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1.
Proc Natl Acad Sci U S A ; 118(12)2021 03 23.
Article in English | MEDLINE | ID: mdl-33723077

ABSTRACT

Consumption of Eurasian bovine meat and milk has been associated with cancer development, in particular with colorectal cancer (CRC). In addition, zoonotic infectious agents from bovine products were proposed to cause colon cancer (zur Hausen et al., 2009). Bovine meat and milk factors (BMMF) are small episomal DNA molecules frequently isolated from bovine sera and milk products, and recently, also from colon cancer (de Villiers et al., 2019). BMMF are bioactive in human cells and were proposed to induce chronic inflammation in precancerous tissue leading to increased radical formation: for example, reactive oxygen and reactive nitrogen species and elevated levels of DNA mutations in replicating cells, such as cancer progenitor cells (zur Hausen et al., 2018). Mouse monoclonal antibodies against the replication (Rep) protein of H1MSB.1 (BMMF1) were used to analyze BMMF presence in different cohorts of CRC peritumor and tumor tissues and cancer-free individuals by immunohistochemistry and Western blot. BMMF DNA was isolated by laser microdissection from immunohistochemistry-positive tissue regions. We found BMMF Rep protein present specifically in close vicinity of CD68+ macrophages in the interstitial lamina propria adjacent to CRC tissues, suggesting the presence of local chronic inflammation. BMMF1 (modified H1MSB.1) DNA was isolated from the same tissue regions. Rep and CD68+ detection increased significantly in peritumor cancer tissues when compared to tissues of cancer-free individuals. This strengthens previous postulations that BMMF function as indirect carcinogens by inducing chronic inflammation and DNA damage in replicating cells, which represent progress to progenitor cells for adenoma (polyps) formation and cancer.


Subject(s)
Antigens, CD/genetics , Antigens, Differentiation, Myelomonocytic/genetics , Cell-Free Nucleic Acids/genetics , Cell-Free Nucleic Acids/immunology , Colitis/genetics , Colitis/metabolism , Colonic Neoplasms/genetics , Colonic Neoplasms/metabolism , Macrophages/metabolism , Animals , Biomarkers , Cattle , Disease Susceptibility , Fluorescent Antibody Technique , Gene Expression , Humans , Immunohistochemistry , Macrophages/immunology
2.
Nucleic Acids Res ; 45(12): 7118-7136, 2017 Jul 07.
Article in English | MEDLINE | ID: mdl-28449087

ABSTRACT

Cytosine modifications diversify and structure the genome thereby controlling proper development and differentiation. Here, we focus on the interplay of the 5-methylcytosine reader Mbd1 and modifier Tet1 by analyzing their dynamic subcellular localization and the formation of the Tet oxidation product 5-hydroxymethylcytosine in mammalian cells. Our results demonstrate that Mbd1 enhances Tet1-mediated 5-methylcytosine oxidation. We show that this is due to enhancing the localization of Tet1, but not of Tet2 and Tet3 at heterochromatic DNA. We find that the recruitment of Tet1 and concomitantly its catalytic activity eventually leads to the displacement of Mbd1 from methylated DNA. Finally, we demonstrate that increased Tet1 heterochromatin localization and 5-methylcytosine oxidation are dependent on the CXXC3 domain of Mbd1, which recognizes unmethylated CpG dinucleotides. The Mbd1 CXXC3 domain deletion isoform, which retains only binding to methylated CpGs, on the other hand, blocks Tet1-mediated 5-methylcytosine to 5-hydroxymethylcytosine conversion, indicating opposite biological effects of Mbd1 isoforms. Our study provides new insights on how cytosine modifications, their modifiers and readers cross-regulate themselves.


Subject(s)
CpG Islands , DNA-Binding Proteins/genetics , DNA/metabolism , Gene Expression Regulation , Heterochromatin/metabolism , Mixed Function Oxygenases/genetics , Proto-Oncogene Proteins/genetics , Transcription Factors/genetics , 5-Methylcytosine/analogs & derivatives , 5-Methylcytosine/metabolism , Animals , Cell Line , DNA/genetics , DNA-Binding Proteins/metabolism , Dioxygenases/genetics , Dioxygenases/metabolism , Genes, Reporter , Green Fluorescent Proteins/genetics , Green Fluorescent Proteins/metabolism , HEK293 Cells , Heterochromatin/chemistry , Humans , Luminescent Proteins/genetics , Luminescent Proteins/metabolism , Mice , Mixed Function Oxygenases/metabolism , Mouse Embryonic Stem Cells/cytology , Mouse Embryonic Stem Cells/metabolism , Myoblasts/cytology , Myoblasts/metabolism , Oxidation-Reduction , Protein Domains , Proto-Oncogene Proteins/metabolism , Signal Transduction , Transcription Factors/metabolism , Red Fluorescent Protein
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