与核体结合的NuA4乙转移酶复合物的结构
Keke Qu1,2,3, Kangjing Chen1,2,3, Hao Wang1,2,3
1MOE Key Laboratory of Protein Science, Tsinghua University, Beijing, P. R. China.
Nature
|October 5, 2022
概括
结合核体的NuA4复合体的冷EM结构揭示了它如何识别DNA和基因组. 这为基因酸转移酶对染色体调节和转录联合激活提供了洞察力.
科学领域:
- 分子生物学
- 表观遗传学
- 结构生物学
背景情况:
- 染色体结构由围绕基因组八体的DNA形成,对于真核生物的基因调节至关重要.
- 基因组H4 N-终端对于高阶染色体结构和基因沉默至关重要.
- A4复合物 (及其同类Tip60) 乙化素H4,影响染色体包装,转录和DNA修复.
研究的目的:
- 确定与核体结合的NuA4复合物的冷电子显微镜结构.
- 阐明NuA4核细胞识别和转录联合激活的机制.
主要方法:
- 结核体结合的Saccharomyces cerevisiae NuA4复合物的冷电子显微镜 (冷EM).
主要成果:
- NuA4包括催化 (HAT) 和转录激活器结合 (TRA) 模块.
- 该HAT模块通过H2A-H2B酸性补丁和DNA结合核体.
- TRA模块的多基表面靠近核体,这表明它在协同激活中的作用.
- 该结构将催化酶 (Esa1) 定位为乙化 H4 N-终端.
结论:
- 这项研究揭示了NuA4复合体的组合.
- 提供了NuA4如何识别核细胞的机制见解.
- 作为转录协活性剂的NuA4的功能被认为是一种潜在的机制.
相关概念视频
The Nucleosome Core Particle
1.1K
Nucleosomes are the DNA-histone complex, where the DNA strand is wound around the histone core. The histone core is an octamer containing two copies of H2A, H2B, H3, and H4 histone proteins.
Nucleosomes, paradoxically, perform two opposite functions simultaneously. On the one hand, their primary aim is to protect the delicate DNA strands from physical damage and help achieve a higher compaction ratio. On the other hand, they must allow polymerase enzymes to access histone-bound DNA during...
Nucleosomes, paradoxically, perform two opposite functions simultaneously. On the one hand, their primary aim is to protect the delicate DNA strands from physical damage and help achieve a higher compaction ratio. On the other hand, they must allow polymerase enzymes to access histone-bound DNA during...
1.1K
Nucleosome Remodeling
9.4K
Nucleosomes are the basic units of chromatin compaction. Each nucleosome consists of the DNA bound tightly around a histone core, which makes the DNA inaccessible to DNA binding proteins such as DNA polymerase and RNA polymerase. Hence, the fundamental problem is to ensure access to DNA when appropriate, despite the compact and protective chromatin structure.
Nucleosome remodeling complex
Eukaryotic cells have specialized enzymes called ATP-dependent nucleosome remodeling enzymes. These enzymes...
Nucleosome remodeling complex
Eukaryotic cells have specialized enzymes called ATP-dependent nucleosome remodeling enzymes. These enzymes...
9.4K
The Nucleosome
1.9K
Human DNA is almost two meters long. However, it is compressed inside a tiny nucleus measuring only a few microns in diameter. To make this degree of compaction possible, DNA is organized into several sequential levels so that it can fit into such a tiny space. The most compact form of DNA is a chromosome that can be seen under a microscope in a dividing cell.
In a chromosome, DNA is wound twice around a protein complex called a histone octamer core, which consists of 8 histone proteins. This...
In a chromosome, DNA is wound twice around a protein complex called a histone octamer core, which consists of 8 histone proteins. This...
1.9K
Histone Modification
13.7K
The histone proteins have a flexible N-terminal tail extending out from the nucleosome. These histone tails are often subjected to post-translational modifications such as acetylation, methylation, phosphorylation, and ubiquitination. Particular combinations of these modifications form “histone codes” that influence the chromatin folding and tissue-specific gene expression.
Acetylation
The enzyme histone acetyltransferase adds acetyl group to the histones. Another enzyme, histone...
Acetylation
The enzyme histone acetyltransferase adds acetyl group to the histones. Another enzyme, histone...
13.7K
Nucleoid
117
The nucleoid represents a structurally and functionally distinct region within prokaryotic cells, where the cell's DNA and associated proteins are housed. Unlike eukaryotic cells, prokaryotes lack a membrane-bound nucleus, and the nucleoid facilitates the organization and accessibility of the genetic material within this constraint. The DNA in most bacteria and archaea exists as a single, circular, double-stranded molecule that is highly compacted through supercoiling and interactions with...
117
Histone Variants at the Centromere
4.5K
Histone variants are the histone proteins with structural and sequence variations. These variants may be regarded as “mutant” forms that replace their canonical histone counterparts in the nucleosomes. Specific post-translational modifications on the histone variants enable further chromatin complexity and regulate tissue-specific gene expression. The most common histone variants are from histone H2A, H2B, and linker histone H1 families. However, several variants of histone H3...
4.5K


