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G-四链体和慢性炎症对基因组不稳定性的影响:致癌过程中的附加效应。

Impact of G-Quadruplexes and Chronic Inflammation on Genome Instability: Additive Effects during Carcinogenesis.

机构信息

Department of Pathology, The Jake Gittlen Laboratories for Cancer Research, Hershey, PA 17033, USA.

出版信息

Genes (Basel). 2021 Nov 9;12(11):1779. doi: 10.3390/genes12111779.

Abstract

Genome instability is an enabling characteristic of cancer, essential for cancer cell evolution. Hotspots of genome instability, from small-scale point mutations to large-scale structural variants, are associated with sequences that potentially form non-B DNA structures. G-quadruplex (G4) forming motifs are enriched at structural variant endpoints in cancer genomes. Chronic inflammation is a physiological state underlying cancer development, and oxidative DNA damage is commonly invoked to explain how inflammation promotes genome instability. We summarize where G4s and oxidative stress overlap, with a focus on DNA replication. Guanine has low ionization potential, making G4s vulnerable to oxidative damage. Impacts to G4 structure are dependent upon lesion type, location, and G4 conformation. Occasionally, G4s pose a challenge to replicative DNA polymerases, requiring specialized DNA polymerases to maintain genome stability. Therefore, chronic inflammation creates a dual challenge for DNA polymerases to maintain genome stability: faithful G4 synthesis and bypassing unrepaired oxidative lesions. Inflammation is also accompanied by global transcriptome changes that may impact mutagenesis. Several studies suggest a regulatory role for G4s within cancer- and inflammatory-related gene promoters. We discuss the extent to which inflammation could influence gene regulation by G4s, thereby impacting genome instability, and highlight key areas for new investigation.

摘要

基因组不稳定性是癌症的一种促进特征,对癌细胞进化至关重要。基因组不稳定性的热点,从小规模的点突变到大规模的结构变体,都与可能形成非 B 型 DNA 结构的序列有关。在癌症基因组中,结构变体的末端富含形成 G-四链体 (G4) 的基序。慢性炎症是癌症发展的生理状态,氧化 DNA 损伤通常被用来解释炎症如何促进基因组不稳定性。我们总结了 G4 和氧化应激的重叠之处,重点是 DNA 复制。鸟嘌呤的电离势低,使 G4 容易受到氧化损伤。G4 结构的影响取决于损伤类型、位置和 G4 构象。偶尔,G4 会对复制 DNA 聚合酶构成挑战,需要专门的 DNA 聚合酶来维持基因组稳定性。因此,慢性炎症对 DNA 聚合酶维持基因组稳定性构成了双重挑战:忠实合成 G4 和绕过未修复的氧化损伤。炎症还伴随着全局转录组变化,可能影响突变。几项研究表明,G4 在内含子和启动子中发挥着调节作用,在癌症和炎症相关基因中。我们讨论了炎症通过 G4 影响基因调控的程度,从而影响基因组不稳定性,并强调了新研究的关键领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fde8/8619830/7929e7388084/genes-12-01779-g001.jpg

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