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Get Free AccessTransposons are generally kept silent by epigenetic mechanisms including DNA methylation. Here, we identified a pair of H arbinger transposon-derived proteins (HDPs), HDP1 and HDP2, as anti-silencing factors in Arabidopsis. hdp1 and hdp2 mutants displayed an enhanced silencing of transgenes and some transposons. Phylogenetic analyses revealed that HDP1 and HDP2 were co-domesticated from the Harbinger transposon-encoded transposase and DNA-binding protein, respectively. HDP1 interacts with HDP2 in the nucleus, analogous to their transposon counterparts. Moreover, HDP1 and HDP2 are associated with IDM1, IDM2, IDM3 and MBD7 that constitute a histone acetyltransferase complex functioning in DNA demethylation. HDP2 and the methyl-DNA-binding protein MBD7 share a large set of common genomic binding sites, indicating that they jointly determine the target specificity of the histone acetyltransferase complex. Thus, our data revealed that HDP1 and HDP2 constitute a functional module that has been recruited to a histone acetyltransferase complex to prevent DNA hypermethylation and epigenetic silencing.
Cheng‐Guo Duan, Xingang Wang, Shaojun Xie, Pan Li, Daisuke Miki, Kai Tang, Chuan‐Chih Hsu, Mingguang Lei, Yingli Zhong, Yueh‐Ju Hou, Zhijuan Wang, Zhengjing Zhang, Satendra K. Mangrauthia, Huawei Xu, Heng Zhang, Brian P. Dilkes, W. Andy Tao, Jian Kang Zhu (2016). A pair of transposon-derived proteins function in a histone acetyltransferase complex for active DNA demethylation. , 27(2), DOI: https://doi.org/10.1038/cr.2016.147.
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Type
Article
Year
2016
Authors
18
Datasets
0
Total Files
0
Language
en
DOI
https://doi.org/10.1038/cr.2016.147
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