ATP-dependent chromatin remodellers modulate nucleosome dynamics by mobilizing or disassembling nucleosomes, as well as altering nucleosome composition. These chromatin remodellers generally function by translocating along nucleosomal DNA at the H3-H4 interface of nucleosomes. Here we show that, unlike other remodellers, INO80 translocates along DNA at the H2A-H2B interface of nucleosomes and persistently displaces DNA from the surface of H2A-H2B. DNA translocation and DNA torsional strain created near the entry site of nucleosomes by INO80 promotes both the mobilization of nucleosomes and the selective exchange of H2A.Z-H2B dimers out of nucleosomes and replacement by H2A-H2B dimers without any additional histone chaperones. We find that INO80 translocates and mobilizes H2A.Z-containing nucleosomes more efficiently than those containing H2A, partially accounting for the preference of INO80 to replace H2A.Z with H2A. Our data suggest that INO80 has a mechanism for dimer exchange that is distinct from other chromatin remodellers including its paralogue SWR1.

译文

ATP依赖性染色质分子通过动员或分解核小体以及改变核小体组成来调节核小体动力学。这些染色质分子通常通过在核小体的H3-H4界面处沿着核小体DNA移位而起作用。在这里,我们表明,与其他重塑剂不同,INO80在核小体的H2A-H2B界面处沿着DNA易位,并持续地将DNA从H2A-H2B表面移位。INO80在核小体进入位点附近产生的DNA易位和DNA扭转应变促进了核小体的动员和H2A.Z-H2B二聚体从核小体中选择性交换,并被H2A-H2B二聚体替代,而无需任何额外的组蛋白伴侣。我们发现INO80比含有H2A的核小体更有效地易位和动员含H2A.Z的核小体,部分解释了INO80倾向于用H2A代替H2A.Z。我们的数据表明INO80具有二聚体交换的机制,该机制与其他染色质去除器 (包括其旁例swr1) 不同。

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