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相关概念视频

Chromatin Immunoprecipitation- ChIP02:36

Chromatin Immunoprecipitation- ChIP

11.2K
Chromatin immunoprecipitation, or ChIP, is an antibody-based technique used to identify sites on DNA that bind to transcription factors of interest or histone proteins. It also helps determine the type of histone modifications such as acetylation, phosphorylation, or methylation.
Types of ChIP
ChIP can be divided into two types - X-ChIP and N-ChIP. X-ChIP involves in vivo cross-linking of histones and regulatory proteins to DNA, fragmenting the DNA by sonication, and isolating the protein-DNA...
11.2K
Chromatin Modification in iPS Cells01:32

Chromatin Modification in iPS Cells

1.7K
Chromatin modification alters gene expression; therefore, scientists can add histone-modifying enzymes, histone variants, and chromatin remodeling complexes to somatic cells to aid reprogramming into pluripotent stem (iPS) cells.
Compact chromatin makes reprogramming difficult. Enzymes, such as histone demethylases and acetyltransferases, are often added during reprogramming to loosen the chromatin, making the DNA more accessible to transcription factors. Molecules that inhibit histone...
1.7K
Euchromatin01:01

Euchromatin

7.0K
The extent of chromatin compaction can be studied by staining chromatin using specific DNA binding dyes. Under the microscope, the dense-compacted regions take up more dye, appearing darker, while the less-compact areas take up less dye and appear lighter. Based on the compaction level, chromatins are classified into two primary forms – euchromatin and heterochromatin.
Euchromatin is the less dense region of the chromatin and stains lighter. Euchromatin contains histone H3 extensively...
7.0K
Chromatin Position Affects Gene Expression02:35

Chromatin Position Affects Gene Expression

23.4K
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...
23.4K
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

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相关实验视频

Updated: Jul 24, 2025

An Integrated Platform for Genome-wide Mapping of Chromatin States Using High-throughput ChIP-sequencing in Tumor Tissues
10:41

An Integrated Platform for Genome-wide Mapping of Chromatin States Using High-throughput ChIP-sequencing in Tumor Tissues

Published on: April 5, 2018

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IChrom-Deep:一种基于注意力的深度学习模型,用于识别染色体相互作用.

Pengyu Zhang, Hao Wu

    IEEE journal of biomedical and health informatics
    |July 4, 2023
    PubMed
    概括

    预测色素相互作用对于理解基因调节至关重要. 一个新的深度学习模型,IChrom-Deep,使用序列和基因组特征准确地识别这些相互作用,优于现有的方法.

    科学领域:

    • 基因组学就是基因组学.
    • 计算生物学 计算生物学
    • 分子生物学分子生物学

    背景情况:

    • 了解基因调节依赖于识别染色体相互作用.
    • 检测染色体相互作用的实验方法有局限性,需要计算方法.
    • 精确预测染色体相互作用对于推进基因组研究至关重要.

    研究的目的:

    • 开发一种新的深度学习模型,用于预测色素相互作用.
    • 利用序列和基因组特征来提高预测准确度.
    • 评估模型在不同细胞系的性能,并与现有方法进行比较.

    主要方法:

    • 开发了一个以注意力为基础的深度学习模型,名为IChrom-Deep.
    • 集成的DNA序列特征和基因组特征作为输入.
    • 在来自三个不同的细胞系的数据集上验证了模型.

    主要成果:

    • IChrom-Deep表现出令人满意的性能,并超过了以前的计算方法.
    • 研究了特定特征 (如序列保存和距离) 对染色质相互作用的影响.
    • 识别了关键的基因组特征,这些特征在多个细胞系中至关重要,使得具有较少特征集的表现具有可比性.

    更多相关视频

    Deciphering High-Resolution 3D Chromatin Organization via Capture Hi-C
    09:32

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

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    Chromatin Interaction Analysis with Paired-End Tag Sequencing ChIA-PET for Mapping Chromatin Interactions and Understanding Transcription Regulation
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    Chromatin Interaction Analysis with Paired-End Tag Sequencing ChIA-PET for Mapping Chromatin Interactions and Understanding Transcription Regulation

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    相关实验视频

    Last Updated: Jul 24, 2025

    An Integrated Platform for Genome-wide Mapping of Chromatin States Using High-throughput ChIP-sequencing in Tumor Tissues
    10:41

    An Integrated Platform for Genome-wide Mapping of Chromatin States Using High-throughput ChIP-sequencing in Tumor Tissues

    Published on: April 5, 2018

    10.5K
    Deciphering High-Resolution 3D Chromatin Organization via Capture Hi-C
    09:32

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

    Published on: October 14, 2022

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    Chromatin Interaction Analysis with Paired-End Tag Sequencing ChIA-PET for Mapping Chromatin Interactions and Understanding Transcription Regulation
    21:55

    Chromatin Interaction Analysis with Paired-End Tag Sequencing ChIA-PET for Mapping Chromatin Interactions and Understanding Transcription Regulation

    Published on: April 30, 2012

    30.8K

    结论:

    • IChrom-Deep是一个强大的工具,用于识别染色体相互作用.
    • 这项研究强调了序列和基因组特征在染色质相互作用预测中的重要性.
    • IChrom-Deep为未来的基因组研究提供了一种有价值的计算方法.