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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
The enzyme histone acetyltransferase adds acetyl group to the histones. Another enzyme, histone...
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Inflammatory Response01:28

Inflammatory Response

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An inflammatory response is a localized, nonspecific immune reaction that occurs when a tissue is injured. It is characterized by redness, swelling, heat, and pain, which are commonly called the cardinal signs and symptoms of inflammation. Inflammation can sometimes result in a loss of function.
Inflammation can be triggered by various stimuli, such as impact, abrasion, chemical irritation, infections, and extreme hot or cold temperatures. These can damage cells and connective tissue fibers,...
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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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Chromatin Modification in iPS Cells01:32

Chromatin Modification in iPS Cells

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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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T Cell Types and Functions01:24

T Cell Types and Functions

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When T cells with CD4 markers are activated, they give rise to two types of effector cells: helper T cells and regulatory T cells. Meanwhile, T cells with CD8 markers differentiate into effector cytotoxic T cells. The differentiation of CD4 T cells into helper T cell subsets, such as Th1, Th2, and Th17 cells, is dependent on the antigen type, antigen-presenting cell, and regulatory cytokines.
Th1 cells stimulate dendritic cells to express necessary co-stimulatory molecules on their surfaces for...
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NF-κB-dependent Signaling Pathway02:26

NF-κB-dependent Signaling Pathway

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The transcription factor NF-κB was discovered in 1986 in the lab of Nobel laureate Professor David Baltimore, for its interaction with the immunoglobulin light chain enhancer in B-cells. After more than three decades of study, it is now evident that NF-κB regulates the expression of over 100 genes. Most of these genes play an essential role in the innate and adaptive immune responses as well as the inflammatory responses of animals.
NF-κB-dependent Signaling Mechanism
The...
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このページは機械翻訳されています。他のページは英語で表示される場合があります。View in English
  1. ホーム
  2. 研究分野
  3. 生物学的科学
  4. 遺伝学
  5. エピジェネティクス (ゲノムメチレーションとエピジェノミクスを含む)
  6. ヒストンのアセチル化:炎症反応の重要な調節剤

ヒストンのアセチル化:炎症反応の重要な調節剤

Siqi Gao1, Hua Xiao1, Haodang Luo2

  • 1Institute of Pathogenic Biology, School of Basic Medical Science, Hengyang Medical College, University of South China; Hunan Provincial Key Laboratory for Special Pathogens Prevention and Control, Hengyang City, Hunan Province 421001, PR China.

Life sciences
|August 28, 2025

関連する実験動画

Assays for Validating Histone Acetyltransferase Inhibitors
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Assays for Validating Histone Acetyltransferase Inhibitors

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Author Spotlight: Developing Acetyl-Click Assay for HAT1 Inhibitor Screening
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Author Spotlight: Developing Acetyl-Click Assay for HAT1 Inhibitor Screening

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Purification of H3 and H4 Histone Proteins and the Quantification of Acetylated Histone Marks in Cells and Brain Tissue
09:43

Purification of H3 and H4 Histone Proteins and the Quantification of Acetylated Histone Marks in Cells and Brain Tissue

Published on: November 30, 2018

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PubMed で要約を見る

まとめ
この要約は機械生成です。

ヒストンのアセチル化は 遺伝子の発現と炎症反応を調節する過程である. 炎症におけるその役割を理解することで 炎症性疾患の治療対象となる可能性があります

科学分野:

  • エピジェネティクス
  • 分子生物学
  • 免疫学

背景:

  • ヒストンのアセチル化は,遺伝子発現と生物学的プロセスを調節する重要なエピジェネティック変異です.
  • ユカリオット細胞における一般的な転写後の変異であり,陽性転写レギュレータである.

研究 の 目的:

  • 炎症反応におけるヒストンアセチル化の調節を再検討する.
  • 炎症に関連するシグナル伝達経路,病原体感染,炎症性疾患に対するヒストンアセチル化の影響を調査する.

主な方法:

  • ヒストンのアセチル化と炎症に関する文献レビュー
  • 信号伝達経路,病原体相互作用,疾患関連性の分析

主要な成果:

  • ヒストンのアセチル化はクロマチンの構造と遺伝子発現に大きく影響する.
  • 炎症信号伝達経路と感染への反応を調節する上で重要な役割を果たします.
  • ヒストンのアセチル化の不調は,様々な炎症性疾患に関連しています.

結論:

  • ヒストンのアセチル化は炎症反応の重要な調節因子です.
  • ヒストンのアセチル化を標的とした治療は 炎症性疾患の有望な治療戦略です
キーワード:
ヒストンのアセチル化炎症炎症性疾患病原体感染

関連する実験動画

Assays for Validating Histone Acetyltransferase Inhibitors
09:11

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Author Spotlight: Developing Acetyl-Click Assay for HAT1 Inhibitor Screening
05:44

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962
Purification of H3 and H4 Histone Proteins and the Quantification of Acetylated Histone Marks in Cells and Brain Tissue
09:43

Purification of H3 and H4 Histone Proteins and the Quantification of Acetylated Histone Marks in Cells and Brain Tissue

Published on: November 30, 2018

21.5K
信号経路
病気に対する治療目標