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Analysis of Damage Tolerance Pathways in Saccharomyces cerevisiae: a Requirement for Rev3 DNA Polymerase in Translesion Synthesis

机译:酿酒酵母中的损伤耐受途径的分析:跨合成的Rev3 DNA聚合酶的要求。

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摘要

The replication of double-stranded plasmids containing a single N-2-acetylaminofluorene (AAF) adduct located in a short, heteroduplex sequence was analyzed in Saccharomyces cerevisiae. The strains used were proficient or deficient for the activity of DNA polymerase ζ (REV3 and rev3Δ, respectively) in a mismatch and nucleotide excision repair-defective background (msh2Δ rad10Δ). The plasmid design enabled the determination of the frequency with which translesion synthesis (TLS) and mechanisms avoiding the adduct by using the undamaged, complementary strand (damage avoidance mechanisms) are invoked to complete replication. To this end, a hybridization technique was implemented to probe plasmid DNA isolated from individual yeast transformants by using short, 32P-end-labeled oligonucleotides specific to each strand of the heteroduplex. In both the REV3 and rev3Δ strains, the two strands of an unmodified heteroduplex plasmid were replicated in ∼80% of the transformants, with the remaining 20% having possibly undergone prereplicative MSH2-independent mismatch repair. However, in the presence of the AAF adduct, TLS occurred in only 8% of the REV3 transformants, among which 97% was mostly error free and only 3% resulted in a mutation. All TLS observed in the REV3 strain was abolished in the rev3Δ mutant, providing for the first time in vivo biochemical evidence of a requirement for the Rev3 protein in TLS.
机译:在酿酒酵母中分析了包含一个短的,异源双链序列的单个N-2-乙酰氨基芴(AAF)加合物的双链质粒的复制。在错配和核苷酸切除修复缺陷背景(msh2Δrad10Δ)中,所用菌株对DNA聚合酶ζ(分别为REV3和rev3Δ)的活性是熟练的还是缺乏的。质粒设计使得能够确定发生转移的合成(TLS)的频率以及通过使用未损坏的互补链避免损伤加合物的机制(损伤避免机制)以完成复制。为此,通过使用对异源双链体的每条链特异的短的32P-末端标记的寡核苷酸,实施了杂交技术以探测从单个酵母转化体分离的质粒DNA。在REV3和rev3Δ菌株中,未经修饰的异源双链体质粒的两条链均在约80%的转化子中复制,其余20%可能已进行了预复制的不依赖MSH2的错配修复。但是,在存在AAF加合物的情况下,只有8%的REV3转化子发生TLS,其中97%大部分无错误,只有3%导致突变。 REV3菌株中观察到的所有TLS在rev3Δ突变体中均被废除,这首次为TLS提供了Rev3蛋白的体内生化证据。

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