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Genesis of Chromatin and Transcription Dynamics in the Origin of Species

机译:物种起源中染色质的发生和转录动力学

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摘要

Histone proteins compact and stabilize the genomes of Eukarya and Archaea. By forming nucleosome(-like) structures they restrict access of DNA-binding transcription regulators to cis-regulatory DNA elements. Dynamic competition between histones and transcription factors is facilitated by different classes of proteins including ATP-dependent remodeling enzymes that control assembly, access, and editing of chromatin. Here, we summarize the knowledge on dynamics underlying transcriptional regulation across the domains of life with a focus on ATP-dependent enzymes in chromatin structure or in TATA-binding protein activity. These insights suggest directions for future studies on the evolution of transcription regulation and chromatin dynamics.
机译:组蛋白可以压实并稳定Eukarya和Archaea的基因组。通过形成核小体(样)结构,它们限制了DNA结合转录调节因子对顺式调节DNA元件的访问。组蛋白和转录因子之间的动态竞争可通过不同种类的蛋白质来促进,这些蛋白质包括控制染色质装配,访问和编辑的ATP依赖性重塑酶。在这里,我们总结了整个生命域中转录调控动力学的知识,重点是染色质结构或TATA结合蛋白活性中的ATP依赖酶。这些见解为转录调节和染色质动力学的进化提供了未来研究的方向。

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