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Stable C0T-1 repeat RNA is abundant and is associated with euchromatic interphase chromosomes.
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Interphase chromatin LINEd with RNA.
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3
Nascent RNA scaffolds contribute to chromosome territory architecture and counter chromatin compaction.
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RNA as a fundamental component of interphase chromosomes: could repeats prove key?
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SAF-A mutants disrupt chromatin structure through dominant negative effects on RNAs associated with chromatin.
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XIST RNA and architecture of the inactive X chromosome: implications for the repeat genome.
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8
A region of euchromatin coincides with an extensive tandem repeat on the mouse (Mus musculus) inactive X chromosome.
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RNA: a window into the broader role of RNA in nuclear chromosome architecture.
Philos Trans R Soc Lond B Biol Sci. 2017 Nov 5;372(1733). doi: 10.1098/rstb.2016.0360.
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The X chromosome is organized into a gene-rich outer rim and an internal core containing silenced nongenic sequences.
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Aere perennius: how chromatin fidelity is maintained and lost in disease.
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LINE-1, the NORth star of nucleolar organization.
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Core factor of NEXT complex, ZCCHC8, governs the silencing of LINE1 during spermatogenesis.
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From the genome's perspective: Bearing somatic retrotransposition to leverage the regulatory potential of L1 RNAs.
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Disruption of cellular plasticity by repeat RNAs in human pancreatic cancer.
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Cytogenetic bands and sharp peaks of Alu underlie large-scale segmental regulation of nuclear genome architecture.
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An RNA-centric view of transcription and genome organization.
Mol Cell. 2024 Oct 3;84(19):3627-3643. doi: 10.1016/j.molcel.2024.08.021.
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Exploring the roles of RNAs in chromatin architecture using deep learning.
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本文引用的文献

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RNA in unexpected places: long non-coding RNA functions in diverse cellular contexts.
Nat Rev Mol Cell Biol. 2013 Nov;14(11):699-712. doi: 10.1038/nrm3679. Epub 2013 Oct 9.
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Genomic organization of human transcription initiation complexes.
Nature. 2013 Oct 3;502(7469):53-8. doi: 10.1038/nature12535. Epub 2013 Sep 18.
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Translating dosage compensation to trisomy 21.
Nature. 2013 Aug 15;500(7462):296-300. doi: 10.1038/nature12394. Epub 2013 Jul 17.
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The intertwining of transposable elements and non-coding RNAs.
Int J Mol Sci. 2013 Jun 26;14(7):13307-28. doi: 10.3390/ijms140713307.
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Transposable elements are major contributors to the origin, diversification, and regulation of vertebrate long noncoding RNAs.
PLoS Genet. 2013 Apr;9(4):e1003470. doi: 10.1371/journal.pgen.1003470. Epub 2013 Apr 25.
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HERV-H RNA is abundant in human embryonic stem cells and a precise marker for pluripotency.
Retrovirology. 2012 Dec 20;9:111. doi: 10.1186/1742-4690-9-111.
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Df31 protein and snoRNAs maintain accessible higher-order structures of chromatin.
Mol Cell. 2012 Nov 9;48(3):434-44. doi: 10.1016/j.molcel.2012.08.021. Epub 2012 Sep 27.
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Genome regulation by long noncoding RNAs.
Annu Rev Biochem. 2012;81:145-66. doi: 10.1146/annurev-biochem-051410-092902.
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Small non-coding RNAs mount a silent revolution in gene expression.
Curr Opin Cell Biol. 2012 Jun;24(3):333-40. doi: 10.1016/j.ceb.2012.03.006. Epub 2012 Mar 28.

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