Epigenetic Determinants of Cancer

Эпигенетические детерминанты рака
Stephen B. Baylin, Peter A. Jones
2016-05-18

DNA methylationcancer epigeneticsepigenetic gene silencingepigenetic therapyhistone modifiers
Epigenetic changes are present in all human cancers and are now known to cooperate with genetic alterations to drive the cancer phenotype.These changes involve DNA methylation, histone modifiers and readers, chromatin remodelers, microRNAs, and other components of chromatin.Cancer genetics and epigenetics are inextricably linked in generating the malignant phenotype; epigenetic changes can cause mutations in genes, and, conversely, mutations are frequently observed in genes that modify the epigenome.Epigenetic therapies, in which the goal is to reverse these changes, are now one standard of care for a preleukemic disorder and form of lymphoma.The application of epigenetic therapies in the treatment of solid tumors is also emerging as a viable therapeutic route.Outline 1 The biological basis of cancer 2 The importance of chromatin to cancer 3 The role of DNA methylation in cancer 4 Hypermethylated gene promoters in cancer 5 The importance of epigenetic gene silencing in early tumor progression 6 The molecular anatomy of epigenetically silenced cancer genes 7 Summary of major research issues for understanding epigenetic gene silencing in cancer 8 DNA methylation abnormalities as biomarkers for cancer detection and monitoring cancer prognosis 9 Epigenetic therapy
1
Cancer-relevant epigenetic mechanisms include DNA methylation, histone modifiers and readers, chromatin remodelers, microRNAs, and other chromatin components.
2
Epigenetic alterations occur in all human cancers and cooperate with genetic changes to drive malignant phenotypes.
3
Epigenetic therapies are emerging as a viable treatment strategy for solid tumors, while DNA methylation abnormalities may support cancer detection and prognosis monitoring.
4
Epigenetic therapies can reverse cancer-associated alterations and are established treatments for a preleukemic disorder and a type of lymphoma.
5
The relationship between cancer genetics and epigenetics is bidirectional: epigenetic changes can promote mutations, while mutations commonly affect epigenome-modifying genes.

Human cancers and their epigenetic alterations

The roles and interactions of epigenetic mechanisms and genetic alterations in driving malignant phenotypes, including their therapeutic implications

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2016-05-18
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Stephen B. Baylin
Peter A. Jones
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