Role of transcriptional and posttranscriptional regulation of methionine adenosyltransferases in liver cancer progression.
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Physiological networks and disease functions of RNA-binding protein AUF1MicroRNA-21-3p, a berberine-induced miRNA, directly down-regulates human methionine adenosyltransferases 2A and 2B and inhibits hepatoma cell growthModeling progressive non-alcoholic fatty liver disease in the laboratory mouse.An integrated approach to uncover driver genes in breast cancer methylation genomes.A novel in silico reverse-transcriptomics-based identification and blood-based validation of a panel of sub-type specific biomarkers in lung cancer.MicroRNAs regulate methionine adenosyltransferase 1A expression in hepatocellular carcinoma.HBx-upregulated lncRNA UCA1 promotes cell growth and tumorigenesis by recruiting EZH2 and repressing p27Kip1/CDK2 signaling.Pin1 facilitates NF-κB activation and promotes tumour progression in human hepatocellular carcinoma.New insights on the role of epigenetic alterations in hepatocellular carcinoma.Relationship between methylome and transcriptome in patients with nonalcoholic fatty liver diseaseClinical significance of HuR expression in human malignancy.Methionine adenosyltransferase α2 sumoylation positively regulate Bcl-2 expression in human colon and liver cancer cells.Novel immunoassays to detect methionine adenosyltransferase activity and quantify S-adenosylmethionine.MicroRNA-mediated regulation of glutathione and methionine metabolism and its relevance for liver disease.Acetylation of MAT IIα represses tumour cell growth and is decreased in human hepatocellular cancerNoncoding RNAs in Regulation of Cancer Metabolic Reprogramming.Epigenetic activation of the MiR-200 family contributes to H19-mediated metastasis suppression in hepatocellular carcinoma.AU-binding factor 1 expression was correlated with metadherin expression and progression of hepatocellular carcinoma.Epigenetic regulation of methionine adenosyltransferase 1A: a role for MicroRNA-based treatment in liver cancer?Hypermethylation-repressed methionine adenosyltransferase 1A as a potential biomarker for hepatocellular carcinoma.Methionine adenosyltransferases in cancers: Mechanisms of dysregulation and implications for therapy.Tumor-suppressive effect of S-adenosylmethionine supplementation in a murine model of inflammation-mediated hepatocarcinogenesis is dependent on treatment longevity.Mechanisms of MAFG Dysregulation in Cholestatic Liver Injury and Development of Liver CancerCullin 3 targets methionine adenosyltransferase IIα for ubiquitylation-mediated degradation and regulates colorectal cancer cell proliferation
P2860
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P2860
Role of transcriptional and posttranscriptional regulation of methionine adenosyltransferases in liver cancer progression.
description
2012 nî lūn-bûn
@nan
2012年の論文
@ja
2012年学术文章
@wuu
2012年学术文章
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2012年学术文章
@zh-cn
2012年学术文章
@zh-hans
2012年学术文章
@zh-my
2012年学术文章
@zh-sg
2012年學術文章
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2012年學術文章
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name
Role of transcriptional and po ...... s in liver cancer progression.
@en
Role of transcriptional and po ...... s in liver cancer progression.
@nl
type
label
Role of transcriptional and po ...... s in liver cancer progression.
@en
Role of transcriptional and po ...... s in liver cancer progression.
@nl
prefLabel
Role of transcriptional and po ...... s in liver cancer progression.
@en
Role of transcriptional and po ...... s in liver cancer progression.
@nl
P2093
P2860
P50
P356
P1433
P1476
Role of transcriptional and po ...... es in liver cancer progression
@en
P2093
Claudio F Feo
Diego F Calvisi
Fabiana Salis
Francesco Feo
Maddalena Frau
Maria A Seddaiu
Maria I Demartis
Maria L Tomasi
Maria M Simile
Rosa M Pascale
P2860
P304
P356
10.1002/HEP.25643
P407
P577
2012-06-05T00:00:00Z