首页> 美国卫生研究院文献>Nucleic Acids Research >The inefficient replication origin from yeast ribosomal DNA is naturally impaired in the ARS consensus sequence and in DNA unwinding.
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The inefficient replication origin from yeast ribosomal DNA is naturally impaired in the ARS consensus sequence and in DNA unwinding.

机译:酵母核糖体DNA的复制效率低下在ARS共有序列和DNA解链中自然受到损害。

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摘要

Ribosomal DNA (rDNA) replication origins of Saccharomyces cerevisiae are known to function inefficiently, both in the context of the tandem rDNA repeats in the chromosome and as single copy autonomously replicating sequences (ARSs) in plasmids. Here we examined components of the rDNA ARS that might contribute to inefficient extrachromosomal replication. Like the efficient H4 ARS, the rDNA ARS requires a match to the 11 bp ARS consensus sequence (ACS) and a broad non-conserved region that may contain multiple elements, including a DNA unwinding element (DUE). Using a single-strand-specific nuclease hypersensitivity assay and by determining the superhelical density required for stable DNA unwinding, we found that the DNA of the rDNA ARS is not as easily unwound as the H4 ARS. Unwinding of the rDNA ARS required additional energy, similar to the unwinding of mutations in the H4 ARS that stabilize the double helix in the DUE region and impair replication. In vivo extrachromosomal replication of the rDNA ARS was cold sensitive, like H4 ARS mutants that require additional energy to unwind the DUE region but unlike the easily unwound, wild-type H4 ARS. Impairment of replication function at reduced temperature suggests that the elevated energy requirement for DNA unwinding inherent in the wild-type rDNA ARS contributes to inefficient replication function. We also examined the essential ACS match in the rDNA ARS, which is known to be imperfect at one position. A point mutation in the essential ACS that corrects the imperfect match increased the efficiency of extrachromosomal replication. Our results reveal that the essential ACS element and DNA unwinding in the rDNA ARS are naturally impaired, suggesting that inefficient function of the rDNA replication origin has a biological purpose.
机译:已知酿酒酵母的核糖体DNA(rDNA)复制起点在染色体上的串联rDNA重复序列的情况下以及作为质粒中的单拷贝自主复制序列(ARS)均无效。在这里,我们检查了可能导致效率低下的染色体外复制的rDNA ARS组件。像高效的H4 ARS一样,rDNA ARS需要与11 bp ARS共有序列(ACS)匹配,并且需要一个宽泛的非保守区域,该区域可能包含多个元件,包括DNA解链元件(DUE)。使用单链特异性核酸酶超敏反应测定并通过确定稳定DNA展开所需的超螺旋密度,我们发现rDNA ARS的DNA不像H4 ARS那样容易解旋。释放rDNA ARS需要额外的能量,类似于释放H4 ARS中稳定DUE区域中双螺旋并损害复制的突变。 rDNA ARS的体内染色体外复制是冷敏感的,例如H4 ARS突变体需要更多的能量来展开DUE区,但不像容易解开的野生型H4 ARS。在降低的温度下复制功能受损表明,野生型rDNA ARS固有的DNA解链能量需求增加,导致复制功能效率低下。我们还检查了rDNA ARS中必需的ACS匹配,已知该匹配在一个位置上并不完美。基本ACS中的点突变可纠正不完全匹配,从而提高了染色体外复制的效率。我们的结果表明,rDNA ARS中必需的ACS元件和DNA解链是自然受损的,这表明rDNA复制起点的无效功能具有生物学目的。

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