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GAL4 directs nucleosome sliding induced by NURF

机译:GAL4指导NURF诱导的核小体滑动

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摘要

The Drosophila nucleosome remodeling factor (NURF) is an imitation switch (ISWI)-containing chromatin remodeling complex that can catalyze nucleosome repositioning at promoter regions to regulate access by the transcription machinery. Mononucleosomes reconstituted in vitro by salt dialysis adopt an ensemble of translational positions on DNA templates. NURF induces bi-directional ‘sliding’ of these nucleosomes to a subset of preferred positions. Here we show that mononucleosome sliding catalyzed by NURF bears similarity to nucleosome movement induced by elevated temperature. Moreover, we demonstrate that the GAL4 DNA-binding domain can extend NURF-induced nucleosome movement on a GAL4-E4 promoter, expanding the stretch of histone-free DNA at GAL4 recognition sites. The direction of NURF-induced nucleosome movement can be significantly modulated by asymmetric placement of tandem GAL4 sites relative to the nucleosome core particle. As such, sequence-specific, transcription factor-directed nucleosome sliding is likely to have substantial influence on promoter activation.
机译:果蝇核小体重塑因子(NURF)是一种包含仿制开关(ISWI)的染色质重塑复合物,可催化核小体在启动子区域的重定位,以调节转录机制的访问。通过盐透析在体外重建的单核小体在DNA模板上采用了翻译位置的集合。 NURF诱导这些核小体双向“滑动”到首选位置的子集。在这里,我们显示由NURF催化的单核小体滑动与高温诱导的核小体运动具有相似性。此外,我们证明了GAL4 DNA结合结构域可以在GAL4-E4启动子上扩展NURF诱导的核小体移动,从而扩展了GAL4识别位点上无组蛋白的DNA的延伸。 NURF诱导的核小体移动的方向可以通过相对于核小体核心颗粒的不对称串联GAL4位点进行调节。这样,序列特异性,转录因子指导的核小体滑动可能对启动子激活具有实质性影响。

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