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A Genetic Screen for Fission Yeast Gene Deletion Mutants Exhibiting Hypersensitivity to Latrunculin A

机译:对Latrunculin A过敏的裂变酵母基因缺失突变体的遗传筛选。

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摘要

Fission yeast cells treated with low doses of the actin depolymerizing drug, latrunculin A (LatA), delay entry into mitosis via a mechanism that is dependent on both the Clp1p and Rad24p proteins. During this delay, cells remain in a cytokinesis-competent state that is characterized by continuous repair and/or reestablishment of the actomyosin ring. In this manner, cells ensure the faithful completion of the preceding cytokinesis in response to perturbation of the cell division machinery. To uncover other genes with a role in this response, or simply genes with roles in adapting to LatA-induced stress, we carried out a genome-wide screen and identified a group of 38 gene deletion mutants that are hyper-sensitive to the drug. As expected, we found genes affecting cytokinesis and/or the actin cytoskeleton within this set (ain1, acp2, imp2). We also identified genes with roles in histone modification (tra1, ngg1), intracellular transport (apl5, aps3), and glucose-mediated signaling (git3, git5, git11, pka1, cgs2). Importantly, while the identified gene deletion mutants are prone to cytokinesis failure in the presence of LatA, they are nevertheless fully capable of cell division in the absence of the drug. These results indicate that fission yeast cells make use of a diverse set of regulatory modules to counter abnormal cytoskeletal perturbations, and furthermore, that these modules act redundantly to ensure cell survival and proliferation.
机译:用低剂量的肌动蛋白解聚药物latrunculin A(LatA)处理的裂变酵母细胞通过依赖于Clp1p和Rad24p蛋白的机制延迟进入有丝分裂。在该延迟期间,细胞保持在胞质分裂适应状态,其特征在于放线菌素环的连续修复和/或重建。以这种方式,细胞确保响应于细胞分裂机制的干扰而忠实地完成先前的胞质分裂。为了揭示在此反应中起作用的其他基因,或者只是发现在适应LatA诱导的应激中起作用的基因,我们进行了全基因组筛选,并鉴定出38种对该药物高度敏感的基因缺失突变体。正如预期的那样,我们发现了影响细胞分裂和/或肌动蛋白细胞骨架的基因(ain1,acp2,imp2)。我们还确定了在组蛋白修饰(tra1,ngg1),细胞内转运(apl5,aps3)和葡萄糖介导的信号传导(git3,git5,git11,pka1,cgs2)中起作用的基因。重要的是,尽管鉴定出的基因缺失突变体在存在LatA的情况下易于发生胞质分裂失败,但在没有药物的情况下,它们仍具有完全的细胞分裂能力。这些结果表明裂变酵母细胞利用多种调节模块来对抗异常的细胞骨架扰动,此外,这些模块多余地起作用以确保细胞存活和增殖。

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