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Query: UMLS:C0476089 (
endometrial cancer
)
11,379
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Tamoxifen is an important selective estrogen receptor (ER) modulator for treatment of steroid hormone positive breast cancer. In addition to the beneficial effect, tamoxifen is one risk factor for
endometrial carcinoma
(EnCa) development. We hypothesized that, (1) dysregulation of gene expression and protein phosphorylation of the insulin-like growth factor (IGF) and steroid hormone receptor-signaling occur early in benign endometrial tissues and (2) signaling differences would be detected between patients with or without tamoxifen treatment. Seventy-eight tissues, including 2 benign cohorts from patients treated with (n = 24) or without tamoxifen (n = 28) (hyperproliferative endometrium, hyperplasia, polyps), EnCa (n = 12) with endometrium controls (n = 14) were analyzed for expression of 15 genes from the IGF and steroid hormone receptor-signaling, including the target genes
Syncytin-1
, PAX2 and c-myc. Total and phosphorylated protein expression were examined for ERalpha, PTEN, AKT, mTOR and
Syncytin-1
. Compared to controls similar significant deregulation of IGF and steroid hormone receptor-signaling,
Syncytin-1
and PAX2 occurred in both benign cohorts, irrelevant of tamoxifen treatment. Comparing both benign cohorts with and without tamoxifen significant expression differences were noted. Increased total protein and phosphorylation of pERalpha-Ser118, pPTEN-Thr380, pAKT-Thr308, pAKT-Ser473, pmTOR-Ser2448 and
Syncytin-1
were noted in early benign tissue stages associating with tamoxifen, especially polyps. Functional kinetic studies following tamoxifen treatment of the PTEN mutated RL95-2 EnCa cell line, demonstrated a doubling of phosphorylation of pERalpha-Ser118 and a 4.2-fold induction of pAKT-Thr308 along with
Syncytin-1
induction. This study supports that dysregulated IGF and steroid hormone receptor signaling is prominent in endometrial benign stages and these alterations could represent clinical indicators for the risk of EnCa and also help in development of new therapies.
...
PMID:Early aberrant insulin-like growth factor signaling in the progression to endometrial carcinoma is augmented by tamoxifen. 1881 40
Endometrial carcinoma
(EnCa) is the most common invasive gynaecologic carcinoma. Over 85% of EnCa are classified as endometrioid, expressing steroid hormone receptors and mostly involving pathological prestages. Human endogenous retroviruses (ERV) are chromosomally integrated genes, account for about 8% of the human genome and are implicated in the etiology of carcinomas. The majority of ERV envelope (env) coding genes are either not present or not consistently represented between common gene expression microarrays. The aim of this study was to analyse the absolute gene expression of all known 21 ERV env genes including 19 codogenic and two env genes with premature stop codons in EnCa, endometrium as well as in hyperplasia and polyps. For EnCa seven env genes had high expression with >200 mol/ng cDNA (e.g. envH1-3,
Syncytin-1
, envT), two middle >50 mol/ng cDNA (envFc2, erv-3) and 12 low less than 50 mol/ng cDNA (e.g. Syncytin-2, envV2). Regarding tumor parameters,
Syncytin-1
and Syncytin-2 were significantly over-expressed in advanced stage pT2 compared to pT1b. In less differentiated EnCa
Syncytin-1
, erv-3, envT and envFc2 were significantly over-expressed.
Syncytin-1
, Syncytin-2 and erv-3 were specific to glandular epithelial cells of polyps, hyperplasia and EnCa using immunohistochemistry. An analysis of 10 patient-matched EnCa with endometrium revealed that the ERV-W 5' long terminal repeat regulating
Syncytin-1
was hypomethylated, including the ERE and CRE overlapping MeCP2 sites. Functional analyses showed that 10 env genes were regulated by methylation in EnCa using the RL95-2 cell line. In conclusion, over-expressed env genes could serve as indicators for pathological pre-stages and EnCa.
...
PMID:Reactivation of codogenic endogenous retroviral (ERV) envelope genes in human endometrial carcinoma and prestages: Emergence of new molecular targets. 2308 71
BACKGROUND
Syncytin-1
, a cell membrane-localizing fusogen, is abnormally expressed in several cancers, including
endometrial cancer
, breast cancer, and leukemia. Although abnormal
syncytin-1
expression has been detected in two-thirds of leukemia blood samples, its expression profile in acute leukemia patients has not yet been analyzed. MATERIAL AND METHODS Bone marrow samples from 50 acute myelogenous leukemia (AML) cases and 14 B-cell acute lymphocytic leukemia (B-cell ALL) patients were subjected to flow cytometry to assess leukocyte type distributions and leukocytic
syncytin-1
surface expression. RT-PCR was applied to assess leukocytic
syncytin-1
mRNA expression. Statistical analysis was applied to compare
syncytin-1
expression between AML and B-cell ALL patients across blasts, granulocytes, lymphocytes, and monocytes as well as to determine clinical factors statistically associated with changes in
syncytin-1
expression. RESULTS The leukocyte type distributions of the AML and B-cell ALL cohorts highly overlapped, with an observable difference in blast distribution between the 2 cohorts. The AML cohort displayed significantly greater
syncytin-1
surface and mRNA expression (p<0.05).
Syncytin-1
surface and mRNA expression was significantly increased across all 4 leukocyte types (p<0.05). The percentage of
syncytin-1
-expressing blasts was significantly greater in AML patients (p<0.05), with blasts showing the largest fold-change in
syncytin-1
expression (p<0.05). M5, M5a, and M5b AML patients displayed significantly higher
syncytin-1
surface expression relative to all other AML French-American-British (FAB) classifications (p<0.05). CONCLUSIONS These findings suggest leukocytic
syncytin-1
expression may play a role in the development and/or maintenance of the AML phenotype and the acute monocytic leukemia phenotype in particular.
...
PMID:Upregulation of Leukocytic Syncytin-1 in Acute Myeloid Leukemia Patients. 2739 11