相关实验视频
Updated: Jul 31, 2026

12:08
Telomere Length and Telomerase Activity; A Yin and Yang of Cell Senescence
Published on: May 22, 2013
概括
人类端粒重复结合因子1 (TRF1) 作为端粒延长的抑制剂. TRF1通过抑制染色体末端的端粒酶活性来稳定端粒长度.
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:
- 人类端粒保护染色体末端,并在细胞分裂时缩短.
- 端粒缩短在癌症和不朽细胞中被端粒酶抵消.
- 一个调节机制可能会限制端粒酶的端粒延长.
研究的目的:
- 研究人类端粒重复结合因子1 (TRF1) 在端粒长度调节中的作用.
- 为了确定TRF1是否影响由端粒酶介导的端粒延长.
主要方法:
- 在端粒酶阳性HT1080瘤细胞中过度表达TRF1.
- 一个主导阴性TRF1突变体的表达.
- 监测端粒长度的变化.
主要成果:
- 长期的TRF1过度表达导致逐渐缩短端粒.
- 一个主导阴性TRF1突变诱导的端粒延长.
- TRF1对端粒长度的影响独立于端粒酶表达水平.
结论:
- TRF1作为端粒延长的抑制剂.
- TRF1参与一个负反循环,稳定端粒长度.
- 与端粒结合的TRF1抑制了cis中的端粒酶作用,调节了端粒长度.
相关概念视频
Replication in Eukaryotes
Overview
Telomeres and Telomerase
In eukaryotic DNA replication, a single-stranded DNA fragment remains at the end of a chromosome after the removal of the final primer. This section of DNA cannot be replicated in the same manner as the rest of the strand because there is no 3’ end to which the newly synthesized DNA can attach. This non-replicated fragment results in gradual loss of the chromosomal DNA during each cell duplication. Additionally, it can induce a DNA damage response by enzymes that recognize single-stranded DNA.
Transcription Attenuation in Prokaryotes
Transcriptional attenuation occurs when RNA transcription is prematurely terminated due to the formation of a terminator mRNA hairpin structure. Bacteria use these hairpins to regulate the transcription process and control the synthesis of several amino acids including histidine, lysine, threonine, and phenylalanine. Transcription attenuation takes place in the non-coding regions of mRNA.
There are several different mechanisms used to attenuate transcription. In ribosome mediated...
There are several different mechanisms used to attenuate transcription. In ribosome mediated...
Replicative Cell Senescence
Replicative cell senescence is a property of cells that allows them to divide a finite number of times throughout the organism's lifespan while preventing excessive proliferation. Replicative senescence is associated with the gradual loss of the telomere — short, repetitive DNA sequences found at the end of the chromosomes. Telomeres are bound by a group of proteins to form a protective cap on the ends of chromosomes. Embryonic stem cells express telomerase — an enzyme that adds the telomeric...
Replication in Eukaryotes
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...
Telomeres and Telomerase
In eukaryotic DNA replication, a single-stranded DNA fragment remains at the end of a chromosome after the removal of the final primer. This section of DNA cannot be replicated in the same manner as the rest of the strand because there is no 3’ end to which the newly synthesized DNA can attach. This non-replicated fragment results in gradual loss of the chromosomal DNA during each cell duplication. Additionally, it can induce a DNA damage response by enzymes that recognize single-stranded DNA.

