酵母复制起源的结构-功能关系:ARS共识序列两侧区域DNA的高阶结构组织。

M Marilley
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引用次数: 14

摘要

为了更好地理解DNA分子在复制起始过程中的作用,我们对酿酒酵母自主复制序列(ars)的DNA结构进行了表征。使用一种新的抗弯曲DNA分析方法,使我们能够考虑到每个连续基板的弯曲贡献,我们研究了直接围绕ARS共识序列(ACS)的区域DNA的高阶结构组织。我们已经确定了左旋和右旋抗弯曲dna的侧面这一共识序列。数据显示该组织与一个活动的ACS相关联。对质粒提供ARS功能的最小核苷酸序列的分析揭示了一个例子,其中关键核苷酸仅限于ACS和右手抗弯曲DNA结构域,尽管大多数被认为的起源都包含左手和右手抗弯曲DNA。此外,突变分析表明,为了维持与质粒维持水平相关的特定DNA构象,右旋形式是必要的。提出了酵母复制起源的这些个体结构成分的作用模型。我们讨论了右手抗弯曲DNA结构域与ACS在复制起始过程中的可能作用,以及左手和右手结构组件在起源功能中的组合所提供的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structure-function relationships in replication origins of the yeast Saccharomyces cerevisiae: higher-order structural organization of DNA in regions flanking the ARS consensus sequence.

In order to better understand the involvement of the DNA molecule in the replication initiation process we have characterized the structure of the DNA at Autonomously Replicating Sequences (ARSs) in Saccharomyces cerevisiae. Using a new method for anti-bent DNA analysis, which allowed us to take into account the bending contribution of each successive base plate, we have investigated the higher-order structural organization of the DNA in the region which immediately surrounds the ARS consensus sequence (ACS). We have identified left- and right-handed anti-bent DNAs which flank this consensus sequence. The data show that this organization correlates with an active ACS. Analysis of the minimum nucleotide sequence providing ARS function to plasmids reveals an example where the critical nucleotides are restricted to the ACS and the right-handed anti-bent DNA domain, although most of the origins considered contained both left- and right-handed anti-bent DNAs. Moreover, mutational analysis shows that the right-handed form is necessary in order to sustain a specific DNA conformation which is correlated with the level of plasmid maintenance. A model for the role of these individual structural components of the yeast replication origin is presented. We discuss the possible role of the right-handed anti-bent DNA domain, in conjunction with the ACS, in the process of replication initiation, and potentialities offered by the combination of left- and right-handed structural components in origin function.

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