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相关概念视频

Inheritance of Chromatin Structures03:17

Inheritance of Chromatin Structures

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Epigenetics is the study of inherited changes in a cell's phenotype without changing the DNA sequences. It provides a form of memory for the differential gene expression pattern to maintain cell lineage, position-effect variegation, dosage compensation, and maintenance of chromatin structures such as telomeres and centromeres. For example, the structure and location of the centromere on chromosomes are epigenetically inherited. Its functionality is not dictated or ensured by the underlying...
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Chromatin Packaging02:21

Chromatin Packaging

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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...
15.2K
Nucleosome Remodeling02:54

Nucleosome Remodeling

9.0K
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...
9.0K
Duplication of Chromatin Structure02:05

Duplication of Chromatin Structure

5.4K
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...
5.4K
Spreading of Chromatin Modifications02:25

Spreading of Chromatin Modifications

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The histone proteins in the nucleosomes are post-translationally modified (PTM) to increase or decrease access to DNA. The commonly observed PTMs are methylation, acetylation, phosphorylation, and ubiquitination of lysine amino acids in the histone H3 tail region. These histone modifications have specific meaning for the cell. Hence, they are called "histone code". The protein complex involved in histone modification is termed as "reader-writer" complex.
Writers
The writer...
8.2K
Chromatin Position Affects Gene Expression02:35

Chromatin Position Affects Gene Expression

23.2K
Chromatin is the massive complex of DNA and proteins packaged inside the nucleus. The complexity of chromatin folding and how it is packaged inside the nucleus greatly influences  access to genetic information. Generally, the nucleus' periphery is considered transcriptionally repressive, while the cell's interior is considered a transcriptionally active area. 
Topologically Associated Domains (TADs)
The 3-dimensional positioning of chromatin in the nucleus influences the...
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相关实验视频

Updated: Jun 7, 2025

Deciphering High-Resolution 3D Chromatin Organization via Capture Hi-C
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Deciphering High-Resolution 3D Chromatin Organization via Capture Hi-C

Published on: October 14, 2022

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3D染色体折叠的演变 3D染色体折叠的演变

Lucía Álvarez-González1, Aurora Ruiz-Herrera1

  • 1Genome Integrity and Instability Group, Institut de Biotecnologia i Biomedicina and Departament de Biologia Cel.lular, Fisiologia i Immunologia, Universitat Autònoma de Barcelona, Cerdanyola del Vallès, Spain; email: lucia.alvarez@uab.cat, aurora.ruizherrera@uab.cat.

Annual review of animal biosciences
|November 12, 2024
PubMed
概括

基因组进化不仅涉及序列变化. 染色体组织和DNA相互作用驱动进化的可塑性和谱系特异性变化,特别是在生殖细胞中,影响遗传.

科学领域:

  • 基因组学就是基因组学.
  • 进化生物学 进化生物学
  • 细胞生物学 细胞生物学

背景情况:

  • 基因组进化研究传统上侧重于序列保护.
  • 细胞功能依赖于复杂的基因网络和DNA相互作用.
  • 了解染色体组织的作用是基因组可塑性的关键.

研究的目的:

  • 为了回顾动物生命树中染色质组织的演变.
  • 通过检查多层基因组组织来探索基因组进化.
  • 突出染色体交叉在进化过程中的作用.

主要方法:

  • 审查有关基因组进化和染色体组织的现有文献.
  • 分析基因组进化的一般方面,包括模式和节奏.
  • 探索基因组和染色体大小如何影响染色体折叠模式.

主要成果:

  • 基因组和染色体大小调节色素折叠模式.
  • 染色素相互作用促进了特定系谱的染色体重组,特别是在生殖细胞中.
  • 染色体组织水平之间的交叉对基因组进化可塑性有助.

结论:

关键词:
三维基因组是3D的这就是Hi-C.我们的祖先基因组.染色体重组是染色体的重组.胚胎细胞是一种生殖细胞.拓学相关的域名.

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In-Nucleus Hi-C in Drosophila Cells

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  • 染色体组织在基因组进化中发挥着至关重要的作用,超越了序列保存.
  • 生殖系染色体的结构和功能对基因组进化,维护和遗传至关重要.
  • 研究维持生殖系染色体的机械力量对于理解进化过程至关重要.