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Mechanistic Insights on the Inhibition of C5 DNA Methyltransferases by Zebularine
Authors:Christine Champion  Dominique Guianvarc'h  Catherine Sénamaud-Beaufort  Renata Z Jurkowska  Albert Jeltsch  Lo?c Ponger  Paola B Arimondo  Anne-Laure Guieysse-Peugeot
Institution:1. MNHN CNRS UMR7196, Paris, France.; 2. INSERM U565, Paris, France.; 3. Laboratoire des Biomolécules, UPMC Université Paris 06, CNRS, ENS, FR, Paris, France.; 4. Jacobs University Bremen, School of Engineering and Science, Bremen, Germany.;University Paris 7, France
Abstract:In mammals DNA methylation occurs at position 5 of cytosine in a CpG context and regulates gene expression. It plays an important role in diseases and inhibitors of DNA methyltransferases (DNMTs)—the enzymes responsible for DNA methylation—are used in clinics for cancer therapy. The most potent inhibitors are 5-azacytidine and 5-azadeoxycytidine. Zebularine (1-(β-D-ribofuranosyl)-2(1H)- pyrimidinone) is another cytidine analog described as a potent inhibitor that acts by forming a covalent complex with DNMT when incorporated into DNA. Here we bring additional experiments to explain its mechanism of action. First, we observe an increase in the DNA binding when zebularine is incorporated into the DNA, compared to deoxycytidine and 5-fluorodeoxycytidine, together with a strong decrease in the dissociation rate. Second, we show by denaturing gel analysis that the intermediate covalent complex between the enzyme and the DNA is reversible, differing thus from 5-fluorodeoxycytidine. Third, no methylation reaction occurs when zebularine is present in the DNA. We confirm that zebularine exerts its demethylation activity by stabilizing the binding of DNMTs to DNA, hindering the methylation and decreasing the dissociation, thereby trapping the enzyme and preventing turnover even at other sites.
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