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Fission yeast minichromosome loss mutants mis cause lethal aneuploidy and replication abnormality.

机译:裂变酵母微染色体丢失突变体会导致致命的非整倍性和复制异常。

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Precise chromosome transmission in cell division cycle is maintained by a number of genes. The attempt made in the present study was to isolate temperature-sensitive (ts) fission yeast mutants that display high loss rates of minichromosomes at permissive or semipermissive temperature (designated mis). By colony color assay of 539 ts strains that contain a minichromosome, we have identified 12 genetic loci (mis1-mis12) and determined their phenotypes at restrictive temperature. Seven of them are related to cell cycle block phenotype at restrictive temperature, three of them in mitosis. Unequal distribution of regular chromosomes in the daughters is extensive in mis6 and mis12. Cells become inviable after rounds of cell division due to missegregation. The phenotype of mis5 is DNA replication defect and hypersensitivity to UV ray and hydroxyurea. mis5+ encodes a novel member of the ubiquitous MCM family required for the onset of replication. The mis5+ gene is essential for viability and functionally distinct from other previously identified members in fission yeast, cdc21+, nda1+, and nda4+. The mis11 mutant phenotype was the cell division block with reduced cell size. Progression of the G1 and G2 phases is blocked in mis11. The cloned mis11+ gene is identical to prp2+, which is essential for RNA splicing and similar to a mammalian splicing factor U2AF65.
机译:细胞分裂周期中的精确染色体传递由许多基因维持。在本研究中的尝试是分离温度敏感(ts)裂变酵母突变体,该突变体在允许或半允许温度下(指定错误)显示出微型染色体的高丢失率。通过对包含微型染色体的539 ts菌株的菌落颜色分析,我们确定了12个遗传位点(mis1-mis12),并在限制性温度下确定了它们的表型。其中七个与限制性温度下的细胞周期阻滞表型有关,其中三个与有丝分裂有关。子代中规则染色体的不均等分布在mis6和mis12中。在回合后的细胞分裂中,由于失聚,细胞变得无法生存。 mis5的表型是DNA复制缺陷和对紫外线和羟基脲的超敏性。 mis5 +编码了复制开始所需的普遍存在的MCM家族的新成员。 mis5 +基因对于生存力至关重要,并且与裂变酵母中其他先前鉴定的成员cdc21 +,nda1 +和nda4 +具有不同的功能。 mis11突变表型是具有减小的细胞大小的细胞分裂块。 mis11中阻止了G1和G2相的进程。克隆的mis11 +基因与prp2 +相同,后者对RNA剪接至关重要,与哺乳动物剪接因子U2AF65类似。

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