首页> 外文期刊>Cell and Chromosome >Distinct functions of S. pombe Rec12 (Spo11) protein and Rec12-dependent crossover recombination (chiasmata) in meiosis I; and a requirement for Rec12 in meiosis II
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Distinct functions of S. pombe Rec12 (Spo11) protein and Rec12-dependent crossover recombination (chiasmata) in meiosis I; and a requirement for Rec12 in meiosis II

机译:减数分裂I中粟酒裂殖酵母Rec12(Spo11)蛋白和Rec12依赖的交叉重组(chiasmata)的独特功能;和减数分裂II中对Rec12的要求

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Background In most organisms proper reductional chromosome segregation during meiosis I is strongly correlated with the presence of crossover recombination structures (chiasmata); recombination deficient mutants lack crossovers and suffer meiosis I nondisjunction. We report that these functions are separable in the fission yeast Schizosaccharomyces pombe. Results Intron mapping and expression studies confirmed that Rec12 is a member of the Spo11/Top6A topoisomerase family required for the formation of meiotic dsDNA breaks and recombination. rec12-117, rec12-D15 (null), and rec12-Y98F (active site) mutants lacked most crossover recombination and chromosomes segregated abnormally to generate aneuploid meiotic products. Since S. pombe contains only three chromosome pairs, many of those aneuploid products were viable. The types of aberrant chromosome segregation were inferred from the inheritance patterns of centromere linked markers in diploid meiotic products. The rec12-117 and rec12-D15 mutants manifest segregation errors during both meiosis I and meiosis II. Remarkably, the rec12-Y98F (active site) mutant exhibited essentially normal meiosis I segregation patterns, but still exhibited meiosis II segregation errors. Conclusions Rec12 is a 345 amino acid protein required for most crossover recombination and for chiasmatic segregation of chromosomes during meiosis I. Rec12 also participates in a backup distributive (achiasmatic) system of chromosome segregation during meiosis I. In addition, catalytically-active Rec12 mediates some signal that is required for faithful equational segregation of chromosomes during meiosis II.
机译:背景在大多数生物中,减数分裂I期间染色体的适当还原性染色体分离与交叉重组结构(chiasmata)的存在密切相关。重组缺陷型突变体缺乏交叉并且遭受减数分裂I不分离。我们报道这些功能在裂殖酵母裂殖酵母中是可分离的。结果内含子作图和表达研究证实Rec12是减数分裂dsDNA断裂和重组所需的Spo11 / Top6A拓扑异构酶家族的成员。 rec12-117,rec12-D15(无效)和rec12-Y98F(活性位点)突变体缺乏大多数交叉重组,并且染色体异常分离以生成非整倍体减数分裂产物。由于粟酒裂殖酵母仅包含三个染色体对,因此许多非整倍体产物都是可行的。从二倍体减数分裂产物中着丝粒连接标记的遗传模式推断异常染色体分离的类型。 rec12-117和rec12-D15突变体在减数分裂I和减数分裂II期间均表现出分离错误。值得注意的是,rec12-Y98F(活性位点)突变体表现出基本正常的减数分裂I分离模式,但仍表现出减数分裂II分离错误。结论Rec12是345个氨基酸重组蛋白,是减数分裂I期间大多数交叉重组和染色体的染色体顺序分离所必需的。Rec12还参与减数分裂I期间染色体分离的备用分布(非顺序)系统。此外,具有催化活性的Rec12介导了一些减数分裂II中忠实的染色体方程式分离所需的信号。

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