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関連する概念動画

Nucleosome Remodeling02:54

Nucleosome Remodeling

11.3K
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...
11.3K
Duplication of Chromatin Structure02:05

Duplication of Chromatin Structure

7.4K
The process of chromosome duplication during cell division requires genome-wide disruption and re-assembly of chromatin. The chromatin structure must be accurately inherited, reassembled, and maintained in the daughter cells to ensure lineage propagation.
The basic unit of the chromatin is the nucleosome, consisting of DNA wrapped around octameric histone proteins and short stretches of linker DNA separating individual nucleosomes. The histone proteins within the nucleosome have their...
7.4K
Chromatin Packaging02:21

Chromatin Packaging

22.5K
Each human somatic cell contains 6 billion base-pairs of DNA. Each base-pair is 0.34 nm long, which means that each diploid cell contains a staggering 2 meters of DNA. How is such a long DNA strand packed inside a nucleus measuring only 10 - 20 microns in diameter? 
The chromatin
In combination with specialized DNA binding protein called Histones, the DNA double helix forms a compact DNA: protein complex called chromatin. The chromatin itself is further compacted into higher-order...
22.5K
Chromatin Packaging01:32

Chromatin Packaging

19.8K
Each human somatic cell contains 6 billion base pairs of DNA. Each base pair is 0.34 nm long, meaning each diploid cell contains a staggering 2 meters of DNA. This long DNA strand is packed inside a nucleus measuring only 10-20 microns in diameter with the help of specialized DNA-binding proteins called histones. Together they form a compact DNA-protein complex called chromatin. The chromatin is further compacted into higher-order structures. The highest level of compaction is achieved during...
19.8K
Chromatin Packaging02:21

Chromatin Packaging

9.9K
9.9K
The Nucleosome Core Particle01:12

The Nucleosome Core Particle

2.5K
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...
2.5K

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Updated: Feb 21, 2026

Deciphering Molecular Mechanism of Histone Assembly by DNA Curtain Technique
06:32

Deciphering Molecular Mechanism of Histone Assembly by DNA Curtain Technique

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核素-Chd1構造とクロマチンの改造への影響

Lucas Farnung1, Seychelle M Vos1, Christoph Wigge1

  • 1Max Planck Institute for Biophysical Chemistry, Department of Molecular Biology, Am Fassberg 11, 37077 Göttingen, Germany.

Nature
|October 12, 2017
PubMed
まとめ

染色体ヘリカーゼ-DNA結合タンパク質1 (Chd1) は,DNAを分離し,そのATPアゼモーターを転位のために位置づけることによって,核細胞を再構成する. この構造的な洞察は,Chd1がDNAの転写を容易にし,細胞の多能性を維持する方法を示しています.

科学分野:

  • 分子生物学
  • 構造生物学
  • エピジェネティクス

背景:

  • 染色体改造因子は 転写,複製,修復などの DNA プロセスに不可欠です
  • 保存された染色体ヘリカーゼ-DNA結合タンパク質1 (Chd1) は,核細胞間隔,RNAポリメラーゼII通過,および細胞多能性において役割を果たす.

研究 の 目的:

  • 酵母菌Saccharomyces cerevisiae Chd1のニュクレオソームに結合した冷凍電子顕微鏡構造を決定する.
  • Chd1が核細胞を再構成し,DNAのアクセシビリティに影響を与えるメカニズムを解明する.

主な方法:

  • クリオ電子顕微鏡で4.8 Åの解像度.
  • Chd1核細胞複合体の構造分析

主要な成果:

  • Chd1はヒストンオクタマーから2つのDNA回転を分離し,触媒的にバランスの取れた状態でDNA回転の間に結合します.
  • 特定のドメイン (SANT,SLIDE,ATPaseモーター) は,定義された超螺旋位置 (SHL) およびヒストンH4でDNAと相互作用する.
  • ダブルクロモドメインはATPアザの閉塞を促進し,DNA転位と核細胞の再構築を可能にします.

結論:

さらに関連する動画

Assembly of Nucleosomal Arrays from Recombinant Core Histones and Nucleosome Positioning DNA
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Assembly of Nucleosomal Arrays from Recombinant Core Histones and Nucleosome Positioning DNA

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In Vitro Characterization of Histone Chaperones using Analytical, Pull-Down and Chaperoning Assays
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In Vitro Characterization of Histone Chaperones using Analytical, Pull-Down and Chaperoning Assays

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関連する実験動画

Last Updated: Feb 21, 2026

Deciphering Molecular Mechanism of Histone Assembly by DNA Curtain Technique
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Deciphering Molecular Mechanism of Histone Assembly by DNA Curtain Technique

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Assembly of Nucleosomal Arrays from Recombinant Core Histones and Nucleosome Positioning DNA
10:40

Assembly of Nucleosomal Arrays from Recombinant Core Histones and Nucleosome Positioning DNA

Published on: September 10, 2013

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In Vitro Characterization of Histone Chaperones using Analytical, Pull-Down and Chaperoning Assays
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In Vitro Characterization of Histone Chaperones using Analytical, Pull-Down and Chaperoning Assays

Published on: December 29, 2021

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  • この構造はChd1がDNAの回転を緩め 核細胞を再構成するメカニズムを示しています
  • Chd1のATPアゼ活動は,潜在的にラチェッティングメカニズムを含む,クロマチンの調節におけるその機能の鍵です.
  • これは,転写と多能性における Chd1 の役割の構造的基礎を提供します.