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Aneuploidy confers quantitative proteome changes and phenotypic variation in budding yeast

机译:非整倍性赋予芽生酵母定量蛋白质组变化和表型变异

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摘要

Aneuploidy, referring here to genome contents characterized by abnormal numbers of chromosomes, has been associated with developmental defects, cancer and adaptive evolution in experimental organisms. However, it remains unresolved how aneuploidy impacts gene expression and whether aneuploidy could directly bring about phenotypic variation and improved fitness over that of euploid counterparts. Here we show, using quantitative mass spectrometry-based proteomics and phenotypic profiling, that levels of protein expression in aneuploid yeast strains largely scale with chromosome copy numbers, following the same trend as that observed for the transcriptome, and that aneuploidy confers diverse phenotypes. We designed a novel scheme to generate, through random meiotic segregation, 38 stable and fully isogenic aneuploid yeast strains with distinct karyotypes and genome contents between 1Nand 3Nwithout involving any genetic selection. Through quantitative growth assays under various conditions or in the presence of a panel of chemotherapeutic or antifungal drugs, we found that some aneuploid strains grew significantly better than euploid control strains under conditions suboptimal for the latter. These results provide strong evidence that aneuploidy directly affects gene expression at both the transcriptome and proteome levels and can generate significant phenotypic variation that could bring about fitness gains under diverse conditions. Our findings suggest that the fitness ranking between euploid and aneuploid cells is dependent on context and karyotype, providing the basis for the notion that aneuploidy can directly underlie phenotypic evolution and cellular adaptation.
机译:非整倍性,此处指以异常染色体数目为特征的基因组内容,已与实验生物的发育缺陷,癌症和适应性进化有关。然而,仍未解决非整倍性如何影响基因表达以及非整倍性是否可以直接带来表型变异并提高了与整倍体对应物的适应性。在这里,我们显示,使用基于质谱的定量蛋白质组学和表型分析,非整倍体酵母菌株中蛋白质表达水平在很大程度上与染色体拷贝数成正比,遵循与转录组观察到的趋势相同的趋势,并且非整倍体赋予了多种表型。我们设计了一种新的方案,通过随机减数分裂分离,生成38种稳定且完全等基因的非整倍性酵母菌株,它们的核型和基因组含量在1N和3N之间,且不涉及任何基因选择。通过在各种条件下或在一组化学治疗药或抗真菌药存在下的定量生长试验,我们发现一些非整倍体菌株的生长明显好于整倍体对照菌株,后者的条件不理想。这些结果提供了有力的证据,表明非整倍性直接影响转录组和蛋白质组水平上的基因表达,并且可以产生显着的表型变异,从而可以在不同条件下提高适应性。我们的发现表明,整倍体和非整倍体细胞之间的适应性等级取决于背景和核型,为非整倍体可以直接构成表型进化和细胞适应性这一概念提供了基础。

著录项

  • 来源
    《Nature》 |2010年第7321期|p.321-325121|共6页
  • 作者单位

    Stowers Institute for Medical Research, 1000 East 50th Street, Kansas City, Missouri 64110, USA;

    rnStowers Institute for Medical Research, 1000 East 50th Street, Kansas City, Missouri 64110, USA;

    rnStowers Institute for Medical Research, 1000 East 50th Street, Kansas City, Missouri 64110, USA;

    rnStowers Institute for Medical Research, 1000 East 50th Street, Kansas City, Missouri 64110, USA;

    rnStowers Institute for Medical Research, 1000 East 50th Street, Kansas City, Missouri 64110, USA;

    rnStowers Institute for Medical Research, 1000 East 50th Street, Kansas City, Missouri 64110, USA;

    rnStowers Institute for Medical Research, 1000 East 50th Street, Kansas City, Missouri 64110, USA;

    rnStowers Institute for Medical Research, 1000 East 50th Street, Kansas City, Missouri 64110, USA;

    rnStowers Institute for Medical Research, 1000 East 50th Street, Kansas City, Missouri 64110, USA Department of Molecular and Integrative Physiology, University of Kansas Medical Center, 3901 Rainbow Boulevard, Kansas City, Kansas 66160, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 02:55:20

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