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相关概念视频

Epigenetic Regulation01:37

Epigenetic Regulation

3.0K
Epigenetic changes alter the physical structure of the DNA without changing the genetic sequence and often regulate whether genes are turned on or off. This regulation ensures that each cell produces only proteins necessary for its function. For example, proteins that promote bone growth are not produced in muscle cells. Epigenetic mechanisms play an essential role in healthy development. Conversely, precisely regulated epigenetic mechanisms are disrupted in diseases like cancer.
X-chromosome...
3.0K
Spreading of Chromatin Modifications02:25

Spreading of Chromatin Modifications

8.3K
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...
8.3K
Inheritance of Chromatin Structures03:17

Inheritance of Chromatin Structures

6.2K
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...
6.2K
Chromatin Structure Regulates pre-mRNA Processing02:41

Chromatin Structure Regulates pre-mRNA Processing

7.0K
In eukaryotic cells, nascent mRNA transcripts need to undergo many post-transcriptional modifications to reach the cell cytoplasm and translate into functional proteins. For a long time, transcription and pre-mRNA processing were considered two independent events that occur sequentially in the cell. However, it has now been well established that transcription and pre-mRNA processing are two simultaneous processes that are precisely regulated inside the cell.
The chromatin structure, especially...
7.0K
Duplication of Chromatin Structure02:05

Duplication of Chromatin Structure

5.5K
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...
5.5K
Histone Modification02:32

Histone Modification

13.3K
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...
13.3K

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相关实验视频

Updated: Jun 26, 2025

Repressing Gene Transcription by Redirecting Cellular Machinery with Chemical Epigenetic Modifiers
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Repressing Gene Transcription by Redirecting Cellular Machinery with Chemical Epigenetic Modifiers

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系统的表观基因组编辑捕捉了染色质修饰的上下文依赖的指导功能.

Cristina Policarpi1, Marzia Munafò1, Stylianos Tsagkris1

  • 1Epigenetics and Neurobiology Unit, European Molecular Biology Laboratory (EMBL), Rome, Italy.

Nature genetics
|May 9, 2024
PubMed
概括

研究人员开发了一个新的表观基因组编辑平台,精确地编程染色体修改. 这个工具揭示了特定的表观遗传标记,如H3K4me3,如何因果控制基因表达,以及DNA序列如何影响这些效应.

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CRISPR Epigenome Editing in Human Cells using Plasmid DNA Transfection and mRNA Nucleofection Delivery
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CRISPR Epigenome Editing in Human Cells using Plasmid DNA Transfection and mRNA Nucleofection Delivery

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Chromatin Extraction from Frozen Chimeric Liver Tissue for Chromatin Immunoprecipitation Analysis
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Chromatin Extraction from Frozen Chimeric Liver Tissue for Chromatin Immunoprecipitation Analysis

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Last Updated: Jun 26, 2025

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CRISPR Epigenome Editing in Human Cells using Plasmid DNA Transfection and mRNA Nucleofection Delivery
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Chromatin Extraction from Frozen Chimeric Liver Tissue for Chromatin Immunoprecipitation Analysis
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科学领域:

  • 表观遗传学和基因调控
  • 分子生物学分子生物学
  • 基因组学就是基因组学.

背景情况:

  • 染色体的修改调节了基因表达模式.
  • 这些修改对转录的因果作用和上下文依赖的影响尚未完全理解.

研究的目的:

  • 开发一个模块化表观基因组编辑平台,用于精确编程染色质修饰.
  • 在单细胞分辨率下系统量化对特定染色质修饰的转录反应.

主要方法:

  • 开发一个模块化表观基因组编辑平台,能够编程九个关键染色体修改或组合.
  • 将平台与单细胞读数结合起来,以测量转录反应.
  • 分析DNA序列图案对染色体标记效应的影响.

主要成果:

  • 在促进体中,素H3氨酸4三甲基化 (H3K4me3) 因果指导转录,通过重塑染色体格局.
  • 发现DNA序列图案调节了染色体标记的转录影响,显示了类似开关和减弱效应.
  • 对H3K27三甲基化 (H3K27me3) 和H2AK119单双化 (H2AK119ub) 的组合向最大限度地降低了基因沉默.

结论:

  • 精确扰动策略阐明了染色体修饰驱动的转录的因果原理.
  • 定量转录反应是通过染色体标记和DNA序列之间的上下文相互作用进行校准的.