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Role of high-fidelity Escherichia coli DNA polymerase I in replication bypass of a deoxyadenosine DNA-peptide cross-link.高保真大肠杆菌 DNA 聚合酶 I 在脱氧腺苷 DNA-肽交联物复制绕过中的作用。
J Bacteriol. 2011 Aug;193(15):3815-21. doi: 10.1128/JB.01550-10. Epub 2011 May 27.
2
Cellular pathways for DNA repair and damage tolerance of formaldehyde-induced DNA-protein crosslinks.甲醛诱导的 DNA-蛋白质交联的 DNA 修复和损伤耐受的细胞途径。
DNA Repair (Amst). 2009 Oct 2;8(10):1207-14. doi: 10.1016/j.dnarep.2009.06.007. Epub 2009 Jul 21.
3
dUTP incorporation into genomic DNA is linked to transcription in yeast.脱氧尿苷三磷酸(dUTP)掺入基因组DNA与酵母中的转录相关。
Nature. 2009 Jun 25;459(7250):1150-3. doi: 10.1038/nature08033. Epub 2009 May 17.
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The mismatch repair system promotes DNA polymerase zeta-dependent translesion synthesis in yeast.错配修复系统促进酵母中DNA聚合酶ζ依赖性跨损伤合成。
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Repair of DNA-protein crosslink damage: coordinated actions of nucleotide excision repair and homologous recombination.DNA-蛋白质交联损伤的修复:核苷酸切除修复与同源重组的协同作用
Nucleic Acids Symp Ser (Oxf). 2008(52):57-8. doi: 10.1093/nass/nrn029.
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Repair mechanism of DNA-protein cross-link damage in Escherichia coli.大肠杆菌中DNA-蛋白质交联损伤的修复机制。
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5-Azacytidine induced methyltransferase-DNA adducts block DNA replication in vivo.5-氮杂胞苷诱导的甲基转移酶-DNA加合物在体内阻断DNA复制。
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Protein oxidation and DNA-protein crosslink induced by sulfur dioxide in lungs, livers, and hearts from mice.二氧化硫诱导小鼠肺、肝和心脏中的蛋白质氧化及DNA-蛋白质交联。
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甲醛诱导的酿酒酵母基因突变:分子特性及修复和旁路系统的作用。

Formaldehyde-induced mutagenesis in Saccharomyces cerevisiae: molecular properties and the roles of repair and bypass systems.

机构信息

Department of Biological Sciences, University of Cincinnati, Cincinnati OH 45221-0006, USA.

出版信息

Mutat Res. 2012 Mar 1;731(1-2):92-8. doi: 10.1016/j.mrfmmm.2011.12.004. Epub 2011 Dec 14.

DOI:10.1016/j.mrfmmm.2011.12.004
PMID:22197481
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3591480/
Abstract

Although DNA-protein cross-links (DPCs) pose a significant threat to genome stability, they remain a poorly understood class of DNA lesions. To define genetic impacts of DPCs on eukaryotic cells in molecular terms, we used a sensitive Saccharomyces cerevisiae frameshift-detection assay to analyze mutagenesis by formaldehyde (HCHO), and its response to nucleotide excision repair (NER) and translesion DNA synthesis (TLS). Brief exposure to HCHO was mutagenic for NER-defective rad14 strains but not for a corresponding RAD14 strain, nor for a rad14 strain lacking both Polζ and Polη TLS polymerases. This confirmed that HCHO-generated DNA lesions can trigger error-prone TLS and are substrates for the NER pathway. Sequencing revealed that HCHO-induced single-base-pair insertions occurred primarily at one hotspot; most of these insertions were also complex, changing an additional base-pair nearby. Most of the HCHO-induced mutations required both Polζ and Polη, providing a striking example of cooperativity between these two TLS polymerases during bypass of a DNA lesion formed in vivo. The similar molecular properties of HCHO-induced and spontaneous complex +1 insertions detected by this system suggest that DPCs which form in vivo during normal metabolism may contribute characteristic events to the spectra of spontaneous mutations in NER-deficient cells.

摘要

虽然 DNA-蛋白质交联物 (DPCs) 对基因组稳定性构成了重大威胁,但它们仍然是一类了解甚少的 DNA 损伤。为了从分子角度定义 DPC 对真核细胞的遗传影响,我们使用灵敏的酿酒酵母移码检测测定法来分析甲醛 (HCHO) 的诱变作用,以及其对核苷酸切除修复 (NER) 和跨损伤 DNA 合成 (TLS) 的反应。短暂暴露于 HCHO 对 NER 缺陷型 rad14 菌株具有诱变作用,但对相应的 RAD14 菌株、缺乏 Polζ 和 Polη TLS 聚合酶的 rad14 菌株均无作用。这证实了 HCHO 产生的 DNA 损伤可引发易错的 TLS,并成为 NER 途径的底物。测序表明,HCHO 诱导的单碱基插入主要发生在一个热点;这些插入物中的大多数也是复杂的,附近改变了另外一个碱基对。大多数 HCHO 诱导的突变需要 Polζ 和 Polη,这为这两种 TLS 聚合酶在体内形成的 DNA 损伤旁路过程中的协同作用提供了一个惊人的例子。该系统检测到的 HCHO 诱导的和自发的 +1 插入的类似分子特性表明,在正常新陈代谢过程中体内形成的 DPCs 可能会对 NER 缺陷细胞中自发突变的频谱产生特征性事件。