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An interactive gene network for securin-separase, condensin, cohesin, Dis1/Mtc1 and histones constructed by mass transformation.

机译:互作蛋白-separase,凝缩蛋白,粘着蛋白,Dis1 / Mtc1和通过大规模转化构建的组蛋白的相互作用基因网络。

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摘要

The small genome of fission yeast Schizosaccharomyces pombe contains 4824 predicted genes and gene disruption suggests that approximately 850 are essential for viability. To obtain information on interactions among genes required for chromosome segregation, an approach called Strategy B was taken using mass transformation of the 1015 temperature-sensitive (ts) mutants that were made by random mutagenesis and transformed by plasmids carrying the genes for securin, separase, condensin, cohesin, kinetochore microtubule-binding proteins Dis1/Mtc1 or histones. Mutant strains whose phenotypes were either suppressed or inhibited by plasmids were selected. Each plasmid interacted positively or negatively with the average 14 strains. Identification of the mutant gene products by cloning revealed many hitherto unknown interactions. The interactive networks of segregation therefore may consist of genes with a variety of functions. For example, separase/Cut1 interacts with Cdc48/p97/VCP, which stabilizes securin and separase. Surprisingly, S. pombe cdc48 mutants displayed the mitotic phenotype highly similar to separase/cut1 mutants. This approach also provides a novel way of mutant isolation, resulting in two histone H2B strains and a cohesion mutant with a new phenotype.
机译:裂变酵母粟酒裂殖酵母的小基因组包含4824个预测基因,基因破坏表明大约850个基因对于生存力至关重要。为了获得有关染色体分离所需基因之间相互作用的信息,采用了一种称为策略B的方法,该方法是对1015个温度敏感(ts)突变体进行大规模转化,该突变体是通过随机诱变制成的,并通过携带有securin,separase,凝缩蛋白,黏附蛋白,动粒微管结合蛋白Dis1 / Mtc1或组蛋白。选择表型被质粒抑制或抑制的突变株。每个质粒与平均14个菌株正或负相互作用。通过克隆鉴定突变基因产物揭示了许多迄今为止未知的相互作用。因此,分离的互动网络可能由具有多种功能的基因组成。例如,separase / Cut1与Cdc48 / p97 / VCP相互作用,可稳定securin和separase。令人惊讶的是,粟酒裂殖酵母cdc48突变体显示出与separase / cut1突变体高度相似的有丝分裂表型。这种方法还提供了一种新的突变体分离方法,可产生两个组蛋白H2B菌株和一个具有新表型的内聚突变体。

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