Synthetic Reversal of Epigenetic Silencing*
暂无分享,去创建一个
[1] C. Allis,et al. Mouse Polycomb Proteins Bind Differentially to Methylated Histone H3 and RNA and Are Enriched in Facultative Heterochromatin , 2006, Molecular and Cellular Biology.
[2] Kristian Helin,et al. Genome-wide mapping of Polycomb target genes unravels their roles in cell fate transitions. , 2006, Genes & development.
[3] R. Paro,et al. Interpretation of developmental signaling at chromatin: the Polycomb perspective. , 2010, Developmental cell.
[4] S. Smale,et al. Core promoter specificities of the Sp1 and VP16 transcriptional activation domains , 1995, Molecular and cellular biology.
[5] Mark J Alkema,et al. Transformation of axial skeleton due to overexpression of bmi-1 in transgenic mice , 1995, Nature.
[6] Sean D. Taverna,et al. How chromatin-binding modules interpret histone modifications: lessons from professional pocket pickers , 2007, Nature Structural &Molecular Biology.
[7] A. Hyman,et al. Quantitative Interaction Proteomics and Genome-wide Profiling of Epigenetic Histone Marks and Their Readers , 2010, Cell.
[8] J. C. Eissenberg,et al. Functional analysis of the chromo domain of HP1. , 1995, The EMBO journal.
[9] G. Evans,et al. A trithorax–like gene is interrupted by chromosome 11q23 translocations in acute leukaemias , 1992, Nature Genetics.
[10] M. A. Motaleb,et al. Targeted disruption of the mouse homologue of the Drosophila polyhomeotic gene leads to altered anteroposterior patterning and neural crest defects. , 1997, Development.
[11] H. Inoue,et al. pc1 and psc1, zebrafish homologs of Drosophila Polycomb and Posterior sex combs, encode nuclear proteins capable of complex interactions. , 2002, Biochemical and biophysical research communications.
[12] Youngchang Kim,et al. Molecular basis for the discrimination of repressive methyl-lysine marks in histone H3 by Polycomb and HP1 chromodomains. , 2003, Genes & development.
[13] T. Kouzarides. Chromatin Modifications and Their Function , 2007, Cell.
[14] Robert E. Kingston,et al. Mechanisms of Polycomb gene silencing: knowns and unknowns , 2009, Nature Reviews Molecular Cell Biology.
[15] Anke Sparmann,et al. Polycomb silencers control cell fate, development and cancer , 2006, Nature Reviews Cancer.
[16] H. Tanke,et al. Rapid flow cytometric method for measuring senescence associated β‐galactosidase activity in human fibroblasts , 2009, Cytometry. Part A : the journal of the International Society for Analytical Cytology.
[17] Giacomo Cavalli,et al. Recruitment of Polycomb group complexes and their role in the dynamic regulation of cell fate choice , 2009, Development.
[18] C C Case,et al. Regulation of an Endogenous Locus Using a Panel of Designed Zinc Finger Proteins Targeted to Accessible Chromatin Regions , 2001, The Journal of Biological Chemistry.
[19] J. Min,et al. Structural basis for specific binding of Polycomb chromodomain to histone H3 methylated at Lys 27. , 2003, Genes & development.
[20] R. Balling,et al. A role for mel-18, a Polycomb group-related vertebrate gene, during theanteroposterior specification of the axial skeleton. , 1996, Development.
[21] Jennifer L. Osborn,et al. Direct multiplexed measurement of gene expression with color-coded probe pairs , 2008, Nature Biotechnology.
[22] R. Copeland,et al. Coordinated activities of wild-type plus mutant EZH2 drive tumor-associated hypertrimethylation of lysine 27 on histone H3 (H3K27) in human B-cell lymphomas , 2010, Proceedings of the National Academy of Sciences.
[23] Kristian Helin,et al. Polycomb group proteins: navigators of lineage pathways led astray in cancer , 2009, Nature Reviews Cancer.
[24] Pamela A. Silver,et al. Eukaryotic systems broaden the scope of synthetic biology , 2009, The Journal of cell biology.
[25] B. Zani,et al. Biological rationale for the use of DNA methyltransferase inhibitors as new strategy for modulation of tumor response to chemotherapy and radiation , 2010, Molecular Cancer.
[26] D. Peeper,et al. The essence of senescence. , 2010, Genes & development.
[27] S. Varambally,et al. Genomic Loss of microRNA-101 Leads to Overexpression of Histone Methyltransferase EZH2 in Cancer , 2008, Science.
[28] D J Segal,et al. Toward controlling gene expression at will: specific regulation of the erbB-2/HER-2 promoter by using polydactyl zinc finger proteins constructed from modular building blocks. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[29] Juri Rappsilber,et al. A model for transmission of the H3K27me3 epigenetic mark , 2008, Nature Cell Biology.