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関連する概念動画

Homologous Recombination02:31

Homologous Recombination

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...
Gene Conversion02:08

Gene Conversion

Other than maintaining genome stability via DNA repair, homologous recombination plays an important role in diversifying the genome. In fact, the recombination of sequences forms the molecular basis of genomic evolution. Random and non-random permutations of genomic sequences create a library of new amalgamated sequences. These newly formed genomes can determine the fitness and survival of cells. In bacteria, homologous and non-homologous types of recombination lead to the evolution of new...
Conservative Site-specific Recombination and Phase Variation02:53

Conservative Site-specific Recombination and Phase Variation

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...
Cis-regulatory Sequences02:02

Cis-regulatory Sequences

Cis-regulatory sequences are short fragments of non-coding DNA that are present on the same chromosomes as the genes that they regulate. These fragments serve as binding sites for transcriptional regulators, proteins that are responsible for controlling gene transcription and differential gene expression across cell types in eukaryotes. Cis-regulatory sequences can be close to the gene of interest or thousands of bases away in the DNA sequence; however, those sequences that are further away are...
Homologous Recombination02:31

Homologous Recombination

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...
Gene Conversion02:08

Gene Conversion

Other than maintaining genome stability via DNA repair, homologous recombination plays an important role in diversifying the genome. In fact, the recombination of sequences forms the molecular basis of genomic evolution. Random and non-random permutations of genomic sequences create a library of new amalgamated sequences. These newly formed genomes can determine the fitness and survival of cells. In bacteria, homologous and non-homologous types of recombination lead to the evolution of new...

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関連する実験動画

Updated: Jun 23, 2026

Photoactivated Localization Microscopy with Bimolecular Fluorescence Complementation (BiFC-PALM)
12:42

Photoactivated Localization Microscopy with Bimolecular Fluorescence Complementation (BiFC-PALM)

Published on: December 22, 2015

側面配列の共変換とホモタリックスイッチングの共変換

C McGill1, B Shafer, J Strathern

  • 1Laboratory of Eukaryotic Gene Expression, National Cancer Institute, Frederick Cancer Research Facility, Maryland 21701.

Cell
|May 5, 1989
PubMed
まとめ

S. cerevisiaeにおけるホモタリックスイッチングは,交配型のDNAを置き換えます. 変数の置換範囲とココンバージョンのグラデーションが観察され,交配型切り替えの際にDNAヘテロデュプレックス中間体があることを示唆した.

科学分野:

  • 分子生物学は分子生物学である.
  • 遺伝学 遺伝学とは
  • イースト生物学 イースト生物学

背景:

  • Saccharomyces cerevisiaeにおけるホモタリックスイッチングは,交配型遺伝子変換のプロセスである.
  • 交配型ロキュス (MAT) は,静かなロキュス (HMLまたはHMR) とDNAを交換する.

研究 の 目的:

  • ホモタリックスイッチング中のDNA置換範囲の変動性を調査する.
  • MATロキュスのX領域のココンバージョンのグラデントを分析する.
  • DNA修復メカニズムに対する側面部位の差異の影響を調査する.

主な方法:

  • 制限部位ポリモルフィズムを使用して,MATとドナー部位を区別する.
  • 交配型切り替えの際のDNA配列置換パターンを分析する.
  • HO遺伝子製品媒介による二重鎖の割れに相関するココンバージョンの出来事を調べる.

主要な成果:

  • ホモタリックスイッチング中のMAT DNAの置換の可変程度を実証した.
  • X領域のココンバージョンのグラデントを特定しました.
  • 二重鎖の断裂の両側に共変換が観察されました.

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Targeted in Situ Mutagenesis of Histone Genes in Budding Yeast
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Targeted in Situ Mutagenesis of Histone Genes in Budding Yeast

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Design to Implementation Study for Development and Patient Validation of Paper-Based Toehold Switch Diagnostics

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関連する実験動画

Last Updated: Jun 23, 2026

Photoactivated Localization Microscopy with Bimolecular Fluorescence Complementation (BiFC-PALM)
12:42

Photoactivated Localization Microscopy with Bimolecular Fluorescence Complementation (BiFC-PALM)

Published on: December 22, 2015

Targeted in Situ Mutagenesis of Histone Genes in Budding Yeast
08:48

Targeted in Situ Mutagenesis of Histone Genes in Budding Yeast

Published on: January 26, 2017

Design to Implementation Study for Development and Patient Validation of Paper-Based Toehold Switch Diagnostics
10:42

Design to Implementation Study for Development and Patient Validation of Paper-Based Toehold Switch Diagnostics

Published on: June 17, 2022

  • 娘細胞の側面部位が異なっており,ヘテロデュプレックス中間体を示唆している.
  • 結論:

    • S. cerevisiaeの交配型交換の過程でDNAの交換の程度は固定されていません.
    • DNAのヘテロデュプレックス中間体は,ココンバージョンプロセスに関与している可能性が高い.
    • これらのメカニズムを理解することで,遺伝子変換とDNA修復経路の洞察が得られます.