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Drug
Enzyme
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Target Concepts:
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Query: UNIPROT:P04637 (
p53
)
77,613
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
We found that
ZBTB2
, a POK family transcription factor, is a potent repressor of the ARF-HDM2-
p53
-p21 pathway important in cell cycle regulation.
ZBTB2
repressed transcription of the ARF,
p53
, and p21 genes, but activated the HDM2 gene. In particular,
ZBTB2
repressed transcription of the p21 gene by acting on the two distal
p53
binding elements and the proximal Sp1 binding GC-box 5/6 elements.
ZBTB2
directly interacted with Sp1 via its POZ domain and zinc fingers, which was important in the repression of transcription activation by Sp1.
ZBTB2
and Sp1 competed with each other in binding to the GC-box 5/6 elements and the two
p53
binding elements.
ZBTB2
directly interacted with
p53
via its zinc fingers, inhibiting
p53
binding and repressing transcription activation by
p53
. The POZ domain, required for transcription repression, interacted with corepressors such as BCoR, NCoR, and SMRT. The interactions deacetylated histones Ac-H3 and -H4 at the proximal promoter. Although ectopic
ZBTB2
stimulated cell proliferation, knock-down of
ZBTB2
expression decreased cell proliferation and DNA synthesis. Overall, our data suggest that
ZBTB2
is a potential proto-oncogenic master control gene of the
p53
pathway and, in particular, is a potent transcription repressor of the cell cycle arrest gene p21 by inhibiting
p53
and Sp1.
...
PMID:ZBTB2, a novel master regulator of the p53 pathway. 1938 May 88
An increasing body of evidence indicates that miR-149 can both suppress and promote tumor growth depending on the tumor type. However, the role of miR-149 in the progression of gastric cancer (GC) remains unknown. Here we report that miR-149 is a tumor suppressor in human gastric cancer. miR-149 expression is decreased in GC cell lines and clinical specimens in comparison to normal gastric epithelial cell and tissues, respectively. The expression levels of miR-149 also correlate with the differentiation degree of GC cells and tissues. Moreover, ectopic expression of miR-149 in gastric cancer cells inhibits proliferation and cell cycle progression by down-regulating
ZBTB2
, a potent repressor of the ARF-HDM2-
p53
-p21 pathway, with a potential binding site for miR-149 in its mRNA's 3'UTR. It is also found that
ZBTB2
expression increases in GC cells and tissues compared to normal gastric epithelial cell and tissues, respectively. Silencing of
ZBTB2
leads to suppression of cell growth and cell cycle arrest in G0/G1 phase, indicating that
ZBTB2
may act as an oncogene in GC. Furthermore, transfection of miR-149 mimics into gastric cancer cells induces down-regulation of
ZBTB2
and HDM2, and up-regulation of ARF,
p53
, and p21 compared to the controls. In summary, our data suggest that miR-149 functions as a tumor suppressor in human gastric cancer by, at least partially through, targeting
ZBTB2
.
...
PMID:MicroRNA-149 inhibits proliferation and cell cycle progression through the targeting of ZBTB2 in human gastric cancer. 2314 91
ZBTB2
is a protein belonging to the BTB/POZ zinc-finger family whose members typically contain a BTB/POZ domain at the N-terminus and several zinc-finger domains at the C-terminus. Studies have been carried out to disclose the role of
ZBTB2
in cell proliferation, in human cancers and in regulating DNA methylation. Moreover,
ZBTB2
has been also described as an ARF,
p53
and p21 gene repressor as well as an activator of genes modulating pluripotency. In this scenario,
ZBTB2
seems to play many functions likely associated with other proteins. Here we report a picture of the
ZBTB2
protein partners in U87MG cell line, identified by high-resolution mass spectrometry (MS) that highlights the interplay between
ZBTB2
and chromatin remodeling multiprotein complexes. In particular, our analysis reveals the presence, as
ZBTB2
candidate interactors, of SMARCA5 and BAZ1B components of the chromatin remodeling complex WICH and PBRM1, a subunit of the SWI/SNF complex. Intriguingly, we identified all the subunits of the NuRD complex among the
ZBTB2
interactors. By co-immunoprecipitation experiments and ChIP-seq analysis we definitely identify
ZBTB2
as a new partner of the NuRD complex.
...
PMID:ZBTB2 protein is a new partner of the Nucleosome Remodeling and Deacetylase (NuRD) complex. 3330 49