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Query: UMLS:C0027651 (
tumor
)
685,946
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
The melanoma differentiation-associated gene (mda-7; approved gene symbol IL24) is a
tumor
suppressor gene whose protein expression in normal cells is restricted to the immune system and to melanocytes. Recent studies have shown that mda-7 gene transfer inhibits cell growth and induces apoptosis in melanoma, lung cancer, breast cancer, and other
tumor
types through activation of various intracellular signaling pathways. In the current study, we demonstrate that Ad-mda7 transduction of human pancreatic cancer cells results in G2/M cell cycle arrest and cell killing. Cytotoxicity is mediated via apoptosis in a time- and dose-dependent manner.
Tumor
cell killing correlates with regulation of proteins involved in the Wnt and PI3K pathways: beta-catenin, APC, GSK-3, JNK, and PTEN. Additionally, we identify bystander cell killing activated by exposure of pancreatic
tumor
cells to secreted human MDA-7 protein. In pancreatic
tumor
cells, exogenous MDA-7 protein activates
STAT3
and kills cells via engagement of IL-20 receptors. The specificity of bystander killing is demonstrated using neutralizing anti-MDA-7 antibodies and anti-receptor antibodies, which inhibit the apoptotic effects. In sum, we show that Ad-mda7 is able to induce growth inhibition and apoptosis in pancreatic cancer cells via inhibition of the Wnt/PI3K pathways and identify a novel bystander mechanism of MDA-7 killing in pancreatic cancer that functions via IL-20 receptors.
...
PMID:mda-7/IL24 kills pancreatic cancer cells by inhibition of the Wnt/PI3K signaling pathways: identification of IL-20 receptor-mediated bystander activity against pancreatic cancer. 1585 Oct 11
Aberrantly enhanced vascular endothelial growth factor (VEGF) gene expression is associated with increased tumor growth and metastatic spread of solid malignancies, including human renal carcinomas. Persistent activation of
STAT3
is linked to
tumor
-associated angiogenesis, but underlying mechanisms remain unclear. Therefore, we examined whether
STAT3
modulates the stability and activity of hypoxia-inducible factor-1alpha (HIF-1alpha), and in turn enhances VEGF expression. We found that
STAT3
was activated in ischemic rat kidneys and hypoxic human renal carcinoma cells. We also found that hypoxia-induced activation of
STAT3
transactivated the VEGF promoter and increased the expression of VEGF transcripts. Consistent with these findings,
STAT3
inhibition attenuated the hypoxic induction of VEGF. Interestingly, activated
STAT3
increased HIF-1alpha protein levels due to the HIF-1alpha stability by blocking HIF-1alpha degradation and accelerated its de novo synthesis. The novel interaction of
STAT3
with HIF-1alpha was identified in hypoxic renal carcinoma cells. Furthermore, hypoxia recruited
STAT3
, HIF-1alpha, and p300 to the VEGF promoter and induced histone H3 acetylation. Therefore, these findings provide compelling evidence that a causal relationship exists between
STAT3
activation and HIF-1-dependent angiogenesis and suggest that therapeutic modalities designed to disrupt
STAT3
signaling hold considerable promise for the blocking tumor growth and enhancing apoptosis of cancer cells and tissues.
...
PMID:STAT3 is a potential modulator of HIF-1-mediated VEGF expression in human renal carcinoma cells. 1591 61
Signal transducer and activator of transcription (STAT)3 is a member of a family of DNA-binding factors that function to induce expression of responsive genes.
