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RPD3(REC3)突变影响酿酒酵母中的有丝分裂重组。

RPD3 (REC3) mutations affect mitotic recombination in Saccharomyces cerevisiae.

作者信息

Dora E G, Rudin N, Martell J R, Esposito M S, Ramírez R M

机构信息

Department of Biology, San Francisco State University, 1600 Holloway Avenue, San Francisco, CA 94132, USA.

出版信息

Curr Genet. 1999 Mar;35(2):68-76. doi: 10.1007/s002940050434.

Abstract

Prior research identified the recessive rec3-1ts mutation in Saccharomyces cerevisiae which, in homozygous diploid cells, confers a conditional phenotype resulting in reduced levels of spontaneous mitotic recombination and loss of sporulation at the restrictive temperature of 36 degrees C. We found that a 3.4-kb genomic fragment that complements the rec3-1ts/rec3-1ts mutation and which maps to chromosome XIV, is identical to RPD3, a gene encoding a histone de-acetylase. Sporulation is reduced in homozygous diploid strains containing the rec3-1ts allele at 24 degrees C, suggesting that this allele of RPD3 encodes a gene product with a reduced function. Sporulation is abolished in diploid strains homozygous for the rpd3Delta or rec3-1ts alleles, as well as in rpd3Delta/rec3-1ts heteroallelic diploids, at the non-permissive temperature. Acid-phosphatase expression has been shown to be RPD3 dependent. We found that acid-phosphatase activity is greater in diploid strains homozygous for the temperature-sensitive rec3-1ts allele than in RPD3/RPD3 strains and increased further when mutant strains are grown at 36 degrees C. We also tested the rpd3Delta/rpd3Delta strains for their effects on spontaneous mitotic recombination. By assaying a variety of intra- and inter-genic recombination events distributed over three chromosomes, we found that in the majority of cases spontaneous mitotic recombination was reduced in diploid rpd3Delta/rpd3Delta cells (relative to a RPD3/RPD3 control). Finally, although 90% of mitotic recombinant events are initiated in the G1 phase of the growth cycle (i.e., before DNA synthesis) we show that RPD3 is not regulated in a cell-cycle-dependent manner. These data suggest that mitotic recombination, in addition to gene expression, is affected by changes in chromatin architecture mediated by RPD3.

摘要

先前的研究在酿酒酵母中鉴定出隐性的rec3-1ts突变,在纯合二倍体细胞中,该突变赋予一种条件表型,导致自发有丝分裂重组水平降低,并在36℃的限制温度下丧失孢子形成能力。我们发现,一个能互补rec3-1ts/rec3-1ts突变且定位于第十四条染色体的3.4kb基因组片段,与RPD3相同,RPD3是一个编码组蛋白去乙酰化酶的基因。在24℃时,含有rec3-1ts等位基因的纯合二倍体菌株的孢子形成减少,这表明RPD3的这个等位基因编码一种功能降低的基因产物。在非允许温度下,rpd3Delta或rec3-1ts等位基因纯合的二倍体菌株以及rpd3Delta/rec3-1ts杂合等位二倍体中的孢子形成均被消除。酸性磷酸酶的表达已被证明依赖于RPD3。我们发现,对温度敏感的rec3-1ts等位基因纯合的二倍体菌株中的酸性磷酸酶活性高于RPD3/RPD3菌株,并且当突变菌株在36℃下生长时,酸性磷酸酶活性进一步增加。我们还测试了rpd3Delta/rpd3Delta菌株对自发有丝分裂重组的影响。通过检测分布在三条染色体上的各种基因内和基因间重组事件,我们发现,在大多数情况下,二倍体rpd3Delta/rpd3Delta细胞中的自发有丝分裂重组减少(相对于RPD3/RPD3对照)。最后,尽管90%的有丝分裂重组事件在生长周期的G1期(即DNA合成之前)启动,但我们表明RPD3不是以细胞周期依赖性方式调控的。这些数据表明,有丝分裂重组除了受基因表达影响外,还受RPD3介导的染色质结构变化的影响。

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