首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Enhancement of telomere-plasmid segregation by the X-telomere associated sequence in Saccharomyces cerevisiae involves SIR2, SIR3, SIR4 and ABF1.
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Enhancement of telomere-plasmid segregation by the X-telomere associated sequence in Saccharomyces cerevisiae involves SIR2, SIR3, SIR4 and ABF1.

机译:酿酒酵母中X端粒相关序列增强端粒-质粒分离的过程涉及SIR2,SIR3,SIR4和ABF1。

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We have previously shown that circular replicating plasmids that carry yeast telomere repeat sequence (TG1-3) tracts segregate efficiently relative to analogous plasmids lacking the TG1-3 tract and this efficient segregation is dependent upon RAP1. While a long TG1-3 tract is sufficient to improve plasmid segregation, the segregation efficiency of telomere plasmids (TEL-plasmids) is enhanced when the X-Telomere Associated Sequence (X-TAS) is also included on the plasmids. We now demonstrate that the enhancement of TEL-plasmid segregation by the X-TAS depends on SIR2, SIR3, SIR4 and ABF1 in trans and requires the Abf1p-binding site within the X-TAS. Mutation of the Abf1p-binding site within the X-TAS results in TEL-plasmids that are no longer affected by mutations in SIR2, SIR3 or SIR4, despite the fact that other Abf1p-binding sites are present on the plasmid. Mutation of the ARS consensus sequence within the X-TAS converts the X-TAS from an enhancer element to a negative element that interferes with TEL-plasmid segregation in a SIR-dependent manner. Thus, telomere associated sequences interact with TG1-3 tracts on the plasmid, suggesting that the TASs have an active role in modulating telomere function.
机译:以前我们已经表明,携带酵母端粒重复序列(TG1-3)的环状复制质粒相对于缺少TG1-3的类似质粒有效分离,而这种有效的分离取决于RAP1。虽然长的TG1-3片段足以改善质粒的分离,但当质粒中还包含X-端粒相关序列(X-TAS)时,端粒质粒(TEL-质粒)的分离效率就会提高。现在,我们证明X-TAS增强TEL-质粒的分离取决于SIR2,SIR3,SIR4和ABF1反式,并且需要X-TAS内的Abf1p结合位点。 X-TAS中Abf1p结合位点的突变导致TEL质粒不再受SIR2,SIR3或SIR4中突变的影响,尽管质粒上存在其他Abf1p结合位点的事实。 X-TAS中ARS共有序列的突变将X-TAS从增强子元件转化为负离子元件,从而以SIR依赖的方式干扰TEL-质粒的分离。因此,端粒相关序列与质粒上的TG1-3相互作用,表明TAS在调节端粒功能中起积极作用。

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