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Titlebook: DNA and Histone Methylation as Cancer Targets; Atsushi Kaneda,Yu-ichi Tsukada Book 2017 Springer International Publishing AG 2017 Demethyl

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DNA and Histone Methylation in Brain Cancerifferent malignant stages, including histologically benign forms and highly aggressive states, most gliomas are clinically challenging for neuro-oncologists because of their infiltrative growth patterns and inherent relapse tendency with increased malignancy and dismal prognosis. Extensive genetic a
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DNA and Histone Methylation in Gastric Cancerwith aberrant DNA hypermethylation as well as genetic alterations, and the both these infectious agents are involved in various molecular events. This chapter focuses on epigenetic aberrations in gastric cancer, including hypermethylation and its correlations with the two infectious agents as well a
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DNA and Histone Methylation in Lung Cancer and DNA repair/housekeeping genes. One of the major clinical needs is the discovery and clinical validation of new molecular biomarkers using non-or minimally invasive procedures to assist early diagnosis, prognosis and prediction of response to treatment. Histone methylation has profound effects o
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Atsushi Kaneda,Yu-ichi TsukadaDescribes the features of DNA and histone methylation associated with particular types of cancer.Compiles the current knowledge of the molecular basis of DNA and histone methylation and contextualizes
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Nikki J. Y. Lee,Julian Stringerogical development including but not limited to cell fate determination, maintenance of tissue differentiation, and cancer occurrence. Methylation of DNA and histones, the two components of chromatin, constitutes important epigenetic mechanisms that govern chromatin-based nuclear processes. In this
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Chinese Firms Between Hierarchy and Marketand is crucial for development, especially in higher eukaryotes. Three DNA (cytosine-5)-methyltransferases, Dnmt1, Dnmt3a, and Dnmt3b, have been identified. Dnmt3a and Dnmt3b are mainly responsible for establishing DNA methylation patterns in the genome. Factors interacting with Dnmt3a or Dnmt3b, hi
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The Structural Features of the CMRSng DNA methylation have been well characterized, those involved in demethylation have remained elusive until recently. Mounting evidence now suggests that the TET proteins, a family of AlkB-like Fe(II)/α-ketoglutarate-dependent dioxygenases, initiate active DNA demethylation by oxidizing 5-methylcyt
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