A Human Artificial Chromosome Recapitulates the Metabolism of Native Telomeres in Mammalian Cells
暂无分享,去创建一个
M. Oshimura | F. Ishikawa | Y. Kazuki | S. Abe | M. Wakai
[1] P. Chartrand,et al. Telomeric noncoding RNA TERRA is induced by telomere shortening to nucleate telomerase molecules at short telomeres. , 2013, Molecular cell.
[2] H. Riethman,et al. A role for CTCF and cohesin in subtelomere chromatin organization, TERRA transcription, and telomere end protection , 2012, The EMBO journal.
[3] Leslie A. Leinwand,et al. The TEL patch of telomere protein TPP1 mediates telomerase recruitment and processivity , 2012, Nature.
[4] P. Marynen,et al. Telomere length homeostasis and telomere position effect on a linear human artificial chromosome are dictated by the genetic background , 2012, Nucleic acids research.
[5] A. Decottignies,et al. Telomere length regulates TERRA levels through increased trimethylation of telomeric H3K9 and HP1α , 2012, Nature Structural &Molecular Biology.
[6] A. Venteicher,et al. TPP1 OB-Fold Domain Controls Telomere Maintenance by Recruiting Telomerase to Chromosome Ends , 2012, Cell.
[7] Sylvain Egloff,et al. Updating the RNA polymerase CTD code: adding gene-specific layers. , 2012, Trends in genetics : TIG.
[8] T. de Lange,et al. Removal of Shelterin Reveals the Telomere End-Protection Problem , 2012, Science.
[9] C. Schildkraut,et al. Human telomeres replicate using chromosome-specific, rather than universal, replication programs , 2012, The Journal of cell biology.
[10] F. Ishikawa,et al. Kinetics of DNA replication and telomerase reaction at a single‐seeded telomere in human cells , 2012, Genes to cells : devoted to molecular & cellular mechanisms.
[11] Y. Segev,et al. Reprogramming of telomeric regions during the generation of human induced pluripotent stem cells and subsequent differentiation into fibroblast-like derivatives , 2011, Epigenetics.
[12] Sandy Chang,et al. TERRA and hnRNPA1 Orchestrate an RPA-to-POT1 Switch on Telomeric Single-Stranded DNA , 2010, Nature.
[13] Richard J. Giannone,et al. The Protein Network Surrounding the Human Telomere Repeat Binding Factors TRF1, TRF2, and POT1 , 2010, PloS one.
[14] J. Lingner,et al. Molecular Dissection of Telomeric Repeat-Containing RNA Biogenesis Unveils the Presence of Distinct and Multiple Regulatory Pathways , 2010, Molecular and Cellular Biology.
[15] M. Blasco,et al. TERRA transcripts are bound by a complex array of RNA-binding proteins. , 2010, Nature communications.
[16] E. Gilson,et al. Replication Timing of Human Telomeres Is Chromosome Arm–Specific, Influenced by Subtelomeric Structures and Connected to Nuclear Localization , 2010, PLoS genetics.
[17] Richard D. LeDuc,et al. Revealing Novel Telomere Proteins Using in Vivo Cross-linking, Tandem Affinity Purification, and Label-free Quantitative LC-FTICR-MS* , 2010, Molecular & Cellular Proteomics.
[18] R. Chawla,et al. CpG-island promoters drive transcription of human telomeres. , 2009, RNA.
[19] S. Blackwood,et al. In Vivo Stoichiometry of Shelterin Components* , 2009, The Journal of Biological Chemistry.
[20] H. Riethman,et al. TERRA RNA binding to TRF2 facilitates heterochromatin formation and ORC recruitment at telomeres. , 2009, Molecular cell.
[21] C. Schildkraut,et al. Mammalian Telomeres Resemble Fragile Sites and Require TRF1 for Efficient Replication , 2009, Cell.
[22] J. Hess,et al. MLL Associates with Telomeres and Regulates Telomeric Repeat-Containing RNA Transcription , 2009, Molecular and Cellular Biology.
[23] John N. Hutchinson,et al. An architectural role for a nuclear noncoding RNA: NEAT1 RNA is essential for the structure of paraspeckles. , 2009, Molecular cell.
