants no longer cooperate with CREB-binding protein, p300, and pCAF and are defective i
259 and the recruitment of STAT-3, c-Jun, c-Fos, CREB-binding protein, p300, and RNA polymerase II to the
260 ts of the transcriptional machinery, such as CREB-binding protein, p300, RNA polymerase II and histon
261 cting (KIX) domain of the master coactivator CREB binding protein/p300 is a conformationally dynamic
262 dition, the activation potential of SOX9 and CREB binding protein/p300 on the cd-rap promoter was enh
263 nted recruitment of IFN regulatory factor-3, CREB binding protein/p300, and transcriptional machinery
266 onventional global transcription coactivator CREB-binding protein/p300 (CBP/p300) that binds to the H
268 MLL1 (mixed lineage leukemia 1) and MLL3 and CREB-binding protein/p300 bind to the promoter of HOTAIR
269 arly growth response factor 1, together with CREB-binding protein/p300 coactivators, bind to Ealpha a
272 iting HIF, and the oncogenic factor, CITED2 (CREB-binding protein/p300 interacting transactivator wit
273 However, overexpression of the coactivator CREB-binding protein/p300 reduced the inhibitory actions
274 mediates the recruitment of the coactivators CREB-binding protein/p300 to the HTLV-1 promoter, locate
275 rs by SoxE proteins, displacing coactivators CREB-binding protein/p300 while promoting the recruitmen
276 knocking down the histone acetyltransferase CREB-binding protein/p300, known to target H3K27, render
277 iated protein by interaction cloning was the CREB-binding protein/p300-interacting transactivator wit
279 B/CBP (cAMP-response element-binding protein/CREB-binding protein) pathway that regulates transcripti
280 lear translocation, dimerization, binding to CREB-binding protein, recognition of DNA, and induction
282 association of activated C/EBPbeta with p300/CREB-binding protein requires the LX2 and AID auto-inhib
283 o the cAMP response element binding protein (CREB)-binding protein reveals that the pLxIS motif also
284 es against CREB, phospho-CREB, and CBP/p300 (CREB-binding protein) showed that these proteins associa
285 ivity, strengthened the affinity of Smad3 to CREB-binding protein, suggesting that linker phosphoryla
286 to the KIX-binding domain of the coactivator CREB-binding protein, supporting the binding and traffic
287 ions affecting the transcriptional regulator CREB binding protein, the small GTPase dynamin, the cyto
288 kappaB activation by blocking the binding of CREB binding protein to the NF-kappaB complex, thereby l
291 ter of CNTF, and the recruitment of CREB and CREB-binding protein to the CNTF promoter by aspirin sug
293 the retinoblastoma protein family, the p300/CREB-binding protein transcriptional coactivators, and t
294 IF function requires the recruitment of p300/CREB-binding protein, two coactivators with histone acet
295 rdered nuclear coactivator binding domain of CREB binding protein (UniProt CBP_MOUSE P45481 ), residu
297 of Brd4 and BrdT, and the KIX domain of the CREB-binding protein) using commercially available fluor
299 ubdomains interact with the coactivator CBP (CREB-binding protein), which is required for NFATp-depen
300 itment of a transcriptional coactivator CBP (CREB binding protein) without modulation of CREB binding