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人工染色体在酿酒酵母的cdc突变体中的有丝分裂传递。

Mitotic transmission of artificial chromosomes in cdc mutants of the yeast, Saccharomyces cerevisiae.

作者信息

Palmer R E, Hogan E, Koshland D

机构信息

Department of Population Dynamics, Johns Hopkins University School of Hygiene and Public Health, Baltimore, Maryland 21205.

出版信息

Genetics. 1990 Aug;125(4):763-74. doi: 10.1093/genetics/125.4.763.

Abstract

In the yeast, Saccharomyces cerevisiae, cell division cycle (CDC) genes have been identified whose products are required for the execution of different steps in the cell cycle. In this study, the fidelity of transmission of a 14-kb circular minichromosome and a 155-kb linear chromosome fragment was examined in cell divisions where specific CDC products were temporarily inactivated with either inhibitors, or temperature sensitive mutations in the appropriate CDC gene. All of the cdc mutants previously shown to induce loss of endogenous linear chromosomes also induced loss of a circular minichromosome and a large linear chromosome fragment in our study (either 1:0 or 2:0 loss events). Therefore, the efficient transmission of these artificial chromosomes depends upon the same trans factors that are required for the efficient transmission of endogenous chromosomes. In a subset of cdc mutants (cdc6, cdc7 and cdc16), the rate of minichromosome loss was significantly greater than the rate of loss of the linear chromosome fragment, suggesting that a structural feature of the minichromosome (nucleotide content, length or topology) makes the minichromosome hypersensitive to the level of function of these CDC gene products. In another subset of cdc mutants (cdc7 and cdc17), the relative rate of 1:0 events to 2:0 events differed for the minichromosome and chromosome fragment, suggesting that the type of chromosome loss event observed in these mutants was dependent upon chromosome structure. Finally, we show that 2:0 events for the minichromosome can occur by both a RAD52 dependent and RAD52 independent mechanism. These results are discussed in the context of the molecular functions of the CDC products.

摘要

在酿酒酵母中,已鉴定出细胞分裂周期(CDC)基因,其产物是细胞周期中不同步骤执行所必需的。在本研究中,在特定CDC产物被抑制剂或适当CDC基因中的温度敏感突变暂时失活的细胞分裂中,检测了一个14kb环状微型染色体和一个155kb线性染色体片段的传递保真度。在我们的研究中,所有先前显示会导致内源性线性染色体丢失的cdc突变体也会导致环状微型染色体和大的线性染色体片段丢失(1:0或2:0丢失事件)。因此,这些人工染色体的有效传递取决于内源性染色体有效传递所需的相同反式因子。在一部分cdc突变体(cdc6、cdc7和cdc16)中,微型染色体的丢失率明显高于线性染色体片段的丢失率,这表明微型染色体的结构特征(核苷酸含量、长度或拓扑结构)使微型染色体对这些CDC基因产物的功能水平高度敏感。在另一部分cdc突变体(cdc7和cdc17)中,微型染色体和染色体片段的1:0事件与2:0事件的相对发生率不同,这表明在这些突变体中观察到的染色体丢失事件类型取决于染色体结构。最后,我们表明微型染色体的2:0事件可以通过RAD52依赖性和RAD52非依赖性机制发生。这些结果在CDC产物的分子功能背景下进行了讨论。

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