自发复制叉的崩调节了野生类型酵母菌的端粒长度恒常性
bioRxiv : the preprint server for biology
|January 8, 2026
概括
端粒酶主要作用于缩的复制分叉,而不仅仅是染色体末端,显著影响端粒长度恒常性. 这挑战了芽酵母中端粒调节的现有模型.
科学领域:
- 分子生物学分子生物学
- 遗传学 是一个遗传学.
- 细胞生物学 细胞生物学
背景情况:
- 端粒酶通过添加重复序列来维持染色体末端.
- 适当的端粒长度对于细胞分裂和基因组稳定性至关重要.
- 现有的模型表明,端粒长度是通过感知染色体末端状态来调节的.
研究的目的:
- 为了研究开花酵母中的端粒酶的主要基质.
- 挑战长期存在的端粒长度调节模型.
- 为了确定阻止复制叉在端粒的崩的因素.
主要方法:
- 使用了野生类型的芽酵母模型.
- 分析了端粒延长的频率和长度.
- 研究了Cdc13/Stn1/Ten1和RPA复合物的作用.
主要成果:
- 端粒酶比染色体末端更频繁地 (∼50%) 延长了端粒中的崩复制分叉.
- 在一个细胞分裂中,多达200个核酸可以被添加到崩的叉子中.
- Cdc13/Stn1/Ten1和RPA复合体可以防止分叉在端粒中的复制崩.
结论:
- 复制分叉的崩,不仅仅是染色体的末端,是端粒长度稳态的主要决定因素.
- 端粒长度调节涉及分叉崩与复制完成产生的不同的基质.
- 在端粒的分叉崩,当管理时,促进基因组稳定,而不是仅仅是基因毒性.
相关概念视频
Restarting Stalled Replication Forks
6.3K
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,...
6.3K
Restarting Stalled Replication Forks
2.3K
2.3K
The DNA Replication Fork
40.4K
An organism’s genome needs to be duplicated in an efficient and error-free manner for its growth and survival. The replication fork is a Y-shaped active region where two strands of DNA are separated and replicated continuously. The coupling of DNA unzipping and complementary strand synthesis is a characteristic feature of a replication fork. Organisms with small circular DNA, such as E. coli, often have a single origin of replication; therefore, they have only two replication...
40.4K
The DNA Replication Fork
18.1K
18.1K
Replication in Eukaryotes
17.0K
In eukaryotic cells, DNA replication is highly conserved and tightly regulated. Multiple linear chromosomes must be duplicated with high fidelity before cell division, so there are many proteins that fulfill specialized roles in the replication process. Replication occurs in three phases: initiation, elongation, and termination, and ends with two complete sets of chromosomes in the nucleus.
Many Proteins Orchestrate Replication at the Origin
Eukaryotic replication follows many of the same...
Many Proteins Orchestrate Replication at the Origin
Eukaryotic replication follows many of the same...
17.0K
Replication in Eukaryotes
202.9K
Overview
202.9K


