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               <dc:title>Vitamin B12 is a limiting factor for induced cellular plasticity and tissue repair</dc:title>
               <dc:creator>Kovatcheva, Marta</dc:creator>
               <dc:creator>Meléndez Esteban, Elena</dc:creator>
               <dc:creator>Chondronasiou, Dafni</dc:creator>
               <dc:creator>Pietrocola, Federico</dc:creator>
               <dc:creator>Bernad, Raquel</dc:creator>
               <dc:creator>Caballé Mestres, Adrià</dc:creator>
               <dc:creator>Junza Martínez, Alexandra</dc:creator>
               <dc:creator>Capellades, Jordi</dc:creator>
               <dc:creator>Holguín Horcajo, Adrián</dc:creator>
               <dc:creator>Prats, Neus</dc:creator>
               <dc:creator>Durand, Sylvere</dc:creator>
               <dc:creator>Rovira, Meritxell</dc:creator>
               <dc:creator>Yanes, Oscar</dc:creator>
               <dc:creator>Stephan-Otto Attolini, Camille</dc:creator>
               <dc:creator>Kroemer, Guido</dc:creator>
               <dc:creator>Serrano Marugán, Manuel</dc:creator>
               <dc:subject>Vitamines hidrosolubles</dc:subject>
               <dc:subject>Epigenètica</dc:subject>
               <dc:subject>Water-soluble vitamins</dc:subject>
               <dc:subject>Epigenetics</dc:subject>
               <dc:description>Transient reprogramming by the expression of OCT4, SOX2, KLF4 and MYC (OSKM) is a therapeutic strategy for tissue regeneration and rejuvenation, but little is known about its metabolic requirements. Here we show that OSKM reprogramming in mice causes a global depletion of vitamin B12 and molecular hallmarks of methionine starvation. Supplementation with vitamin B12 increases the efficiency of reprogramming both in mice and in cultured cells, the latter indicating a cell-intrinsic effect. We show that the epigenetic mark H3K36me3, which prevents illegitimate initiation of transcription outside promoters (cryptic transcription), is sensitive to vitamin B12 levels, providing evidence for a link between B12 levels, H3K36 methylation, transcriptional fidelity and efficient reprogramming. Vitamin B12 supplementation also accelerates tissue repair in a model of ulcerative colitis. We conclude that vitamin B12, through its key role in one-carbon metabolism and epigenetic dynamics, improves the efficiency of in vivo reprogramming and tissue repair</dc:description>
               <dc:date>2023-12-05T12:17:24Z</dc:date>
               <dc:date>2023-12-05T12:17:24Z</dc:date>
               <dc:date>2023-11-16</dc:date>
               <dc:date>2023-12-05T12:17:25Z</dc:date>
               <dc:type>info:eu-repo/semantics/article</dc:type>
               <dc:type>info:eu-repo/semantics/publishedVersion</dc:type>
               <dc:relation>Reproducció del document publicat a: https://doi.org/10.1038/s42255-023-00916-6</dc:relation>
               <dc:relation>Nature Metabolism, 2023, vol. 5, p. 1911-1930</dc:relation>
               <dc:relation>https://doi.org/10.1038/s42255-023-00916-6</dc:relation>
               <dc:rights>cc-by (c) Marta Kovatcheva et al., 2023</dc:rights>
               <dc:rights>http://creativecommons.org/licenses/by/3.0/es/</dc:rights>
               <dc:rights>info:eu-repo/semantics/openAccess</dc:rights>
               <dc:publisher>Nature Publishing Group</dc:publisher>
               <dc:source>Articles publicats en revistes (Ciències Fisiològiques)</dc:source>
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