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Query: UNIPROT:P04637 (
p53
)
77,613
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Naturally occurring sympathetic neuron death is the result of two apoptotic signaling events: one normally suppressed by NGF/TrkA survival signals, and a second activated by the p75 neurotrophin receptor. Here we demonstrate that the
p53 tumor suppressor protein
, likely as induced by the MEKK-JNK pathway, is an essential component of both of these apoptotic signaling cascades. In cultured neonatal sympathetic neurons,
p53 protein
levels are elevated in response to both NGF withdrawal and p75NTR activation. NGF withdrawal also results in elevation of a known
p53 target
, the apoptotic protein Bax. Functional ablation of
p53
using the adenovirus E1B55K protein inhibits neuronal apoptosis as induced by either NGF withdrawal or p75 activation. Direct stimulation of the MEKK-JNK pathway using activated MEKK1 has similar effects;
p53
and Bax are increased and the subsequent neuronal apoptosis can be rescued by E1B55K. Expression of
p53
in sympathetic neurons indicates that
p53
functions downstream of JNK and upstream of Bax. Finally, when
p53
levels are reduced or absent in p53+/- or
p53
-/- mice, naturally occurring sympathetic neuron death is inhibited. Thus,
p53
is an essential common component of two receptor-mediated signal transduction cascades that converge on the MEKK-JNK pathway to regulate the developmental death of sympathetic neurons.
...
PMID:p53 is essential for developmental neuron death as regulated by the TrkA and p75 neurotrophin receptors. 985 60
Exposure of mammalian cells to hypoxia, radiation and certain chemotherapeutic agents promotes cell cycle arrest and/or apoptosis. Activation of
p53
responsive genes is believed to play an important role in mediating such responses. In this study we identified a novel gene, PA26, which maps to chromosome 6q21 and encodes at least three transcript isoforms, of which two are differentially induced by genotoxic stress (UV, gamma-irradiation and cytotoxic drugs) in a
p53
-dependent manner. A functional
p53
-responsive element was identified in the second intron of the PA26 gene, in consistance with a mechanism of transcriptional induction of the PA26 gene by
p53
. No clues to its functions were revealed by sequence analysis, although pronounced negative regulation by serum factors argues for a potential role of PA26 in growth regulation. Immunological analysis suggests that PA26 protein(s) is localized to the cell nucleus. Our results suggest that the PA26 gene is a novel
p53 target
gene with properties common to the GADD family of growth arrest and DNA damage-inducible stress-response genes, and, thus, a potential novel regulator of cellular growth.
...
PMID:PA26, a novel target of the p53 tumor suppressor and member of the GADD family of DNA damage and growth arrest inducible genes. 992 27
In this study we describe a novel putative
p53
-responsive gene, designated p22/PACAP response gene 1 (PRG1), recently identified as a proliferation-associated early-response gene in rats. By means of electrophoretic mobility shift assay and CAT-reporter gene assay, we could demonstrate that the
p53
binding site residing in the promoter of p22/PRG1 is functional in vitro. Furthermore, in clone 6 cells expression of p22/PRG1 is induced in parallel to p21/Waf1 under conditions permitting mutant p53 to adopt wild-type configuration. An increase of p22/PRG1 transcription was also observed in gamma-irradiated rat splenocytes, which undergo
p53
-dependent apoptosis. Our findings demonstrate that p22/PRG1 fulfills all essential criteria as a
p53 target
gene and might be implicated in
p53
-dependent apoptosis.
...
PMID:p22/PACAP response gene 1 (PRG1): a putative target gene for the tumor suppressor p53. 992 93
We show here that the anti-apoptosis protein Bcl-2 potently inhibits
p53
-dependent transcriptional activation of various
p53
-responsive promoters in reporter gene co-transfection assays in human embryonic kidney 293 and MCF7 cells, without affecting nuclear accumulation of
p53 protein
. In contrast, Bcl-2(Deltatransmembrane (TM)), which lacks a hydrophobic membrane-anchoring domain, had no effect on
p53
activity. Similarly, in MCF7 cells stably expressing either Bcl-2 or Bcl-2(DeltaTM), nuclear levels of
p53 protein
were up-regulated upon treatment with the DNA-damaging agents doxorubicin and UV radiation, whereas
p53
-responsive promoter activity and expression of p21(CIP1/WAF1) were strongly reduced in MCF7-Bcl-2 cells but not in MCF7-Bcl-2(DeltaTM) or control MCF7 cells. The issue of membrane anchoring was further explored by testing the effects of Bcl-2 chimeric proteins that contained heterologous transmembrane domains from the mitochondrial protein ActA or the endoplasmic reticulum protein cytochrome b5. Both Bcl-2(ActA) and Bcl-2(Cytob5) suppressed
p53
-mediated transactivation of reporter gene plasmids with efficiencies comparable to wild-type Bcl-2. These results suggest that (a) Bcl-2 not only suppresses
p53
-mediated apoptosis but also interferes with the transcriptional activation of
p53 target
genes at least in some cell lines, and (b) membrane anchoring is required for this function of Bcl-2. We speculate that membrane-anchored Bcl-2 may sequester an unknown factor necessary for
p53
transcriptional activity.
