DNA methylation plasticity contributes to the natural history of metastasis

scientific article

DNA methylation plasticity contributes to the natural history of metastasis is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1080/15384101.2015.1076300
P932PMC publication ID4825588
P698PubMed publication ID26223807
P5875ResearchGate publication ID280585921

P50authorManel EstellerQ3816008
P2093author name stringMiguel Vizoso
P2860cites workDynamic epigenetic regulation of the microRNA-200 family mediates epithelial and mesenchymal transitions in human tumorigenesisQ34004676
Breast cancer methylomes establish an epigenomic foundation for metastasisQ35136051
Cancer as a dysregulated epigenome allowing cellular growth advantage at the expense of the hostQ36257990
A microRNA DNA methylation signature for human cancer metastasisQ36861111
Epigenetic activation of a cryptic TBC1D16 transcript enhances melanoma progression by targeting EGFRQ37142504
Epigenetic disruption of cadherin-11 in human cancer metastasis.Q39388476
A Comprehensive DNA Methylation Profile of Epithelial-to-Mesenchymal TransitionQ57239824
P433issue18
P921main subjectDNA methylationQ874745
P1104number of pages2
P304page(s)2863-2864
P577publication date2015-07-29
P1433published inCell CycleQ1254166
P1476titleDNA methylation plasticity contributes to the natural history of metastasis
P478volume14

Reverse relations

cites work (P2860)
Q38896710DNA methylation dynamics in cellular commitment and differentiation
Q37745101Epigenetic regulation of HGF/Met receptor axis is critical for the outgrowth of bone metastasis from breast carcinoma
Q39065640Functions and Epigenetic Regulation of Wwox in Bone Metastasis from Breast Carcinoma: Comparison with Primary Tumors
Q51089746In bone metastasis miR-34a-5p absence inversely correlates with Met expression, while Met oncogene is unaffected by miR-34a-5p in non-metastatic and metastatic breast carcinomas
Q49569717SIRT1 regulates Mxd1 during malignant melanoma progression
Q38841939Stromal dynamic reciprocity in cancer: intricacies of fibroblastic-ECM interactions

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