효모 감수분열과정에서의 유전자 재조합 기전 특이적 DNA 중간체의 구조 변화

Identification of meiotic recombination intermediates in saccharomyces cerevisiae
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초록

During meiosis, genetic recombinants are formed by homologous recombination accompanying with the programmed double-strand breaks (DSBs) and strand exchanges between homologous chromosomes. The mechanism is generated by recombination intermediates such as single-end invasions (SEIs) and double-Holliday junctions (dHJs), and followed by crossover (CO) or non-crossover (NCO) products. Our study was focused on the analysis of meiotic recombination intermediates (DSBs, SEIs, and dHJs) and final recombination products (CO and NCO). We identified these meiotic recombination intermediates using DNA physical analysis under HIS4LEU2 hot spot system in budding yeast, Saccharomyces cerevisiae. For DNA physical analysis, when the hot spot locus is recognized by restriction enzyme from synchronous meiotic cells, the fragmented DNA that are forming recombination intermediates can be detected and quantified through Southern hybridization analysis. Our study suggests that this system can analyze the structural change of recombination intermediates during DSB-SEI transition, double-Holiday junctions and crossover/non-crossover products in meiosis.

키워드

Crossover/non-crossover; Double-strand breaks; Meiotic recombination; Saccharomyces cerevisiae
제목
효모 감수분열과정에서의 유전자 재조합 기전 특이적 DNA 중간체의 구조 변화
제목 (타언어)
Identification of meiotic recombination intermediates in saccharomyces cerevisiae
저자
성영진; 윤상욱; 김근필
DOI
10.7845/kjm.2013.001
발행일
2013
유형
Article
저널명
미생물학회지
권
49
호
1
페이지
1 ~ 7

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