Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Pivot Concepts:
Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Target Concepts:
Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Query: EC:2.7.12.2 (
MEK
)
18,161
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
The
TIG3
gene is a retinoic acid inducible class II tumor suppressor gene downregulated in several human tumors and malignant cell lines. Diminished
TIG3
expression correlates with decreased differentiation whereas forced expression of
TIG3
suppresses oncogenic signaling pathways and subsequently induces differentiation or apoptosis in tumor cells. Analysis of
TIG3
mRNA expression in a large set of cDNA pools derived from matched tumor and normal human tissues showed a significant downregulation of
TIG3
in 29% of the cDNA samples obtained from ovarian carcinomas. Using in situ hybridization, we demonstrated expression of
TIG3
in the epithelial lining of 7 normal ovaries but loss of
TIG3
expression in 15/19 of human ovarian carcinoma tissues. In SKOV-3, CAOV-3 and ES-2 ovarian carcinoma cell lines, downregulation of
TIG3
mRNA was reversible and dependent on an activated
MEK
-ERK signaling pathway. Re-expression of
TIG3
mRNA in these cells upon specific interference with the
MEK
-pathway was correlated with growth inhibition of the cells. In OVCAR-3 and A27/80 ovarian carcinoma cells,
TIG3
suppression is
MEK
-ERK independent, but expression could be reconstituted upon interferon gamma (IFNgamma) induction. Overexpression of
TIG3
in A27/80 ovarian carcinoma cells significantly impaired cell growth and despite increased mRNA levels,
TIG3
protein was hardly detectable. These results suggest that
TIG3
is negatively regulated by an activated
MEK
-ERK signaling pathway. Further mechanisms must interfere with
TIG3
expression that are independent of
MEK
and partially include interferon-responsive components.
...
PMID:Suppression of the TIG3 tumor suppressor gene in human ovarian carcinomas is mediated via mitogen-activated kinase-dependent and -independent mechanisms. 1585 68