Molecular and structural basis of the heterochromatin-specific chromatin remodeling activity by Arabidopsis DDM1
Osakabe, A.; Takizawa, Y.; Horikoshi, N.; Hatazawa, S.; Negishi, L.; Berger, F.; Kakutani, T.; Kurumizaka, H.
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The chromatin remodeler DECREASE IN DNA METHYLATION 1 (DDM1) deposits the histone H2A variant H2A.W and silences transposons in Arabidopsis thaliana. However, the molecular mechanisms by which DDM1 specifically targets the nucleosome containing H2A.W and allows chromatin writers to access heterochromatin remained elusive. Here, we show that DDM1 promotes remodeling of the H2A.W nucleosome and requires interactions with the H2A.W-specific C-terminal tail. The cryo-EM structure of the DDM1-H2A.W nucleosome complex revealed that DDM1 binds to the N-terminal tail of H4 and the nucleosomal DNA. Comparison with the cryo-EM structure of the nucleosome containing H2A.W suggested that DDM1 increases the DNA end flexibility of nucleosomes. Based on these biochemical and structural results, we propose that the chromatin remodeling activity of DDM1 with the heterochromatin-specific H2A.W contributes to the maintenance of repressive epigenetic marks in heterochromatin by providing DNA methyltransferases with access to nucleosomal DNA.
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