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関連する概念動画

DNA Topoisomerases02:02

DNA Topoisomerases

34.4K
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. ...
34.4K
Single-Strand DNA Binding Proteins01:03

Single-Strand DNA Binding Proteins

16.3K
For successful DNA replication, the unwinding of double-stranded DNA must be accompanied by stabilization and protection of the separated single strands of the DNA. This crucial task is performed by single-strand DNA-binding (SSB) proteins. They bind to the DNA in a sequence-independent manner, which means that the nitrogenous bases of the DNA need not be present in a specific order for binding of SSB proteins to it. The binding of SSB proteins straightens single-stranded DNA (ssDNA) and makes...
16.3K
Condensins02:15

Condensins

4.4K
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...
4.4K
DNA Helicases00:55

DNA Helicases

23.6K
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...
23.6K
The DNA Replication Fork01:02

The DNA Replication Fork

40.1K
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...
40.1K
The DNA Replication Fork01:02

The DNA Replication Fork

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Stable DNA Motifs, 1D and 2D Nanostructures Constructed from Small Circular DNA Molecules
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Stable DNA Motifs, 1D and 2D Nanostructures Constructed from Small Circular DNA Molecules

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DNAループのコンデンシン複合体は,互いに通過することができる.

Eugene Kim1, Jacob Kerssemakers1, Indra A Shaltiel2

  • 1Department of Bionanoscience, Kavli Institute of Nanoscience Delft, Delft University of Technology, Delft, The Netherlands.

Nature
|March 6, 2020
PubMed
まとめ

2つの酵母コンデンシン (SMC) タンパク質複合体が相互作用してDNAを包装する. 染色体組織に不可欠な ダイナミックなDNA圧縮を可能にします

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Studying DNA Looping by Single-Molecule FRET
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関連する実験動画

Last Updated: Dec 27, 2025

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09:32

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科学分野:

  • 分子生物学
  • 生物化学
  • 遺伝学

背景:

  • 染色体 (SMC) の構造維持複合体であるコンデンシンがDNAモーターとして作用する.
  • DNA包装におけるコンデンシンの集合的作用は,まだ十分に理解されていない.

研究 の 目的:

  • 酵母コンデンシン複合体の2つのDNAループの相互作用を調査する.
  • コンデンシンによる協力的なDNA包装のメカニズムを解明する.

主な方法:

  • タイムラップシングル分子可視化技術
  • 酵母コンデンシンモーターの相互作用の観察

主要な成果:

  • コンデンシン複合体は,距離に関係なく,互いのDNAループサイズを動的に変化させます.
  • 近接性により,コンデンシン複合体は3つの並列のDNAヘリクスの構造であるZループを形成します.
  • Zループは隙間補充を容易にし,DNAを引き出すために対称なダイマーモーターを作成します.

結論:

  • コンデンシンにはZループを含む多様なループ構造が利用され,効率的な染色体圧縮が可能である.
  • コンデンシンモーターの相互作用は 集団的なDNA包装と染色体組織の鍵です