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Biophysics of Chromatin Remodeling
Annual Review of Biophysics ( IF 12.4 ) Pub Date : 2021-05-06 , DOI: 10.1146/annurev-biophys-082520-080201
Ilana M Nodelman 1 , Gregory D Bowman 1
Affiliation  

As primary carriers of epigenetic information and gatekeepers of genomic DNA, nucleosomes are essential for proper growth and development of all eukaryotic cells. Although they are intrinsically dynamic, nucleosomes are actively reorganized by ATP-dependent chromatin remodelers. Chromatin remodelers contain helicase-like ATPase motor domains that can translocate along DNA, and a long-standing question in the field is how this activity is used to reposition or slide nucleosomes. In addition to ratcheting along DNA like their helicase ancestors, remodeler ATPases appear to dictate specific alternating geometries of the DNA duplex, providing an unexpected means for moving DNA past the histone core. Emerging evidence supports twist-based mechanisms for ATP-driven repositioning of nucleosomes along DNA. In this review, we discuss core experimental findings and ideas that have shaped the view of how nucleosome sliding may be achieved.

中文翻译:


染色质重塑的生物物理学

作为表观遗传信息的主要载体和基因组 DNA 的看门人,核小体对于所有真核细胞的正常生长和发育至关重要。尽管它们本质上是动态的,但核小体会被 ATP 依赖性染色质重塑剂积极重组。染色质重塑剂包含可沿 DNA 移位的解旋酶样 ATPase 运动域,该领域长期存在的问题是如何使用这种活性来重新定位或滑动核小体。除了像它们的解旋酶祖先一样沿着 DNA 棘轮外,重塑剂 ATP 酶似乎决定了 DNA 双链体的特定交替几何形状,为将 DNA 移动通过组蛋白核心提供了一种意想不到的方式。新出现的证据支持 ATP 驱动的核小体沿 DNA 重新定位的基于扭曲的机制。在这次审查中,

更新日期:2021-05-07
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