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Reference - PMID:19394293 - An alpha motif at Tas3 C terminus mediates RITS cis spreading and promotes heterochromatic gene silencing.

Reference summary

PubMed ID
PMID:19394293
Title
An alpha motif at Tas3 C terminus mediates RITS cis spreading and promotes heterochromatic gene silencing.
Authors
Li H, Motamedi MR, Yip CK, Wang Z, Walz T, Patel DJ, Moazed D
Citation
Mol Cell 2009 Apr 24;34(2):155-67
Publication year
2009
Abstract
RNA interference (RNAi) plays a pivotal role in the formation of heterochromatin at the fission yeast centromeres. The RNA-induced transcriptional silencing (RITS) complex, composed of heterochromatic small interfering RNAs (siRNAs), the siRNA-binding protein Ago1, the chromodomain protein Chp1, and the Ago1/Chp1-interacting protein Tas3, provides a physical tether between the RNAi and heterochromatin assembly pathways. Here, we report the structural and functional characterization of a C-terminal Tas3 alpha-helical motif (TAM), which self-associates into a helical polymer and is required for cis spreading of RITS in centromeric DNA regions. Site-directed mutations of key residues within the hydrophobic monomer-monomer interface disrupt Tas3-TAM polymeric self-association in vitro and result in loss of gene silencing, spreading of RITS, and a dramatic reduction in centromeric siRNAs in vivo. These results demonstrate that, in addition to the chromodomain of Chp1 and siRNA-loaded Ago1, Tas3 self-association is required for RITS spreading and efficient heterochromatic gene silencing at centromeric repeat regions.

Annotation

GO biological process

GO:0031508 - pericentric heterochromatin formation

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Single locus phenotype

FYPO:0005929 - decreased chromatin binding at centromere outer repeat

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FYPO:0003411 - decreased chromatin silencing at centromere inner repeat

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FYPO:0004205 - decreased siRNA level

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FYPO:0004083 - normal protein level

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FYPO:0008073 - normal RITS complex assembly

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FYPO:0008072 - normal spatial extent of histone H3-K9 methylation at peri-centromere during vegetative growth

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