首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Characterization of Null Mutants of the RAD55 Gene of Saccharomyces cerevisiae: Effects of Temperature, Osmotic Strength and Mating Type
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Characterization of Null Mutants of the RAD55 Gene of Saccharomyces cerevisiae: Effects of Temperature, Osmotic Strength and Mating Type

机译:酿酒酵母RAD55基因的空突变体的表征:温度,渗透强度和交配类型的影响。

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摘要

RAD55 belongs to a group of genes required for resistance to ionizing radiation, RAD50-RAD57 , which are thought to define a pathway of recombinational repair. Since all four alleles of RAD55 are temperature conditional (cold sensitive) for their radiation phenotype, we investigated the phenotype produced by null mutations in the RAD55 gene, constructed in vitro and transplaced to the yeast chromosome. The X-ray sensitivity of these null mutant strains was surprisingly suppressed by increased temperature, osmotic strength of the growth medium and heterozygosity at the mating-type locus. These first two properties, temperature conditionality and osmotic remediability, are commonly associated with missense mutations; these rad55 null mutants are unique in that they exhibit these properties although the mutant gene cannot be expressed. X-ray-induced mitotic recombination was also cold sensitive in rad55 mutant diploids. Although mitotic growth was unaffected in these strains, meiosis was a lethal event at both high and low temperatures. Whereas the phenotype of rad55 null mutants is consistent with a role of RAD55 in recombination and recombinational repair, there is evidence for considerable RAD55 -independent recombination, at least in mitotic cells, which is influenced by temperature and MAT . We discuss models for the role of RAD55 in recombination to explain the unusual properties of rad55 mutants.
机译:RAD55属于抗电离辐射所需的一组基因RAD50-RAD57,据认为它们可定义重组修复途径。由于RAD55的所有四个等位基因对它们的辐射表型都是温度条件的(对温度敏感),因此我们研究了RAD55基因无效突变产生的表型,该表型在体外构建并转移到酵母染色体上。升高的温度,生长培养基的渗透强度和交配型位点的杂合性令人惊讶地抑制了这些无效突变菌株的X射线敏感性。前两个属性,即温度条件性和渗透性可补救性,通常与错义突变有关。这些rad55无效突变体的独特之处在于,尽管无法表达突变体基因,但它们仍具有这些特性。 X射线诱导的有丝分裂重组对rad55突变体二倍体也很敏感。尽管这些菌株中的有丝分裂生长不受影响,但减数分裂在高温和低温下都是致命的。 rad55无效突变体的表型与RAD55在重组和重组修复中的作用一致,但有证据表明,至少在有丝分裂细胞中,RAD55的独立重组非常明显,这受温度和MAT的影响。我们讨论了RAD55在重组中的作用模型,以解释rad55突变体的异常特性。

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