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相关概念视频

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...
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Epigenetic Regulation01:46

Epigenetic Regulation

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Epigenetic mechanisms play an essential role in healthy development. Conversely, precisely regulated epigenetic mechanisms are disrupted in diseases like cancer.
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Chromatin Modification in iPS Cells01:32

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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...
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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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Histone Modification02:32

Histone Modification

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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
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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...
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Measuring Single-Cell Aging with an Imaging-based Biomarker of Chromatin and Epigenetic Aging
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单细胞染色体修饰分析显示随着年龄的增长而增加表观遗传变异

Peggie Cheung1, Francesco Vallania2, Hayley C Warsinske2

  • 1Institute for Immunity, Transplantation, and Infection, Stanford University School of Medicine, Stanford, CA 94305, USA; Department of Medicine, Division of Immunology and Rheumatology, Stanford University School of Medicine, Stanford, CA 94305, USA.

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概括

人类免疫细胞中的染色质修饰因细胞类型和年龄而异. 衰老会增加这些关键表观遗传标记的个体差异和细胞变异性.

关键词:
表观遗传学年龄增长细胞的身份染色体的修饰遗传性基因子免疫系统质量细胞测量转录噪声双胞胎

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科学领域:

  • 免疫学
  • 表观遗传学
  • 细胞生物学

背景情况:

  • 染色体的修改调节了DNA模板的过程.
  • 了解免疫细胞染色体的变异性是有限的.

研究的目的:

  • 人体免疫细胞中的染色体修饰.
  • 研究与年龄相关的变化和遗传性.

主要方法:

  • 用于单细胞分析的多重质量细胞计.
  • 分析人类原发性免疫细胞和双胞胎队列.

主要成果:

  • 观察到不同的细胞类型和谱系特异性的染色体模式.
  • 衰老会增加个体间的异质性和细胞间的变异性.
  • 染色质修饰显示遗传性,但衰老效应是不可遗传的.

结论:

  • 开发了一个染色体和免疫学研究平台.
  • 衰老显著影响免疫细胞中的染色质修饰.