裂糖菌的减数分裂重组:遗传和分子分析的范例。

Gareth Cromie, Gerald R Smith
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引用次数: 37

摘要

裂糖酵母特别适合于减数分裂重组的遗传和生化分析。最近的研究发现了约50个基因产物和两个DNA中间产物,我们将其置于亲本DNA到重组DNA的途径中。我们将重组分为三个阶段——伴随核“马尾”运动的染色体对齐、DNA断裂的形成和这些断裂的修复——我们讨论了鉴定的基因产物和DNA中间体在这些阶段中的作用。虽然重组的某些方面与远亲出芽酵母(Saccharomyces cerevisiae)相似,但其他方面却明显不同。特别是,在一个物种中重组所需的许多蛋白质在另一个物种中没有明确的同源物,并且已确定的同源物在调节重组中的作用往往不同。此外,在S. pombe中,优势的连接DNA分子中间体包含单个Holliday连接,姐妹间连接分子比同源间型更频繁,而在S. cerevisiae中,同源间双Holliday连接占主导地位。我们推测,其他生物体中的减数分裂重组具有这些酵母菌的特征。
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Meiotic Recombination in Schizosaccharomyces pombe: A Paradigm for Genetic and Molecular Analysis.

The fission yeast Schizosaccharomyces pombe is especially well-suited for both genetic and biochemical analysis of meiotic recombination. Recent studies have revealed ~50 gene products and two DNA intermediates central to recombination, which we place into a pathway from parental to recombinant DNA. We divide recombination into three stages - chromosome alignment accompanying nuclear "horsetail" movement, formation of DNA breaks, and repair of those breaks - and we discuss the roles of the identified gene products and DNA intermediates in these stages. Although some aspects of recombination are similar to those in the distantly related budding yeast Saccharomyces cerevisiae, other aspects are distinctly different. In particular, many proteins required for recombination in one species have no clear ortholog in the other, and the roles of identified orthologs in regulating recombination often differ. Furthermore, in S. pombe the dominant joint DNA molecule intermediates contain single Holliday junctions, and intersister joint molecules are more frequent than interhomolog types, whereas in S. cerevisiae interhomolog double Holliday junctions predominate. We speculate that meiotic recombination in other organisms shares features of each of these yeasts.

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