相关实验视频
Updated: May 5, 2026

06:10
Following Cell-fate in E. coli After Infection by Phage Lambda
Published on: October 14, 2011
23.6K
细菌体兰巴末酶的共同DNA裂变的机制:ATP的多重作用
R R Higgins1, H J Lucko, A Becker
1Department of Medical Genetics, University of Toronto, Ontario, Canada.
Cell
|September 9, 1988
概括
体兰巴达终结酶酶以不对称的方式创建DNA裂. ATP对于切割特异性和刺激裂变至关重要,而ATP水解则需要用于末端解.
科学领域:
- 分子生物学分子生物学
- 病毒学 病毒学
- 生物化学 生物化学
背景情况:
- 菌体兰巴的终端生成 (ter) 反应涉及到酶终端酶.
- 终结酶在凝聚性末端切割部位 (cosN) 催化分层切割.
- 在体外的ter反应表现出核酸水平不对称,尽管cosN的旋转对称.
研究的目的:
- 为了研究菌体兰巴达终结酶反应的不对称性.
- 阐明ATP在宇宙裂变过程中的特定作用.
- 了解DNA末端解后的要求.
主要方法:
- 在体外分析菌体兰巴达终结酶 (ter) 反应.
- 研究位特异性和辅助因子要求.
- 使用不可水解的ATP类似物来区分ATP的作用.
主要成果:
- 拉姆达 r 链的切割发生在拉姆达 l 链的切割之前.
- ATP刺激了两个DNA链的切割.
- 对于精确的r-strand切割特异性来说,ATP是必不可少的;如果没有它,则会发生不正确的切割.
- 割不需要ATP水解,但对于解脱DNA末端至关重要.
结论:
- 体兰巴达终结酶反应在核酸水平上是不对称的.
- 在DNA切割和末端脱离中,ATP起着不同的作用.
- 了解这些机制可以了解病毒DNA的处理和包装.
相关概念视频
DNA Helicases
19.4K
DNA unwinding helicase enzymes are a type of motor protein. Motor proteins can translocate along filaments or polymers using energy generated from ATP hydrolysis. Helicases are involved in all the important cellular processes where DNA unwinding is required, such as DNA replication, repair, recombination, and transcription. They are present in all living organisms, but vary in their structure, function, and mechanism of action. For example, in prokaryotes, DnaB helicase binds and translocates...
19.4K
The Replisome
31.2K
DNA replication is carried out by a large complex of proteins that act in a coordinated matter to achieve high-fidelity DNA replication. Together this complex is known as the DNA replication machinery or the replisome.
The synthesis of the leading and lagging strands is a highly coordinated process. To explain this, the “Trombone model” was proposed by Bruce Alberts in 1980. The DNA loop formation starts when a primer is synthesized on the parent lagging strand. The loop grows with...
The synthesis of the leading and lagging strands is a highly coordinated process. To explain this, the “Trombone model” was proposed by Bruce Alberts in 1980. The DNA loop formation starts when a primer is synthesized on the parent lagging strand. The loop grows with...
31.2K
DNA Topoisomerases
32.3K
Topoisomerases are enzymes that relax overwound DNA molecules during various cell processes, including DNA replication and transcription. These enzymes regulate positive and negative DNA supercoiling without changing the nucleotide sequence. DNA overwinding in a clockwise direction results in positively supercoiled DNA, whereas underwinding in a counterclockwise direction produces negatively supercoiled DNA.
Types and Mechanism of action
Topoisomerases are divided into two main types. ...
Types and Mechanism of action
Topoisomerases are divided into two main types. ...
32.3K
Translesion DNA Polymerases
9.3K
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...
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...
9.3K
Homologous Recombination
58.8K
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...
58.8K
DNA Bacteriophages
1.6K
Bacteriophages, or phages, are viruses that specifically infect bacteria, utilizing their genetic material to hijack host cellular machinery for replication. DNA bacteriophages employ single-stranded DNA (ssDNA) or double-stranded DNA (dsDNA) genomes. These phages exhibit diverse replication strategies and host interactions, influencing their ecological roles and applications in biotechnology and medicine.ssDNA BacteriophagesssDNA phages, with their small genomes, utilize unique strategies to...
1.6K

