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   1 but also removed by demethylases (the m(6)A 'erasers').                                              
     2 ymes, or so-called epigenetic 'writers' and 'erasers'.                                               
     3 on, and is removed by ADP-ribosylhydrolases (erasers).                                               
     4  10 min for PVDF membrane with MemCode stain eraser.                                                 
  
     6  data into four cohorts: the reader, writer, eraser and remodeler cohorts, together with curated intr
     7  in expression profile of epigenetic writers/erasers and chromatin-binding of histone deacetylases (H
     8 e H3 tails, recruiting catalytic writers and erasers and other components of the epigenetic machinery
     9  chromatin binding of key epigenetic writers/erasers and PcG complexes to restrict tumor development.
  
    11  studies have discovered protein 'writers', 'erasers' and 'readers' of this RNA chemical mark, as wel
    12  methyltransferases (writers), demethylases (erasers), and m(6)A-binding proteins (readers) in cells.
  
  
    15  cell type-specific roles played by writers, erasers, and readers of chromatin modifications in the d
    16 sses can broadly be classified into writers, erasers, and readers of covalent chromatin modifications
  
    18 mains function, respectively, as "writers," "erasers," and "readers" of phospho-tyrosine modification
    19 erminology, have been designated "writers," "erasers," and "readers." Such modifications in the trans
  
    21 ECM probe tip is used as an electrochemical "eraser" cleaning of the surface attached molecules and l
    22   Whereas the writers (e.g. ARTD1/PARP1) and erasers (e.g. PARG, ARH3) of poly-ADP-ribosylation (PARy
    23 ecific demethylase 1 (Lsd1) is an epigenetic eraser enzyme positively regulating differentiation and 
  
    25 ated by silencing of the m(6)A writer or the eraser enzymes, which decreased or increased HIV-1 repli
    26 teomics approach to comprehensively profile 'eraser' enzymes that recognize a lysine-4 crotonylated h
  
  
  
  
  
    32 n be reversed by demethylases that serve as "erasers." In this review, we mainly summarize recent pro
  
  
    35 ave been made in identifying the writers and erasers of histone acetylation marks during learning.   
  
    37  ADP-ribosylation signals by the readers and erasers of protein ADP-ribosylation, has been significan
  
    39 e code," although the "readers, writers, and erasers" of the cytoskeleton and epigenome have heretofo
  
  
    42  knockdown of miR-21 using a specific 'miRNA eraser' or overexpression of SPRY2 inhibited betaAR-indu
  
    44 onents of the epigenetic machinery (writers, erasers, readers, and remodelers) and are thus expected 
    45 n, and the associated epigenetic writers and erasers, represent potential targets for the treatment o
    46 l entanglement verification uses the quantum eraser technique, and demonstrates that a high degree of
    47 tribution of phosphatases, defining them as "erasers" that serve merely to restore the system to its 
    48  Among epigenetic "writers", "readers", and "erasers", the lysine methyltransferases G9a and GLP, whi
    49 d-lineage leukemia 1 (Mll1) (n = 26), and an eraser, the histone lysine (K)-specific demethylase 5C (
    50  that our device can also act as a "Landauer eraser", using externally supplied work to remove inform
  
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