...
PMID:Inhibition of p53 transcriptional activity by Bcl-2 requires its membrane-anchoring domain. 1003 39
DNA chip technology was used in an attempt to identify target genes responsible for apoptosis induced by etoposide, a
p53
activating topoisomerase II inhibitor used clinically as an antitumor agent. 62 Individual mRNAs whose mass changed significantly were identified after screening oligonucleotide arrays capable of detecting 6591 unique human mRNA species. 12 (Nine induced and three repressed) of the etoposide-responsive genes were further studied by Northern analysis and an agreement rate of 92%, was reached. Among the 12 genes studied, two (WAF1/p21 and PCNA) are known
p53
regulatory genes, two (glutathione peroxidase and S100A2 calcium-binding protein) appear to be the novel
p53 target
genes and the others appear to be
p53
-independent. Based upon these findings, the signalling pathways that possibly mediate etoposide-induced apoptosis are proposed.
...
PMID:Identification of the genes responsive to etoposide-induced apoptosis: application of DNA chip technology. 1009 70
p53 target
genes p21(Cip1/Waf1) cyclin-kinase inhibitor (p21 CKI), GADD45, bax, and cyclin G and genes affecting the redox state of the cells are implicated in
p53
damage control responses. In order to attribute their functions and dependency of
p53
in UV-damaged cells we undertook an analysis of UVC responses of fibroblasts derived from
p53
knock-out mice. UVC radiation efficiently and rapidly inhibited DNA replication in both
p53
-/- and +/+ cells. The arrest was persistent in
p53
-/- fibroblasts and cells underwent apoptosis, whereas
p53
+/+ cells recovered and reentered the cycle. Protein and mRNA analyses of p21 expression showed that it was induced up to sixfold with similar kinetics both in the presence and in the absence of
p53
. However, high doses of UV abrogated the p21 response in
p53
-/- cells, whereas it was maintained in cells with normal
p53
. UVC radiation transcriptionally activated p21 expression as demonstrated by luciferase reporter assays using deletion constructs of the p21 promoter. The promoter assays further confirmed the independency of
p53
-binding sites in the activation and linked UV-responsive transcriptional regulation of p21 to two Sp1 consensus binding sites within -61 bp of the transcription initiation site. A weaker regulation was mediated by elements between -1300 to -500 bp relative to the transcription initiation site. The results suggest that in fibroblasts UVC radiation is a rapid and efficient inducer of p21 expression also in a
p53
-independent manner.
...
PMID:UV radiation is a transcriptional inducer of p21(Cip1/Waf1) cyclin-kinase inhibitor in a p53-independent manner. 1009 33
UV radiation-induced mutation of the
p53
gene is suggested as a causative event in skin cancer, including melanoma. We have analyzed here
p53
mutations in melanoma cell lines and studied its stabilization, DNA-binding activity, and target gene activation by UVC.
p53
was mutated in three of seven melanoma cell lines. However, high levels of
p53
were detected in all cell lines, including melanoma cells with wild-type
p53
, with the exception of one line with a truncated form. Upon UV induction,
p53
accumulated in lines with wild-type
p53
, and
p53 target
genes p21Cip1/Waf1, GADD45, and mdm2 were induced, but the induction of p21Cip1/Waf1 was significantly delayed as compared with the increase in
p53
DNA-binding activity. However, despite
p53 target
gene induction,
p53
DNA-binding activity was absent in one melanoma line with wild-type
p53
, and
p53 target
genes were induced also in cells with mutant p53. In response to UV, DNA replication ceased in all cell lines, and apoptosis ensued in four lines independently of
p53
but correlated with high induction of GADD45. The results suggest that in melanoma, several
p53
regulatory steps are dislodged; its basal expression is high, its activation in response to UV damage is diminished, and the regulation of its target genes p21Cip1/Waf1 and GADD45 are dissociated from
p53
regulation.
...
