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相关概念视频

Overview of DNA Repair02:25

Overview of DNA Repair

30.9K
In order to be passed through generations, genomic DNA must be undamaged and error-free. However, every day, DNA in a cell undergoes several thousand to a million damaging events by natural causes and external factors. Ionizing radiation such as UV rays, free radicals produced during cellular respiration, and hydrolytic damage from metabolic reactions can alter the structure of DNA. Damages caused include single-base alteration, base dimerization, chain breaks, and cross-linkage.
Chemically...
30.9K
Genome Copying Errors02:46

Genome Copying Errors

4.2K
DNA replication is a well-evolved process that copies millions of base pairs with high fidelity during each cell division. Occasionally a wrong base or a long stretch of wrong bases may get added to the daughter strands. If the errors are left unchecked, cells might accumulate several mutations that might endanger their  survival. Therefore, the copying errors are checked and repaired at three levels.
4.2K
Nucleotide Excision Repair01:38

Nucleotide Excision Repair

3.5K
DNA Distortion and Damage
Cells are regularly exposed to mutagens—factors in the environment that can damage DNA and generate mutations. UV radiation is one of the most common mutagens and is estimated to introduce a significant number of changes in DNA. These include bends or kinks in the structure, which can block DNA replication or transcription. If these errors are not fixed, the damage can cause mutations, which in turn can result in cancer or disease depending on which sequences are...
3.5K
Translesion DNA Polymerases02:10

Translesion DNA Polymerases

9.9K
Translesion (TLS) polymerases rescue stalled DNA polymerases at sites of damaged bases by replacing the replicative polymerase and installing a nucleotide across the damaged site. Doing so, TLS allows additional time for the cell to repair the damage before resuming regular DNA replication.
TLS polymerases are found in all three domains of life - archaea, bacteria, and eukaryotes. Of the different classes of TLS polymerases, members of the Y family are fitted with specialized structures that...
9.9K
Homologous Recombination02:31

Homologous Recombination

50.3K
The basic reaction of homologous recombination (HR) involves two chromatids that contain DNA sequences sharing a significant stretch of identity. One of these sequences uses a strand from another as a template to synthesize DNA in an enzyme-catalyzed reaction. The final product is a novel amalgamation of the two substrates. To ensure an accurate recombination of sequences, HR is restricted to the S and G2 phases of the cell cycle. At these stages, the DNA has been replicated already and the...
50.3K
DNA Damage can Stall the Cell Cycle02:37

DNA Damage can Stall the Cell Cycle

9.1K
In response to DNA damage, cells can pause the cell cycle to assess and repair the breaks. However, the cell must check the DNA at certain critical stages during the cell cycle. If the cell cycle pauses before DNA replication, the cells will contain twice the amount of DNA. On the other hand, if cells arrest after DNA replication but before mitosis, they will contain four times the normal amount of DNA. With a host of specialized proteins at their disposal,cells must use the right protein at...
9.1K

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相关实验视频

Updated: Jun 14, 2025

Visualizing and Quantifying Endonuclease-Based Site-Specific DNA Damage
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Visualizing and Quantifying Endonuclease-Based Site-Specific DNA Damage

Published on: August 21, 2021

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转录重编程和内源性DNA损伤

Lei Li1

  • 1Life Sciences Institute, Zhejiang University, Hangzhou, China; Zhejiang Provincial Key Laboratory of Cancer Molecular Cell Biology, China; Center for Life Sciences, Shaoxing Institute, Zhejiang University, Shaoxing, China.

DNA repair
|September 4, 2024
PubMed
概括

细胞分化涉及转录重编程,这可能导致DNA损伤并威胁到基因组的稳定性. 本综述探讨了转录重编程期间的DNA损伤形成,去除机制和相关疾病.

科学领域:

  • 分子生物学分子生物学
  • 遗传学 遗传学是一种遗传学.
  • 细胞生物学 细胞生物学

背景情况:

  • 转录重编程对于细胞动态,如分化和应激反应至关重要.
  • 这一过程可能会导致不利影响,损害基因组稳定性.
  • 内生DNA损伤和病变在转录重编程过程中出现.

研究的目的:

  • 审查细胞分化过程中DNA损伤形成的机制.
  • 讨论涉及去除这些DNA病变的细胞通路.
  • 探索与转录重编程和基因组不稳定性相关的疾病.

主要方法:

  • 对转录,DNA损伤和细胞修复机制研究的文献综述.
  • 分析内源性DNA损伤路径,包括甲生成和R循环积累.
  • 检查与DNA链断裂相关的DNA糖酶活性.

主要成果:

  • 氧化蛋白质去甲基化产生甲,导致DNA交叉链接.
  • 高的转录水平可能导致非计划的R循环形成.
  • 在印记逆转期间的DNA糖酶活性会导致DNA链断裂.

结论:

关键词:
阿尔德脱酶的使用DNA 跨链交叉连接.这是一种DNA-蛋白质交叉链接.脱甲基化脱甲基化不同化的差异化内生DNA损伤是内生DNA损伤.表观遗传学 在表观遗传学中,表观遗传学是指表观遗传学.甲甲是一种形式的甲.这是一个R环.转录重编程转录的重编程

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Author Spotlight: Combining Proximity Ligand Assay with Gamma-H2AX Staining to Characterize Protein Interactions in DNA Damage Response
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Author Spotlight: Combining Proximity Ligand Assay with Gamma-H2AX Staining to Characterize Protein Interactions in DNA Damage Response

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Laser Microirradiation to Study In Vivo Cellular Responses to Simple and Complex DNA Damage
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Laser Microirradiation to Study In Vivo Cellular Responses to Simple and Complex DNA Damage

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相关实验视频

Last Updated: Jun 14, 2025

Visualizing and Quantifying Endonuclease-Based Site-Specific DNA Damage
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Visualizing and Quantifying Endonuclease-Based Site-Specific DNA Damage

Published on: August 21, 2021

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Author Spotlight: Combining Proximity Ligand Assay with Gamma-H2AX Staining to Characterize Protein Interactions in DNA Damage Response
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Author Spotlight: Combining Proximity Ligand Assay with Gamma-H2AX Staining to Characterize Protein Interactions in DNA Damage Response

Published on: August 2, 2024

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Laser Microirradiation to Study In Vivo Cellular Responses to Simple and Complex DNA Damage
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Laser Microirradiation to Study In Vivo Cellular Responses to Simple and Complex DNA Damage

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  • 细胞分化期间的转录重编程对基因组稳定性构成重大威胁,原因是内源性DNA损伤.
  • 了解这些损伤途径和修复机制对于理解相关疾病至关重要.
  • 需要进一步的研究来阐明与转录重编程诱导的基因组不稳定性相关的疾病的全谱.