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zadetkov: 361
11.
  • Reprogramming the Methylome... Reprogramming the Methylome: Erasing Memory and Creating Diversity
    Lee, Heather J.; Hore, Timothy A.; Reik, Wolf Cell stem cell, 06/2014, Letnik: 14, Številka: 6
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    The inheritance of epigenetic marks, in particular DNA methylation, provides a molecular memory that ensures faithful commitment to transcriptional programs during mammalian development. Epigenetic ...
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12.
  • Evolution and Functions of ... Evolution and Functions of Long Noncoding RNAs
    Ponting, Chris P.; Oliver, Peter L.; Reik, Wolf Cell, 02/2009, Letnik: 136, Številka: 4
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    RNA is not only a messenger operating between DNA and protein. Transcription of essentially the entire eukaryotic genome generates a myriad of non-protein-coding RNA species that show complex ...
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13.
  • Comparison of whole-genome ... Comparison of whole-genome bisulfite sequencing library preparation strategies identifies sources of biases affecting DNA methylation data
    Olova, Nelly; Krueger, Felix; Andrews, Simon ... Genome Biology, 03/2018, Letnik: 19, Številka: 1
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    Whole-genome bisulfite sequencing (WGBS) is becoming an increasingly accessible technique, used widely for both fundamental and disease-oriented research. Library preparation methods benefit from a ...
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14.
  • Single-cell epigenomics: po... Single-cell epigenomics: powerful new methods for understanding gene regulation and cell identity
    Clark, Stephen J; Lee, Heather J; Smallwood, Sébastien A ... Genome Biology, 04/2016, Letnik: 17, Številka: 1
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    Emerging single-cell epigenomic methods are being developed with the exciting potential to transform our knowledge of gene regulation. Here we review available techniques and future possibilities, ...
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15.
  • Quantitative Sequencing of ... Quantitative Sequencing of 5-Methylcytosine and 5-Hydroxymethylcytosine at Single-Base Resolution
    Booth, Michael J.; Branco, Miguel R.; Ficz, Gabriella ... Science (American Association for the Advancement of Science), 05/2012, Letnik: 336, Številka: 6083
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    5-Methylcytosine can be converted to 5-hydroxymethylcytosine (5hmC) in mammalian DNA by the ten-eleven translocation (TET) enzymes. We introduce oxidative bisulfite sequencing (oxBS-Seq), the first ...
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16.
  • scNMT-seq enables joint pro... scNMT-seq enables joint profiling of chromatin accessibility DNA methylation and transcription in single cells
    Clark, Stephen J; Argelaguet, Ricard; Kapourani, Chantriolnt-Andreas ... Nature communications, 02/2018, Letnik: 9, Številka: 1
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    Parallel single-cell sequencing protocols represent powerful methods for investigating regulatory relationships, including epigenome-transcriptome interactions. Here, we report a single-cell method ...
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17.
  • Resetting transcription fac... Resetting transcription factor control circuitry toward ground-state pluripotency in human
    Takashima, Yasuhiro; Guo, Ge; Loos, Remco ... Cell, 09/2014, Letnik: 158, Številka: 6
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    Current human pluripotent stem cells lack the transcription factor circuitry that governs the ground state of mouse embryonic stem cells (ESC). Here, we report that short-term expression of two ...
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18.
  • Low rates of mutation in cl... Low rates of mutation in clinical grade human pluripotent stem cells under different culture conditions
    Thompson, Oliver; von Meyenn, Ferdinand; Hewitt, Zoe ... Nature communications, 03/2020, Letnik: 11, Številka: 1
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    The occurrence of repetitive genomic changes that provide a selective growth advantage in pluripotent stem cells is of concern for their clinical application. However, the effect of different culture ...
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19.
  • DNA methylation aging clock... DNA methylation aging clocks: challenges and recommendations
    Bell, Christopher G; Lowe, Robert; Adams, Peter D ... Genome Biology, 11/2019, Letnik: 20, Številka: 1
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    Epigenetic clocks comprise a set of CpG sites whose DNA methylation levels measure subject age. These clocks are acknowledged as a highly accurate molecular correlate of chronological age in humans ...
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20.
  • Reprogramming DNA methylati... Reprogramming DNA methylation in the mammalian life cycle: building and breaking epigenetic barriers
    Seisenberger, Stefanie; Peat, Julian R.; Hore, Timothy A. ... Philosophical transactions of the Royal Society of London. Series B. Biological sciences, 01/2013, Letnik: 368, Številka: 1609
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    In mammalian development, epigenetic modifications, including DNA methylation patterns, play a crucial role in defining cell fate but also represent epigenetic barriers that restrict developmental ...
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