Runge K W, Zakian V A
Fred Hutchinson Cancer Research Center, Seattle, WA 98104.
Chromosoma. 1993 Feb;102(3):207-17. doi: 10.1007/BF00387735.
We isolated mutants of Saccharomyces cerevisiae that lose a 100 kb linear yeast artificial chromosome (YAC) at elevated rates. Mutations in two of these LCS (linear chromosome stability) genes had little or no effect on the loss rate of a circular YAC that had the same centromere and origin of replication as present on the linear YAC. Moreover, mutations in these LCS genes also increased the loss rate of an authentic linear yeast chromosome, chromosome III, but had only small effects on the loss rate of a circular derivative of chromosome III. As these mutants preferentially destabilize linear chromosomes, they may affect chromosome stability through interactions at telomeres. Telomeres are thought to be essential for the protection and complete replication of chromosome ends. The cytological properties of telomeres suggest that these structures may play additional roles in chromosome function. The lengths of the terminal C1-3A repeats at the ends of yeast chromosomes were unaltered in the linear preferential lcs mutants, suggesting that these mutants do not affect the replication or protection of telomeric DNA. Thus, the linear-preferential lcs mutants may identify a role for telomeres in chromosome stability that is distinct from their function in the replication and protection of chromosomal termini.
我们分离出了酿酒酵母的突变体,这些突变体在较高温度下会以较高频率丢失一条100 kb的线性酵母人工染色体(YAC)。其中两个LCS(线性染色体稳定性)基因的突变对一个环状YAC的丢失率影响很小或没有影响,该环状YAC与线性YAC具有相同的着丝粒和复制起点。此外,这些LCS基因的突变还增加了真实线性酵母染色体——III号染色体的丢失率,但对III号染色体的环状衍生物的丢失率影响较小。由于这些突变体优先使线性染色体不稳定,它们可能通过端粒处的相互作用影响染色体稳定性。端粒被认为对于染色体末端的保护和完整复制至关重要。端粒的细胞学特性表明,这些结构可能在染色体功能中发挥其他作用。在优先使线性染色体不稳定的lcs突变体中,酵母染色体末端的末端C1-3A重复序列长度未改变,这表明这些突变体不影响端粒DNA的复制或保护。因此,优先使线性染色体不稳定的lcs突变体可能揭示了端粒在染色体稳定性中的一种作用,这种作用与其在染色体末端复制和保护中的功能不同。