Zakian V A, Blanton H M, Dani G M
Hutchinson Cancer Research Center, Seattle, WA 98104.
Curr Genet. 1985;9(6):441-5. doi: 10.1007/BF00434048.
Natural termini from macronuclear DNA of the ciliated protozoans Tetrahymena thermophila and Oxytricha fallax can support telomere formation yeast. However, plasmids carrying these ciliate termini are modified by the addition of DNA which hybridizes to the synthetic oligonucleotide poly [d(C-A]), a sequence which also hybridizes to terminal restriction fragments from yeast chromosomes but not to Tetrahymena or Oxytricha macronuclear DNAs. Thus, in yeast, the creation of new telomeres on ciliate termini involves the acquisition of yeast-specific terminal sequences presumably by either recombination or non-templated DNA synthesis. The RAD52 gene is required for the majority of yeast mitotic and meiotic recombination events. Moreover, the absence of an active RAD52 gene product results in high rates of chromosome loss. Here we demonstrate that terminal restriction fragments from Tetrahymena macronuclear ribosomal DNA (rDNA) support the formation of modified telomeres in a yeast strain carrying a defect in the RAD52 gene. Moreover, linear plasmids bearing these modified ciliate termini are stably propagated in rad52- cells.
嗜热四膜虫和尖毛虫大核DNA的天然末端能够在酵母中支持端粒形成。然而,携带这些纤毛虫末端的质粒会因添加了与合成寡核苷酸聚[d(C-A)]杂交的DNA而发生修饰,该序列也与酵母染色体的末端限制片段杂交,但不与四膜虫或尖毛虫的大核DNA杂交。因此,在酵母中,在纤毛虫末端形成新的端粒涉及通过重组或非模板化DNA合成大概获取酵母特异性的末端序列。RAD52基因是大多数酵母有丝分裂和减数分裂重组事件所必需的。此外,缺乏活性RAD52基因产物会导致染色体丢失率很高。在此我们证明,来自嗜热四膜虫大核核糖体DNA(rDNA)的末端限制片段能够在携带RAD52基因缺陷的酵母菌株中支持修饰端粒的形成。此外,携带这些修饰纤毛虫末端的线性质粒能够在rad52-细胞中稳定增殖。