STAT3
can act as an oncogene, and its function has been shown to be critical for cellular transformation by a number of oncogenic tyrosine kinases. The role of
STAT3
as a DNA-binding transcription factor naturally depends on its ability to gain entrance to the nucleus. In this study, we provide evidence that
STAT3
is distinct from previously characterized STAT molecules in that it dynamically shuttles between cytoplasmic and nuclear compartments and maintains prominent nuclear presence. Although tyrosine phosphorylation is required for
STAT3
to bind to specific DNA target sites, nuclear import takes place constitutively and independently of tyrosine phosphorylation. We identify a region within the coiled-coil domain of the
STAT3
molecule that is necessary for nuclear import and demonstrate that this region is critical for its recognition by specific import carrier importin-alpha3. RNA interference studies were used to verify the role and specificity of importin-alpha3 in
STAT3
nuclear translocation. These results distinguish
STAT3
cellular localization from other STAT molecules and identify a feature that may be targeted in the clinical intervention of
STAT3
-dependent
neoplasia
.
...
PMID:STAT3 nuclear import is independent of tyrosine phosphorylation and mediated by importin-alpha3. 1591 23
As a point of convergence for numerous oncogenic signaling pathways,
STAT3
is constitutively-activated at 50 to 90% frequency in diverse human cancers, including melanoma. A critical role of
STAT3
in
tumor
cell survival, proliferation, angiogenesis, metastasis and immune evasion has been recently demonstrated.
STAT3
contributes to
tumor
cell growth by regulating the expression of genes that are involved in cell survival and proliferation.
STAT3
promotes metastasis and angiogenesis by inducing expression of the metastatic gene, MMP-2, and the potent angiogenic gene, VEGF.
STAT3
participates in the regulation of
tumor
immune evasion by inhibiting expression of proinflammatory mediators while promoting expression of immune-suppressing factors, which in turn activates
STAT3
signaling in dendritic cells leading to immune tolerance. Thus, targeting
STAT3
for therapy assaults cancer on multiple fronts. Many of the studies that defined
STAT3
's role in oncogenesis were carried out in melanoma cells and
tumor
models. In this review, we summarize the key role of
STAT3
in cancer in general and melanoma in particular. With the emergence of small-molecule drugs that directly inhibit
STAT3
or the oncogenic signaling pathways upstream of
STAT3
in melanoma, a promising novel approach for melanoma therapy is emerging.
...
PMID:Targeting STAT3 affects melanoma on multiple fronts. 1598 40
Colorectal carcinoma (CRC) is a major cause of morbidity and mortality in Western countries. It has so far been molecularly defined mainly by alterations of the Wnt pathway. We show here for the first time that aberrant activities of the signal transducer and activator of transcription
STAT3
actively contribute to this malignancy and, thus, are a potential therapeutic target for CRC. Constitutive
STAT3
activity was found to be abundant in dedifferentiated cancer cells and infiltrating lymphocytes of CRC samples, but not in non-neoplastic colon epithelium. Cell lines derived from malignant colorectal tumors lost persistent
STAT3
activity in culture. However, implantation of colon carcinoma cells into nude mice resulted in restoration of
STAT3
activity, suggesting a role of an extracellular stimulus within the
tumor
microenvironment as a trigger for STAT activation.
STAT3
activity in CRC cells triggered through interleukin-6 or through a constitutively active
STAT3
mutant promoted cancer cell multiplication, whereas
STAT3
inhibition through a dominant-negative variant impaired IL-6-driven proliferation. Blockade of
STAT3
activation in CRC-derived xenograft tumors slowed down their development, arguing for a contribution of
STAT3
to colorectal tumor growth.
