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酵母的mcm17突变显示出小染色体的大小依赖性分离缺陷。

The mcm17 mutation of yeast shows a size-dependent segregational defect of a mini-chromosome.

作者信息

Roy N, Poddar A, Lohia A, Sinha P

机构信息

Department of Biochemistry, Bose Institute, Calcutta, India.

出版信息

Curr Genet. 1997 Sep;32(3):182-9. doi: 10.1007/s002940050264.

Abstract

Mini-chromosome-maintenance (mcm) mutants were described earlier as yeast mutants which could not stably maintain mini-chromosomes. Out of these, the ARS-specific class has been more extensively studied and is found to lose chromosomes and mini-chromosomes due to a defect in the initiation of DNA replication at yeast ARSs. In the present study we have identified a number of mcm mutants which show size-dependent loss of mini-chromosomes. When the size of the mini-chromosome was increased, from about 15 kb to about 60 kb, there was a dramatic increase in its mitotic stability in these mutants, but not in the ARS-specific class of mutants. One mutant, mcm17, belonging to the size-dependent class was further characterized. In this mutant, cells carried mini-chromosomes in significantly elevated copy numbers, suggesting a defect in segregation. This defect was largely suppressed in the 60-kb mini-chromosome. A non-centromeric plasmid, the TRP1ARS1 circle, was not affected in its maintenance. This mutant also displayed enhanced chromosome-III loss during mitosis over the wild-type strain, without elevating mitotic recombination. Cloning and sequencing of MCM17 has shown it to be the same as CHL4, a gene required for chromosome stability. This gene is non-essential for growth, as its disruption or deletion from the chromosome did not affect the growth-rate of cells at 23 degrees C or 37 degrees C. This work suggests that centromere-directed segregation of a chromosome in yeast is strongly influenced by its length.

摘要

微型染色体维持(mcm)突变体先前被描述为无法稳定维持微型染色体的酵母突变体。其中,ARS特异性类别已得到更广泛的研究,发现由于酵母自主复制序列(ARS)处DNA复制起始缺陷,这些突变体会丢失染色体和微型染色体。在本研究中,我们鉴定出了一些mcm突变体,它们表现出微型染色体大小依赖性丢失。当微型染色体的大小从约15 kb增加到约60 kb时,这些突变体中其有丝分裂稳定性显著增加,但ARS特异性突变体类别中则没有。属于大小依赖性类别的一个突变体mcm17被进一步表征。在这个突变体中,细胞携带的微型染色体拷贝数显著升高,表明存在分离缺陷。在60 kb的微型染色体中,这种缺陷在很大程度上得到了抑制。一个非着丝粒质粒,即TRP1ARS1环,其维持不受影响。与野生型菌株相比,该突变体在有丝分裂期间还表现出III号染色体丢失增加,而不增加有丝分裂重组。MCM17的克隆和测序表明它与CHL4相同,CHL4是染色体稳定性所需的一个基因。该基因对生长不是必需的,因为从染色体上破坏或缺失它不会影响细胞在23℃或37℃时的生长速率。这项工作表明酵母中染色体的着丝粒导向分离受到其长度的强烈影响。

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