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      Association of Methylation Signatures at Hepatocellular Carcinoma Pathway Genes with Adiposity and Insulin Resistance Phenotypes

      1 , 1 , 2 , 1 , 3 , 1 , 2 , 3 , 4 , On Behalf of the MENA Project
      Nutrition and Cancer
      Informa UK Limited

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          Cell cycle proteins as promising targets in cancer therapy

          Cancer is characterized by uncontrolled tumour cell proliferation resulting from aberrant activity of various cell cycle proteins. Therefore, cell cycle regulators are considered attractive targets in cancer therapy. Intriguingly, animal models demonstrate that some of these proteins are not essential for proliferation of non-transformed cells
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            Gene body methylation can alter gene expression and is a therapeutic target in cancer.

            DNA methylation in promoters is well known to silence genes and is the presumed therapeutic target of methylation inhibitors. Gene body methylation is positively correlated with expression, yet its function is unknown. We show that 5-aza-2'-deoxycytidine treatment not only reactivates genes but decreases the overexpression of genes, many of which are involved in metabolic processes regulated by c-MYC. Downregulation is caused by DNA demethylation of the gene bodies and restoration of high levels of expression requires remethylation by DNMT3B. Gene body methylation may, therefore, be an unexpected therapeutic target for DNA methylation inhibitors, resulting in the normalization of gene overexpression induced during carcinogenesis. Our results provide direct evidence for a causal relationship between gene body methylation and transcription. Copyright © 2014 Elsevier Inc. All rights reserved.
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              Loss of Apc in vivo immediately perturbs Wnt signaling, differentiation, and migration.

              Although Apc is well characterized as a tumor-suppressor gene in the intestine, the precise mechanism of this suppression remains to be defined. Using a novel inducible Ahcre transgenic line in conjunction with a loxP-flanked Apc allele we, show that loss of Apc acutely activates Wnt signaling through the nuclear accumulation of beta-catenin. Coincidentally, it perturbs differentiation, migration, proliferation, and apoptosis, such that Apc-deficient cells maintain a "crypt progenitor-like" phenotype. Critically, for the first time we confirm a series of Wnt target molecules in an in vivo setting and also identify a series of new candidate targets within the same setting.
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                Author and article information

                Journal
                Nutrition and Cancer
                Nutrition and Cancer
                Informa UK Limited
                0163-5581
                1532-7914
                January 09 2019
                July 04 2019
                November 20 2018
                July 04 2019
                : 71
                : 5
                : 840-851
                Affiliations
                [1 ] Department of Nutrition, Food Science and Physiology, and Center for Nutrition Research, University of Navarra, Pamplona, Spain;
                [2 ] Navarra Institute for Health Research (IdiSNA), Pamplona, Spain;
                [3 ] CIBERobn, Fisiopatología de la Obesidad y la Nutrición, Carlos III Health Institute, Madrid, Spain;
                [4 ] Madrid Institute of Advanced Studies (IMDEA Food), Madrid, Spain
                Article
                10.1080/01635581.2018.1531136
                30457363
                4cb2839e-fedf-4db3-bff9-67e3d012d71c
                © 2019
                History

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