Neoplasia
2005 Jun
PMID:Persistent STAT3 activation in colon cancer is associated with enhanced cell proliferation and tumor growth. 1603 5
In order to evaluate the possible effects of
STAT3
phosphorylation and expression of E-cadherin on metastasis of some human epidermal non-melanoma cutaneous tumors, the expression of phosphorylated
STAT3
(p-STAT3) and E-cadherin were analyzed by immunohistochemistry staining in formalin-fixed, paraffin-embedded tissue sections of human cutaneous squamous cell carcinoma (SCC), basal cell carcinoma (BCC) and seborrhoeic keratosis (SK). An immunohistochemistry staining technique was employed to measure the expression of p-
STAT3
and E-cadherin protein in 30 cases of cutaneous SCC, 20 cases of BCC, 20 cases of SK, and 20 specimens of normal skin. The results were as follows: 1) p-STAT3 protein was abnormally increased in SCC as compared to normal skin and SK (p<0.001). Expression of p-STAT3 in SCC was also significantly higher than in BCC (p<0.05). 2) Expression of p-STAT3 was higher in poorly-differentiated SCC than in well-differentiated ones (p<0.05). The positive rate of the expression of p-STAT3 correlated well with the depth of
tumor
invasion and with metastasis (p<0.05), but there was no correlation between the positive rate and
tumor
size. 3) E-cadherin was strongly expressed on the cell membranes of normal skin and SK, especially on basal cells. E-cadherin was weakly expressed on cell membranes of SCC and BCC (p<0.001), whereas its expression was significantly lower in SCC than in BCC (p<0.05). In SCC, the intensity of E-cadherin expression was correlated with the extent of
tumor
differentiation, but there was no correlation between the expression intensity and the depth of
tumor
invasion or
tumor
size. 4) There was a negative correlation between the expression intensity of p-STAT3 and E-cadherin in SCC (rs=-0.372, p<0.05). We concluded that the overexpression of p-STAT3 may have an important role in the development of epidermal tumors. Abnormal activation of
STAT3
may be related to metastasis potential in SCC and the simultaneous detection of p-STAT3 and E-cadherin may contribute to predicating the prognosis in SCC.
...
PMID:Overexpression of phosphorylated-STAT3 correlated with the invasion and metastasis of cutaneous squamous cell carcinoma. 1604 97
Transcription regulators STAT1 and STAT2 are key components of the interferon signaling system leading to innate antiviral immunity. The related
STAT3
protein is a regulator of interleukin-6-type cytokine signals and can contribute to both cell growth and death important for cancer gene regulation and
tumor
survival. These three STAT proteins are targeted for proteasome-mediated degradation by RNA viruses in the Rubulavirus genus of the Paramyxoviridae. A single viral protein, the V protein, assembles STAT-specific ubiquitin ligase complexes from cellular components. Simian virus 5 (SV5) targets STAT1, human parainfluenza virus 2 targets STAT2, and mumps virus targets both STAT1 and
STAT3
. Analysis of the V-dependent degradation complex (VDC) composition and assembly revealed several features contributing to targeting specificity. SV5 and mumps V proteins require STAT2 to recruit the STAT1 target, yet mumps V protein binds
STAT3
independent of STAT1 and STAT2. All Rubulavirus V proteins tested require cellular DDB1 to target STATs for degradation but differ in the use of Roc1, which is essential for mumps V
STAT3
targeting. Protein interaction analysis reveals that paramyxovirus V proteins can homo- and heterooligomerize and that the conserved cysteine-rich zinc-binding C-terminal domain is necessary and sufficient for oligomerization. Purified SV5 V protein spontaneously assembles into spherical macromolecular particles, and similar particles constitute SV5 and mumps VDC preparations.
...
PMID:Composition and assembly of STAT-targeting ubiquitin ligase complexes: paramyxovirus V protein carboxyl terminus is an oligomerization domain. 1605 11
This study found that the HIV-1 protease inhibitor nelfinavir (NFV) induced growth arrest and apoptosis of human prostate cancer cells (LNCaP, DU145 and PC-3 cells), as measured by MTT and terminal deoxyribonucleotide transferase-mediated dUTP nick end labeling (TUNEL) assays, respectively, on the third day of culture. In addition, NFV blocked androgen receptor (AR) signaling in association with downregulation of nuclear levels of AR in LNCaP cells as measured by reporter assay and western blot analysis. As expected, NFV downregulated the level of the AR target molecule prostate specific antigen in these cells. Moreover, NFV disrupted
STAT3
signaling; protease inhibitors blocked interleukin-6-induced phosphorylation of
STAT3
and inhibited
STAT3
DNA binding activity in LNCaP and DU145 cells, as measured by western blot analysis and enzyme-linked immunosorbent assay (ELISA), respectively. Furthermore, NFV blocked AKT signaling in prostate cancer cells as measured by kinase assay with glycogen synthase kinase-3alpha/beta as a substrate. Importantly, NFV inhibited the proliferation of LNCaP cells presented as
tumor
xenografts in BALB/c nude mice without side-effects. Taken together, NFV inhibited the proliferation of prostate cancer cells in conjunction with blockade of signaling by AR,
STAT3
, and AKT, suggesting that this family of compounds might be useful for the treatment of individuals with prostate cancer.
