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一种抑制酿酒酵母中ARS质粒分离偏倚的DNA聚合酶突变。

A DNA polymerase mutation that suppresses the segregation bias of an ARS plasmid in Saccharomyces cerevisiae.

作者信息

Houtteman S W, Elder R T

机构信息

Department of Medical Biochemistry and Genetics, Texas A&M University Health Science Center, College Station 77843-1114.

出版信息

Mol Cell Biol. 1993 Mar;13(3):1489-96. doi: 10.1128/mcb.13.3.1489-1496.1993.

Abstract

Yeast autonomously replicating sequence (ARS) plasmids exhibit an unusual segregation pattern during mitosis. While the nucleus divides equally into mother and daughter cells, all copies of the ARS plasmid will often remain in the mother cell. A screen was designed to isolate mutations that suppress this segregation bias. A plasmid with a weak ARS (wARS) that displayed an extremely high segregation bias was constructed. When cells were grown under selection for the wARS plasmid, the resulting colonies grew slowly and had abnormal morphology. A spontaneous recessive mutation that restored normal colony morphology was identified. This mutation suppressed plasmid segregation bias, as indicated by the increased stability of the wARS plasmid in the mutant cells even though the plasmid was present at a lower copy number. An ARS1 plasmid was also more stable in mutant cells than in wild-type cells. The wild-type allele for this mutant gene was cloned and identified as POL delta (CDC2). This gene encodes DNA polymerase delta, which is essential for DNA replication. These results indicate that DNA polymerase delta plays some role in causing the segregation bias of ARS plasmids.

摘要

酵母自主复制序列(ARS)质粒在有丝分裂期间呈现出不同寻常的分离模式。当细胞核均等分裂为母细胞和子细胞时,ARS质粒的所有拷贝通常会留在母细胞中。设计了一个筛选实验来分离抑制这种分离偏差的突变。构建了一个具有弱ARS(wARS)且表现出极高分离偏差的质粒。当细胞在选择条件下培养以获得wARS质粒时,产生的菌落生长缓慢且形态异常。鉴定出一个恢复正常菌落形态的自发隐性突变。该突变抑制了质粒分离偏差,这表现为wARS质粒在突变细胞中的稳定性增加,尽管质粒的拷贝数较低。ARS1质粒在突变细胞中也比在野生型细胞中更稳定。该突变基因的野生型等位基因被克隆并鉴定为POL δ(CDC2)。该基因编码DNA聚合酶δ,它对DNA复制至关重要。这些结果表明DNA聚合酶δ在导致ARS质粒的分离偏差中起一定作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e85f/359460/ec15079d3c22/molcellb00015-0189-a.jpg

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