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. 2012 Jul 27;47(2):228-41.
doi: 10.1016/j.molcel.2012.05.017. Epub 2012 Jun 21.

Intrinsic nucleic acid-binding activity of Chp1 chromodomain is required for heterochromatic gene silencing

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Free article

Intrinsic nucleic acid-binding activity of Chp1 chromodomain is required for heterochromatic gene silencing

Mayumi Ishida et al. Mol Cell. .
Free article

Abstract

Centromeric heterochromatin assembly in fission yeast requires the RNAi pathway. Chp1, a chromodomain (CD) protein, forms the Ago1-containing RNA-induced transcriptional silencing (RITS) complex and recruits siRNA-bound RITS to methylated histone H3 lysine 9 (H3K9me) via its CD. Here, we show that the CD of Chp1 (Chp1-CD) possesses unique nucleic acid-binding activities that are essential for heterochromatic gene silencing. Detailed electrophoretic-mobility shift analyses demonstrated that Chp1 binds to RNA via the CD in addition to its central RNA-recognition motif. Interestingly, robust RNA- and DNA-binding activity of Chp1-CD was strongly enhanced when it was bound to H3K9me, which was revealed to involve a positively charged domain within the Chp1-CD by structural analyses. These results demonstrate a role for the CD that provides a link between RNA, DNA, and methylated histone tails to ensure heterochromatic gene silencing.

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