...
PMID:HIV-1 protease inhibitor induces growth arrest and apoptosis of human prostate cancer LNCaP cells in vitro and in vivo in conjunction with blockade of androgen receptor STAT3 and AKT signaling. 1605 14
A Ras homologue member I (ARHI) is a novel imprinted
tumor
suppressor gene whose expression is frequently lost in breast and ovarian cancers. This small GTP-binding protein is a member of the Ras superfamily with significant homology to both Ras and Rap. Unlike the Ras oncogene, however, ARHI inhibits
tumor
cell growth. To elucidate the mechanisms by which ARHI inhibits cancer growth, we screened a human breast epithelial cell cDNA library using a yeast two-hybrid system for ARHI-interacting proteins. ARHI was found to interact with signal transducers and activators of transcription (STAT) 3, a latent transcription factor that transduces signals from the cell surface to the nucleus and activates gene transcription.
STAT3
is frequently phosphorylated and activated in breast and ovarian cancers, where cytokines and growth factors up-regulate
STAT3
and stimulate proliferation. The ARHI-
STAT3
interaction was confirmed by coimmunoprecipitation in mammalian cells and shown to be specific for
STAT3
but not STAT1 or STAT5a. When ARHI and
STAT3
were coexpressed in SKOv3 cells, ARHI formed a complex with
STAT3
in the cytoplasm and prevented interleukin-6-induced
STAT3
accumulation in the nucleus. ARHI markedly reduced
STAT3
binding to DNA and
STAT3
-dependent promoter activity while only moderately affecting
STAT3
phosphorylation. Deletion of the NH2 terminus of ARHI significantly compromised its inhibitory activity, suggesting that this unique NH2-terminal extension contributes to ARHI's inhibition of
STAT3
-mediated transcriptional activity. Thus, the physical association between
STAT3
and ARHI as well as the functional inhibition of
STAT3
transcriptional activity by ARHI suggests a novel mechanism through which a putative tumor suppressor gene can inhibit
STAT3
activity in breast and ovarian cancers.
...
PMID:A Ras homologue member I directly inhibits signal transducers and activators of transcription 3 translocation and activity in human breast and ovarian cancer cells. 1606 51
Signal transducers and activators of transcription (STAT) regulate a plethora of cytokine responses. Recently, aberrant signaling by STAT proteins has been demonstrated to play important roles in the pathogenesis of many neoplasms, by promoting cell cycle progression and survival, stimulating angiogenesis, and impairing immunological responses and
tumor
surveillance. We have developed genetic tools to evaluate STAT-dependent malignancy and showed that survival and growth of lymphoid malignancies requires expression of
STAT3
. In contrast, loss of
STAT3
in normal cells does not impair their growth or survival; but in spite of this apparent dispensability of
STAT3
,
STAT3
-null fibroblasts are resistant to transformation by a variety of oncogenes. The precise molecular mechanisms responsible for the tumorigenic activity of
STAT3
have been only partially elucidated. While the tyrosine phosphorylation of
STAT3
, which is indicative of its signal-dependent activation, is a common occurrence in tumors, and appears to play a crucial role in some malignancies, a variety of new data suggest that it can be dispensable under some circumstances and
STAT3
can participate in transformation through novel and non-canonical mechanisms. The discovery and dissection of non-canonical modes of
STAT3
action will open new avenues for the design of effective therapeutics capable of neutralizing the tumorigenic properties of this molecule.
...
PMID:New and old functions of STAT3: a pivotal target for individualized treatment of cancer. 1608 18
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