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関連する概念動画

Chromatin Packaging01:32

Chromatin Packaging

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...
Chromatin Packaging02:21

Chromatin Packaging

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 structures.
Chromatin Packaging02:21

Chromatin Packaging

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 structures.
The Nucleosome01:19

The Nucleosome

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...
The Nucleosome02:33

The Nucleosome

DNA in a human cell is almost 2m long and it is packed inside a tiny nucleus that is only a few microns in diameter. The level of compaction of DNA inside the nucleus is astonishing. It is organized into several sequentially higher levels of compaction to 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.
DNA is wound twice around a protein complex called histone core, that consist of 8 histone proteins. This complex...
The Nucleosome02:33

The Nucleosome

DNA in a human cell is almost 2m long and it is packed inside a tiny nucleus that is only a few microns in diameter. The level of compaction of DNA inside the nucleus is astonishing. It is organized into several sequentially higher levels of compaction to 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.
DNA is wound twice around a protein complex called histone core, that consist of 8 histone proteins. This complex...

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関連する実験動画

Updated: Jun 21, 2026

CD Spectroscopy to Study DNA-Protein Interactions
06:48

CD Spectroscopy to Study DNA-Protein Interactions

Published on: February 10, 2022

セントロメリックヌクレオソームは,陽性DNAスーパーコイルを誘発する.

Takehito Furuyama1, Steven Henikoff

  • 1Howard Hughes Medical Institute, Fred Hutchinson Cancer Research Center, Seattle, WA 98109, USA.

Cell
|July 15, 2009
PubMed
まとめ

セントロメア遺伝は,ヒストンの変種CenH3.3を含むユニークな核細胞に依存しています. これらのヌクレオソームは,正規のヒストンヌクレオソームとは異なり,ポジティブなスーパーコーリングを誘導し,セントロメア安定性を説明する可能性がある.

科学分野:

  • エピジェネティクス エピジェネティクス
  • 分子生物学は分子生物学である.
  • 染色体生物学について

背景:

  • セントロメアは染色体分離に不可欠ですが,それらの表遺伝子維持機構は不明です.
  • セントロメア同一性は,ヒストンの変種であるCenH3を持つ核細胞に依存し,カノニカルなH3.3を代替する.
  • カノニカルH3核細胞はDNAを左利きで包み込み,負のスーパーコイルを誘発する.

研究 の 目的:

  • CenH3核細胞の生体物理的性質を調査する.
  • セントロメア遺伝におけるCenH3核細胞のインビボ機能を決定する.
  • セントロメア維持のメカニズムを解明する.

主な方法:

  • ドロソフィラのCenH3核細胞を再構成する.
  • DNAスーパーコーリングアッセイ DNAスーパーコーリングアッセイ
  • 芽生えた酵母菌のミニクロモソームを用いたin vivo研究.
  • 温度感受性キネトコアタンパク質変異体の分析.

主要な成果:

  • CenH3核細胞は,陽性スーパーコイルを誘導し,右側のDNA包み方を示しています.
  • CenH3による陽性な超回転は,機能的な酵母センターメアで確認されました.

さらに関連する動画

In Situ Nucleosome Assembly for Single-Molecule Correlative Force and Fluorescence Microscopy
05:58

In Situ Nucleosome Assembly for Single-Molecule Correlative Force and Fluorescence Microscopy

Published on: September 6, 2024

Immunofluorescence Analysis of Endogenous and Exogenous Centromere-kinetochore Proteins
05:35

Immunofluorescence Analysis of Endogenous and Exogenous Centromere-kinetochore Proteins

Published on: March 3, 2016

関連する実験動画

Last Updated: Jun 21, 2026

CD Spectroscopy to Study DNA-Protein Interactions
06:48

CD Spectroscopy to Study DNA-Protein Interactions

Published on: February 10, 2022

In Situ Nucleosome Assembly for Single-Molecule Correlative Force and Fluorescence Microscopy
05:58

In Situ Nucleosome Assembly for Single-Molecule Correlative Force and Fluorescence Microscopy

Published on: September 6, 2024

Immunofluorescence Analysis of Endogenous and Exogenous Centromere-kinetochore Proteins
05:35

Immunofluorescence Analysis of Endogenous and Exogenous Centromere-kinetochore Proteins

Published on: March 3, 2016

  • このユニークなトポロジーは,非オクタメリックな核細胞と,キネトコアタンパク質の利用可能な表面を示唆しています.
  • 結論:

    • CenH3核個体による右手のDNA包装は,セントロメア同一性の重要な特徴です.
    • CenH3核個体の独特のトポロジーは,正規の核個体との混合を防止し,セントロメア位置のユニークさを保証する可能性があります.
    • このメカニズムは,セントロメアの表遺伝的維持と遺伝に関する洞察を提供します.