PMID:Human melanoma cell line UV responses show independency of p53 function. 1009 30
Though
p53
-induced apoptosis plays an important role in tumor suppression, the mechanism(s) by which
p53
induces apoptosis is still unclear. To elucidate the
p53
-induced apoptotic pathway, we examined the role of
p53
transactivation activity and caspase in J138V5C cells carrying a human temperature-sensitive (ts)
p53
mutant (138Ala-->Val). The results showed that
p53
-induced apoptosis was not blocked by cycloheximide, which effectively prevented the expression of
p53 target
genes, indicating that transactivation was not essential for
p53
-induced apoptosis in this system. Western blot analysis showed that PARP, CPP32 and ICH-1 precursors were cleaved during apoptosis. The CPP32-preferential tetrapeptide inhibitor Ac-DEVD-CHO blocked the cleavage of ICH-1 and PARP precursors, suggesting that CPP32 or some other DEVD-sensitive caspase(s) is the upstream activator of ICH-1. We also examined the role of the Fas pathway by using Fas and Fas ligand-neutralizing antibodies. Both antibodies failed to block
p53
-induced apoptosis, suggesting that the Fas pathway was not essential for
p53
-induced apoptosis in this system. Taken together, our results indicate that
p53
-induced, transactivation-independent apoptosis in Jurkat cells involves sequential activation of CPP32 or some other DEVD-sensitive caspase(s) and ICH-1, via a Fas-independent pathway.
...
PMID:Activation of caspases in p53-induced transactivation-independent apoptosis. 1018 88
Recent studies show that the
p53 tumor suppressor protein
is overexpressed in rheumatoid arthritis (RA) synovium and that somatic mutations previously identified in human tumors are present in RA synovium (Firestein, G. S., Echeverri, F., Yeo, M., Zvaifler, N. J., and Green, D. R. (1997) Proc. Natl. Acad. Sci. U. S. A. 94, 10895-10900; Firestein, G. S., Nguyen, K., Aupperle, K. R., Yeo, M., Boyle, D. L., and Zvaifler, N. J. (1996) Am. J. Pathol. 149, 2143-2151; Reme, T., Travaglio, A., Gueydon, E., Adla, L., Jorgensen, C., and Sany, J. (1998) Clin. Exp. Immunol. 111, 353-3581). We hypothesize that the abnormality of
p53
seen in RA synovium may contribute to joint degeneration through the regulation of human matrix metalloproteinase-1 (hMMP-1, collagenase-1) gene expression. Transcription assays were performed with luciferase reporters driven by the promoter of the hMMP-1 gene or by a minimal promoter containing tandem repeats of the consensus binding sequence for activator protein-1, cotransfected with
p53
-expressing plasmids. The results revealed that (i) wild-type (wt)
p53
down-regulated the promoter activity of hMMP-1 in a dose-dependent fashion; (ii) four of six
p53
mutants (commonly found in human cancers) lost this repression activity; and (iii) this
p53
repression activity was mediated at least in part by the activator protein-1 sites found in the hMMP-1 promoter. These findings were further confirmed by Northern analysis. The down-regulation of hMMP-1 gene expression by endogenous wt-
p53
was shown by treatment of U2-OS cells, a wt-
p53
-containing osteogenic sarcoma line, and Saos-2 cells, a
p53
-negative osteogenic sarcoma line, with etoposide, a potent inducer of
p53
expression.
p53
, activated by etoposide, appears to block hMMP-1 promoter activity induced by etoposide in U2-OS cells. In summary, we have shown for the first time that the hMMP-1 gene is a
p53 target
gene, subject to
p53
repression. Because MMP-1 is principally responsible for the irreversible destruction of collagen in articular tissue in RA, abnormality of
p53
may contribute to joint degeneration through the regulation of MMP-1 expression.
...
PMID:p53 down-regulates human matrix metalloproteinase-1 (Collagenase-1) gene expression. 1020 59
Glutathione peroxidase (GPX) is a primary antioxidant enzyme that scavenges hydrogen peroxide or organic hydroperoxides. We have recently found that GPX is induced by etoposide, a topoisomerase II inhibitor and a
p53
activator. In a search for a cis-element that confers potential
p53
regulation of GPX, we identified a
p53
binding site in the promoter of the GPX gene. This site bound to purified
p53
as well as
p53
in nuclear extract activated by etoposide. A luciferase reporter driven by a 262-base pair GPX promoter fragment was transcriptionally activated by wild type
p53
in a
p53
binding site-dependent manner. The same reporter was also activated in a
p53
binding site-independent manner by several
p53
mutants. The
p53
binding and transactivation of the GPX promoter were enhanced by etoposide in
p53
-positive U2-OS cells. Etoposide-induced transactivation was blocked by a dominant negative
p53
mutant, indicating that endogenous wild type
p53
, upon activation by etoposide, transactivated the GPX promoter. Furthermore, expression of endogenous GPX was induced significantly at both mRNA and enzyme activity levels by etoposide in U2-OS cells but not in
p53
-negative Saos-2 cells. This is the first report demonstrating that GPX is a novel
p53 target
gene. The finding links the
p53 tumor suppressor
to an antioxidant enzyme and will facilitate study of the
p53
signaling pathway and antioxidant enzyme regulation.
...
PMID:Transcriptional activation of the human glutathione peroxidase promoter by p53. 1020 30
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