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相关概念视频

Fixing Double-strand Breaks02:04

Fixing Double-strand Breaks

12.6K
The double-stranded structure of DNA has two major advantages. First, it serves as a safe repository of genetic information where one strand serves as the back-up in case the other strand is damaged. Second, the double-helical structure can be wrapped around proteins called histones to form nucleosomes, which can then be tightly wound to form chromosomes. This way, DNA chains up to 2 inches long can be contained within microscopic structures in a cell. A double-stranded break not only damages...
12.6K
Homologous Recombination02:31

Homologous Recombination

50.6K
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...
50.6K
Long-patch Base Excision Repair01:02

Long-patch Base Excision Repair

7.0K
Since the discovery of the two BER pathways, there has been a debate about how a cell chooses one pathway over the other and the factors determining this selection. Numerous in vitro experiments have pointed out multiple determinants for the sub-pathway selection. These are:
7.0K
DNA Damage can Stall the Cell Cycle02:37

DNA Damage can Stall the Cell Cycle

9.2K
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...
9.2K
Nucleotide Excision Repair01:08

Nucleotide Excision Repair

37.1K
Overview
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Mismatch Repair01:36

Mismatch Repair

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Overview
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相关实验视频

Updated: Jul 5, 2025

Characterizing DNA Repair Processes at Transient and Long-lasting Double-strand DNA Breaks by Immunofluorescence Microscopy
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Characterizing DNA Repair Processes at Transient and Long-lasting Double-strand DNA Breaks by Immunofluorescence Microscopy

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DSBplot: DNA 双链断裂修复实验中的内接点

Tejasvi Channagiri, Margherita Maria Ferrari, Youngkyu Jeon

    ArXiv
    |January 18, 2024
    PubMed
    概括

    通过多种途径修复DNA双链断裂 (DSB),导致序列变化. 这项研究引入了一种新的可视化方法,以从测序数据全面分析和比较这些复杂的DNA修复模式.

    科学领域:

    • 分子生物学分子生物学
    • 遗传学 是一个遗传学.
    • 生物信息学是一种生物信息学.

    背景情况:

    • DNA 双链断裂 (DSB) 是关键的 DNA 病变,可以危及基因组的稳定性.
    • 细胞修复机制,包括非同源端连接 (NHEJ),微同源介导端连接 (MMEJ) 和同源导向重组 (HDR),解决DSB,但可以引入序列变化.
    • 当前的高通量测序分析往往缺乏对这些变化的频率,类型和位置的全面表示.

    结论:

    • 本方法通过提供对序列变异模式的全面可视化,增强了对DNA DSB修复的评估.
    • 这种方法有助于更深入地了解基因组的不稳定性和修复机制.
    • 它为研究DNA修复及其后果的研究人员提供了宝贵的工具.

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    相关实验视频

    Last Updated: Jul 5, 2025

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