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関連する概念動画

Conservative Site-specific Recombination and Phase Variation02:53

Conservative Site-specific Recombination and Phase Variation

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Because the DNA segments are cut and reorganized in a direction-specific manner, site-specific recombination has emerged as an efficient genetic engineering technique. Flippase and Cyclization recombinases or Flp and Cre, respectively, are two members of the tyrosine recombinase family derived from bacteriophages, that are used to mediate site-specific DNA insertions, deletions, and targeted expression of proteins in mammalian cell lines.
The recognition sites for Cre recombinase called LoxP...
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Homologous Recombination02:31

Homologous Recombination

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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...
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Restriction Enzymes

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Restriction enzymes are bacterial enzymes used to cut DNA in a sequence-specific manner. To cleave DNA, they bind to specific palindromic sequences called restriction sites. Such palindromic DNA sequences or inverted repeats are commonly found in regions of functional significance, such as the origin of replication, gene operator sites, and regions containing transcription termination signals.
The host bacteria protect their own genomic DNA from these enzymes by methylating these sites. Some...
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Transformation01:26

Transformation

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Microbial communities are dynamic environments where cell lysis releases free DNA into the surroundings. Other cells can take up this extracellular DNA through a process known as transformation.When a cell incorporates this foreign DNA into its genome, resulting in genetic modification, the process is known as transformation. Cells capable of this process are termed competent. Competence can be natural, as observed in certain bacteria and archaea, or artificially induced in the...
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関連する実験動画

Updated: Jan 13, 2026

Site-specific Bacterial Chromosome Engineering: &#934;C31 Integrase Mediated Cassette Exchange (IMCE)
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Site-specific Bacterial Chromosome Engineering: ΦC31 Integrase Mediated Cassette Exchange (IMCE)

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コンパクトなランディングパッド上の指向性進化により、大規模DNA統合のための高効率な組換え酵素が生成される

Hanseop Kim1, Hyo-Gu Kang2, Yeounsun Oh3

  • 1National Primate Research Center, Korea Research Institute of Bioscience and Biotechnology, Cheongju 28116, Republic of Korea.

Nucleic acids research
|January 7, 2026
PubMed
まとめ

研究者らは、指向性進化を用いて高効率なDNA組換え酵素を開発しました。この画期的な技術は、プライム編集の統合を強化し、遺伝子治療とゲノム研究を前進させます。

キーワード:
指向性進化DNA組換え酵素プライム編集ゲノム統合遺伝子治療

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Last Updated: Jan 13, 2026

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科学分野:

  • 分子生物学
  • ゲノミクス
  • バイオテクノロジー

背景:

  • 部位特異的DNA組換え酵素は、ゲノムエンジニアリングに不可欠です。
  • 組換え酵素技術とプライム編集を組み合わせることは、大規模ゲノム統合に新たな可能性を提供します。
  • 現在の限界には、酵素効率の低さと長いDNAランディングパッドの非効率的な挿入が含まれます。

主な方法:

  • 段階的に短くなるDNAランディングパッドを選択的圧力として利用する指向性進化戦略を開発しました。
  • 触媒活性が強化された進化型組換え酵素バリアントをスクリーニングおよび特定しました。
  • ゲノム統合のためのプライム編集と組み合わせて、エンジニアリングされたバリアントのパフォーマンスを検証しました。

結論:

  • 高効率な新しいクラスのDNA組換え酵素(VKおよびAVK)を導入しました。
  • 遺伝子治療の開発と基本的なゲノム研究に広く適用可能な堅牢なエンジニアリング戦略を提示しました。
  • 大規模ゲノム統合の効率と特異性における大幅な進歩を実証しました。