在DNA复制终止期间建立姐妹染色体凝聚力
George Cameron1, Dominika T Gruszka1, Rhian Gruar2
1The Francis Crick Institute, London, UK.
概括
姐妹染色体凝聚力是在DNA复制终止期间建立的,而不是之前. 这项研究揭示了凝聚体被复制分叉推向,并在CMG螺旋酶分解后留在新生DNA上.
科学领域:
- 细胞生物学
- 分子生物学
- 遗传学
背景情况:
- 姐妹染色体凝聚力,由凝聚素复合体介导,对于细胞分裂过程中精确的染色体分离至关重要.
- 凝聚力加载,DNA复制和凝聚力的建立之间的精确协调仍然不完全理解.
研究的目的:
- 研究凝聚体如何与DNA复制机制相互作用.
- 在DNA复制过程中建立姐妹染色体凝聚力的机制.
主要方法:
- 实时可视化复制叉与预装的凝聚体相互作用.
- 分析CMG (CDC45-MCM2-7-GINS) 在复制终止和结合性建立中的作用.
主要成果:
- 复制分叉将凝聚体推向融合的复制分叉,而不是凝聚体落后.
- 在复制终止后,凝聚在新生的DNA上,确保姐妹染色体凝聚力.
- 在复制终结过程中,CMG螺旋酶的分解对于建立适当的凝聚力至关重要.
结论:
- 在DNA复制的终结阶段建立姐妹染色体凝聚力.
- 提出了一个新型模型,在复制过程中凝聚素被复制体主动管理,并在终止时得到保护.
更多相关视频
07:37Author Spotlight: Unraveling the Dynamics of Eukaryotic DNA Replication Through Single-Molecule Visualization
Published on: September 27, 2024
1.5K
08:53Strand-Specific Analysis of Proteins at Replicating DNA Strands by Enrichment and Sequencing of Protein-Associated Nascent DNA Method
Published on: May 2, 2025
344
相关概念视频
Cohesins
4.5K
Cohesin protein complexes are a molecular glue that holds two sister chromatids together. They play an important role both in mitosis and meiosis. In mitosis, all cohesin complexes present on the chromosomes are removed before the start of the anaphase stage.
Cohesin complexes in Meiotic Division
Meiosis involves two distinct rounds of chromosomal segregation and cell divisions— Meiosis I followed by Meiosis II – producing four daughter cells. Meiosis I includes the separation of...
Cohesin complexes in Meiotic Division
Meiosis involves two distinct rounds of chromosomal segregation and cell divisions— Meiosis I followed by Meiosis II – producing four daughter cells. Meiosis I includes the separation of...
4.5K
Attachment of Sister Chromatids
3.3K
As cells progress into mitosis, the nuclear envelope breaks down, and the condensed chromosomes are exposed to the array of bipolar microtubules of the mitotic spindle. The kinetochore, a large, disc-shaped protein complex, is present at the centromere region of the sister chromatids and acts as a binding site for the microtubules. Usually, the plus-end of a single microtubule is embedded within the kinetochore. However, some kinetochores first establish lateral contact with the side-wall...
3.3K
Homologous Recombination
50.5K
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...
50.5K
Separation of Sister Chromatids
3.6K
At the transition from prophase to metaphase, there is a reduction in cohesion along the chromosomal arms, resulting in the resolution of sister chromatids. However, residual cohesin connections remain to hold the sister chromatids together until the transition from metaphase to anaphase. The residual connection prevents any premature separation of sister chromatids, blocking the risks of aneuploidy within the daughter cells.
At the onset of anaphase, separase, a proteolytic enzyme, is...
At the onset of anaphase, separase, a proteolytic enzyme, is...
3.6K
Condensins
3.5K
Condensins are large protein complexes that use ATP to fuel the assembly of chromosomes during mitosis. They transform the tangled, shapeless mass of post-interphase DNA into individualized chromosomes by compacting, organizing, and segregating chromosomal DNA.
The plant and animal cells contain two types of condensin complexes—condensin I and condensin II. Both complexes have five subunits: two SMC (Structural Maintenance of Chromosomes) subunits, a kleisin subunit, and two HEAT-repeat...
The plant and animal cells contain two types of condensin complexes—condensin I and condensin II. Both complexes have five subunits: two SMC (Structural Maintenance of Chromosomes) subunits, a kleisin subunit, and two HEAT-repeat...
3.5K
Restarting Stalled Replication Forks
5.8K
DNA replication is initiated at sites containing predefined DNA sequences known as origins of replication. DNA is unwound at these sites by the minichromosome maintenance (MCM) helicase and other factors such as Cdc45 and the associated GINS complex.The unwound single strands are protected by replication protein A (RPA) until DNA polymerase starts synthesizing DNA at the 5’ end of the strand in the same direction as the replication fork. To prevent the replication fork from falling apart,...
5.8K
