Cytosine base modifications regulate DNA duplex stability and metabolism

التفاصيل البيبلوغرافية
العنوان: Cytosine base modifications regulate DNA duplex stability and metabolism
المؤلفون: Corella S. Casas-Delucchi, Christoph Engel, Patrick Weber, Julia L. Daiß, M. Cristina Cardoso, Gideon Coster, Peng Zhang, Cathia Rausch, Florian D. Hastert
المصدر: Nucleic Acids Research
سنة النشر: 2021
مصطلحات موضوعية: DNA Replication, DNA polymerase, AcademicSubjects/SCI00010, DNA-Directed DNA Polymerase, Methylation, Genomic Instability, Cell Line, 03 medical and health sciences, chemistry.chemical_compound, Cytosine, Mice, 0302 clinical medicine, Genetics, Animals, Humans, Base Pairing, Molecular Biology, Cells, Cultured, In Situ Hybridization, Fluorescence, 030304 developmental biology, 0303 health sciences, Microscopy, Confocal, biology, Cell Cycle, DNA replication, DNA Helicases, Helicase, DNA, DNA-Directed RNA Polymerases, Chromatin, Cell biology, Histone, HEK293 Cells, chemistry, DNA methylation, biology.protein, 030217 neurology & neurosurgery
الوصف: DNA base modifications diversify the genome and are essential players in development. Yet, their influence on DNA physical properties and the ensuing effects on genome metabolism are poorly understood. Here, we focus on the interplay of cytosine modifications and DNA processes. We show by a combination of in vitro reactions with well-defined protein compositions and conditions, and in vivo experiments within the complex networks of the cell that cytosine methylation stabilizes the DNA helix, increasing its melting temperature and reducing DNA helicase and RNA/DNA polymerase speed. Oxidation of methylated cytosine, however, reverts the duplex stabilizing and genome metabolic effects to the level of unmodified cytosine. We detect this effect with DNA replication and transcription proteins originating from different species, ranging from prokaryotic and viral to the eukaryotic yeast and mammalian proteins. Accordingly, lack of cytosine methylation increases replication fork speed by enhancing DNA helicase unwinding speed in cells. We further validate that this cannot simply be explained by altered global DNA decondensation, changes in histone marks or chromatin structure and accessibility. We propose that the variegated deposition of cytosine modifications along the genome regulates DNA helix stability, thereby providing an elementary mechanism for local fine-tuning of DNA metabolism.
تدمد: 1362-4962
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::02bf12a33fb379ce6209b4e91a18f1c4Test
https://pubmed.ncbi.nlm.nih.gov/34133727Test
حقوق: OPEN
رقم الانضمام: edsair.doi.dedup.....02bf12a33fb379ce6209b4e91a18f1c4
قاعدة البيانات: OpenAIRE