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A new genetic method for isolating functionally interacting genes: high plo1(+)-dependent mutants and their suppressors define genes in mitotic and septation pathways in fission yeast.

机译:一种新的分离功能相互作用基因的遗传方法:高plo1(+)依赖性突变体及其抑制子在裂变酵母的有丝分裂和分隔途径中定义基因。

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摘要

We describe a general genetic method to identify genes encoding proteins that functionally interact with and/or are good candidates for downstream targets of a particular gene product. The screen identifies mutants whose growth depends on high levels of expression of that gene. We apply this to the plo1(+) gene that encodes a fission yeast homologue of the polo-like kinases. plo1(+) regulates both spindle formation and septation. We have isolated 17 high plo1(+)-dependent (pld) mutants that show defects in mitosis or septation. Three mutants show a mitotic arrest phenotype. Among the 14 pld mutants with septation defects, 12 mapped to known loci: cdc7, cdc15, cdc11 spg1, and sid2. One of the pld mutants, cdc7-PD1, was selected for suppressor analysis. As multicopy suppressors, we isolated four known genes involved in septation in fission yeast: spg1(+), sce3(+), cdc8(+), and rho1(+), and two previously uncharacterized genes, mpd1(+) and mpd2(+). mpd1(+) exhibits high homology to phosphatidylinositol 4-phosphate 5-kinase, while mpd2(+) resembles Saccharomyces cerevisiae SMY2; both proteins are involved in the regulation of actin-mediated processes. As chromosomal suppressors of cdc7-PD1, we isolated mutations of cdc16 that resulted in multiseptation without nuclear division. cdc16(+), dma1(+), byr3(+), byr4(+) and a truncated form of the cdc7 gene were isolated by complementation of one of these cdc16 mutations. These results demonstrate that screening for high dose-dependent mutants and their suppressors is an effective approach to identify functionally interacting genes.
机译:我们描述了一种通用的遗传方法,以识别编码与特定基因产物的下游靶标功能性相互作用的蛋白质和/或是其良好靶标的蛋白质的基因。该筛查鉴定出其生长取决于该基因高水平表达的突变体。我们将此应用于编码polo样激酶的裂变酵母同源物的plo1(+)基因。 plo1(+)同时调节纺锤体的形成和分隔。我们已经分离出17个高plo1(+)依赖(pld)突变体,它们在有丝分裂或分隔中显示出缺陷。三个突变体显示有丝分裂停止表型。在14个具有分隔缺陷的pld突变体中,有12个映射到已知基因座:cdc7,cdc15,cdc11 spg1和sid2。选择pld突变体之一cdc7-PD1进行抑制子分析。作为多拷贝抑制剂,我们分离了裂变酵母中参与分离的四个已知基因:spg1(+),sce3(+),cdc8(+)和rho1(+),以及两个以前未鉴定的基因,mpd1(+)和mpd2( +)。 mpd1(+)与磷脂酰肌醇4-磷酸5激酶具有高度同源性,而mpd2(+)与酿酒酵母SMY2类似。两种蛋白都参与肌动蛋白介导的过程的调节。作为cdc7-PD1的染色体抑制剂,我们分离了cdc16的突变,该突变导致无需核分裂即可进行多重分离。 cdc16(+),dma1(+),byr3(+),byr4(+)和cdc7基因的截短形式是通过互补这些cdc16突变之一而分离的。这些结果表明,筛选高剂量依赖性突变体及其抑制剂是鉴定功能相互作用基因的有效方法。

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