[24] D. Gilbert,et al. Replication timing as an epigenetic mark , 2009, Epigenetics.
[25] Wilhelm Palm,et al. How shelterin protects mammalian telomeres. , 2008, Annual review of genetics.
[26] C. Azzalin,et al. Telomeres: The silence is broken , 2008, Cell cycle.
[27] M. Blasco,et al. Developmentally regulated transcription of mammalian telomeres by DNA-dependent RNA polymerase II , 2008, Nature Cell Biology.
[28] Dirk Eick,et al. Transcribing RNA Polymerase II Is Phosphorylated at CTD Residue Serine-7 , 2007, Science.
[29] C. Azzalin,et al. Telomeric Repeat–Containing RNA and RNA Surveillance Factors at Mammalian Chromosome Ends , 2007, Science.
[30] B. Trask,et al. Human Subtelomeric WASH Genes Encode a New Subclass of the WASP Family , 2007, PLoS genetics.
[31] T. Lange,et al. Protection of telomeres through independent control of ATM and ATR by TRF2 and POT1 , 2007, Nature.
[32] Neerja Karnani,et al. Pan-S replication patterns and chromosomal domains defined by genome-tiling arrays of ENCODE genomic areas. , 2007, Genome research.
[33] S. Q. Xie,et al. Splicing speckles are not reservoirs of RNA polymerase II, but contain an inactive form, phosphorylated on serine2 residues of the C-terminal domain. , 2006, Molecular biology of the cell.
[34] T. Mizuno,et al. Alterations of DNA and Chromatin Structures at Telomeres and Genetic Instability in Mouse Cells Defective in DNA Polymerase α , 2005, Molecular and Cellular Biology.
[35] F. Ishikawa,et al. Telomere Binding Protein Taz1 Establishes Swi6 Heterochromatin Independently of RNAi at Telomeres , 2005, Current Biology.
[36] J. Shay,et al. Asynchronous replication timing of telomeres at opposite arms of mammalian chromosomes. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[37] M. Oshimura,et al. Construction of a novel human artificial chromosome vector for gene delivery. , 2004, Biochemical and biophysical research communications.
[38] A. Silahtaroglu,et al. LNA-modified oligonucleotides are highly efficient as FISH probes , 2004, Cytogenetic and Genome Research.
[39] J. Rossier,et al. The 200-kb segmental duplication on human chromosome 21 originates from a pericentromeric dissemination involving human chromosomes 2, 18 and 13. , 2003, Gene.
[40] J. Shay,et al. Normal human telomeres are not late replicating. , 1999, Experimental cell research.
[41] H. Masumoto,et al. Distribution of CENP-B boxes reflected in CREST centromere antigenic sites on long-range alpha-satellite DNA arrays of human chromosome 21. , 1994, Human molecular genetics.
[42] J. Ross,et al. The half-life of c-myc mRNA in growing and serum-stimulated cells: influence of the coding and 3' untranslated regions and role of ribosome translocation , 1994, Molecular and cellular biology.
[43] Michael A. Barnett,et al. Telomere directed fragmentation of mammalian chromosomes , 1993, Nucleic Acids Res..
[44] W. Brown,et al. Targeted breakage of a human chromosome mediated by cloned human telomeric DNA , 1992, Nature Genetics.
[45] P. Goodfellow,et al. Functional reintroduction of human telomeres into mammalian cells. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[46] H. Willard,et al. Replication timing of DNA sequences associated with human centromeres and telomeres , 1990, Molecular and cellular biology.
[47] W. Brown,et al. Structure and polymorphism of human telomere-associated DNA , 1990, Cell.
[48] D. Gottschling,et al. Telomere proteins: Specific recognition and protection of the natural termini of Oxytricha macronuclear DNA , 1986, Cell.
[49] C. Ingles,et al. Regulation of RNA polymerase II activity in α-amanitin-resistant CHO hybrid cells , 1977, Cell.
[50] C. Ingles,et al. Regulation of RNA polymerase II activity in alpha-amanitin-resistant CHO hybrid cells. , 1977, Cell.