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Context-Dependent Modulation of Replication Activity of Saccharomyces cerevisiae Autonomously Replicating Sequences by Transcription Factors

机译:酿酒酵母自主复制序列通过转录因子的复制活动的上下文相关的调制。

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摘要

Evidence for transcription factor involvement in the initiation of DNA replication at certain replication origins in Saccharomyces cerevisiae mainly comes from an indirect assay which measures the mitotic stability of plasmids containing an autonomously replicating sequence (ARS), a selectable marker gene, and a centromere. In order to eliminate the effect of transcription factor binding to the selectable marker gene or centromere in such assays, we have adapted the DpnI assay to directly measure ARS replication activity in vivo by using ARS plasmids devoid of extraneous transcription elements. Using this assay, we found that the B3 element of ARS1, which serves as a binding site for the transcription factor Abf1p, does not stimulate ARS activity on plasmids lacking a centromere and a selectable marker gene. We also found with such plasmids that exogenous expression of the strong transcriptional activators Gal4 and Gal4-VP16 inhibited the replication activity of ARS1 when B3 was replaced by the Gal4 binding site, although these activators had previously been shown to stimulate replication activity in the stability assay. Moreover, a chromosomally inactive ARS, ARS301, which was active by itself on a plasmid, was inactivated by placing an Abf1p binding site in its vicinity. These results indicate that the sequences surrounding the ARS as well as properties of the ARS element itself determine its response to transcription factors.
机译:酿酒酵母中某些复制起点上转录因子参与DNA复制起始的证据主要来自间接测定法,该测定法测量包含自主复制序列(ARS),选择标记基因和着丝粒的质粒的有丝分裂稳定性。为了消除在此类测定法中转录因子与选择标记基因或着丝粒结合的影响,我们采用了DpnI测定法,以通过使用不含外部转录元件的ARS质粒直接测量体内的ARS复​​制活性。使用该测定法,我们发现ARS1的B3元件(作为转录因子Abf1p的结合位点)不会刺激缺少着丝粒和选择标记基因的质粒的ARS活性。我们还发现,利用此类质粒,当B3被Gal4结合位点取代时,强转录激活因子Gal4和Gal4-VP16的外源表达抑制了ARS1的复制活性,尽管这些激活剂先前已在稳定性测定中显示出刺激复制活性的作用。 。此外,通过在其附近放置Abf1p结合位点,可灭活无染色体活性的ARS,即本身对质粒具有活性的ARS301。这些结果表明,围绕ARS的序列以及ARS元件本身的特性决定了其对转录因子的反应。

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