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Two Cell Division Cycle Mutants of SACCHAROMYCES CEREVISIAE Are Defective in Transmission of Mitochondria to Zygotes

机译:SACCHAROMYCES CEREVISIAE的两个细胞分裂周期突变体是线粒体向合子的传递的缺陷。

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摘要

Mutations in CDC genes of S. cerevisiae disrupt the cell cycle at specific stages. The experiments reported here demonstrate that two CDC genes, CDC5 and CDC27, are necessary for mitochondrial segregation as well as for nuclear division. The defect in the transmission of mitochondria was revealed by the examination of uninucleate and binucleate progeny of transient heterokaryons generated by using the kar1-1 mutation that disrupts nuclear fusion. One of the parents lacked mitochondrial DNA (ρ0) whereas the other parent had functional mitochondria (ρ+). When the parents of the heterokaryon were both wild-type (CDC), nearly all progeny received mitochondria at 21° and at 34°. Thirty-four of the 36 cdc mutations tested had no defect in transmission of mitochondria to zygotic progeny in crosses in which one parent was a cdc mutant and the other parent was not (CDC). However, the cdc5 and cdc27 mutations prevented the transmission of mitochondria to cdc progeny at 34° but not at 21°; CDC progeny received mitochondria at either temperature. This defect was observed in crosses of cdc5 or cdc27 by wild-type cells regardless of which parent donated mitochondria to the zygote. The defect in mitochondrial transmission cosegregated in meiotic tetrads with the defect in mitosis demonstrating that both are likely to be caused by the same temperature-sensitive mutation. These results indicate that the CDC5 and CDC27 gene products are essential in two motility-related processes: mitochondrial movement from the zygote to the progeny and in mitosis.—Furthermore, the results suggest that the function performed by the CDC5 and CDC27 gene products for mitochondrial transmission differ in some fundamental way from the function performed for mitosis. The function necessary for mitosis can be supplied to the cdc5 (or cdc27) nucleus by the CDC5 (or CDC27) nucleus in the same heterokaryon but the function necessary for mitochondrial transmission cannot. Perhaps the function needed for mitochondrial transmission must be performed in the cell cycle preceding the actual segregation of mitochondria whereas the function needed for nuclear segregation can be performed at the time that mitosis occurs.
机译:酿酒酵母CDC基因的突变会在特定阶段破坏细胞周期。此处报道的实验表明,两个CDC基因CDC5和CDC27对于线粒体分离和核分裂都是必需的。线粒体传播的缺陷通过检查使用破坏核融合的kar1-1突变产生的瞬时异核体的单核和双核后代来揭示。其中一位父母缺乏线粒体DNA(ρ 0 ),而另一位父母则具有功能性线粒体(ρ + )。当异核体的亲本都是野生型(CDC)时,几乎所有后代都在21°和34°接受线粒体。测试的36个cdc突变中有34个在杂交中线粒体向合子后代的传播中没有缺陷,其中一个亲本是cdc突变体,而另一个亲本则不是(CDC)。但是,cdc5和cdc27突变阻止线粒体在34°而不是21°传播给cdc后代; CDC后代在任一温度下均接受线粒体。无论哪个亲代将线粒体捐赠给合子,野生型细胞在cdc5或cdc27的杂交中都观察到了这种缺陷。线粒体传递缺陷与减数分裂四分体共分离,而有丝分裂缺陷则表明这两者可能是由相同的温度敏感性突变引起的。这些结果表明, CDC5 CDC27 基因产物在两个与运动相关的过程中至关重要:线粒体从合子到子代的运动以及有丝分裂。提示 CDC5 CDC27 基因产物对线粒体传播的功能与有丝分裂的功能有一些根本的不同。可以通过 CDC5 (或 CDC27 )将有丝分裂所需的功能提供给 cdc5 (或 cdc27 )核。 )同一异核体中的细胞核,但线粒体传播所必需的功能无法实现。也许线粒体传播所需的功能必须在线粒体实际分离之前的细胞周期中执行,而核分离所需的功能可以在有丝分裂发生时执行。

著录项

  • 期刊名称 Genetics
  • 作者

    Susan K. Dutcher;

  • 作者单位
  • 年(卷),期 1982(102),1
  • 年度 1982
  • 页码 9–17
  • 总页数 9
  • 原文格式 PDF
  • 正文语种
  • 中图分类 遗传学;
  • 关键词

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