人类中 G-四链体的遗传相互作用。
Genetic interactions of G-quadruplexes in humans.
机构信息
Cancer Research United Kingdom Cambridge Institute, Cambridge, United Kingdom.
Department of Chemistry, University of Cambridge, Cambridge, United Kingdom.
出版信息
Elife. 2019 Jul 9;8:e46793. doi: 10.7554/eLife.46793.
G-quadruplexes (G4) are alternative nucleic acid structures involved in transcription, translation and replication. Aberrant G4 formation and stabilisation is linked to genome instability and cancer. G4 ligand treatment disrupts key biological processes leading to cell death. To discover genes and pathways involved with G4s and gain mechanistic insights into G4 biology, we present the first unbiased genome-wide study to systematically identify human genes that promote cell death when silenced by shRNA in the presence of G4-stabilising small molecules. Many novel genetic vulnerabilities were revealed opening up new therapeutic possibilities in cancer, which we exemplified by an orthogonal pharmacological inhibition approach that phenocopies gene silencing. We find that targeting the WEE1 cell cycle kinase or USP1 deubiquitinase in combination with G4 ligand treatment enhances cell killing. We also identify new genes and pathways regulating or interacting with G4s and demonstrate that the DDX42 DEAD-box helicase is a newly discovered G4-binding protein.
四链体(G4)是参与转录、翻译和复制的替代核酸结构。异常的 G4 形成和稳定与基因组不稳定性和癌症有关。G4 配体的处理会破坏关键的生物过程,导致细胞死亡。为了发现与 G4 相关的基因和途径,并深入了解 G4 的生物学机制,我们进行了首次无偏基因组范围内的研究,系统地鉴定了在 G4 稳定小分子存在的情况下,通过 shRNA 沉默时促进细胞死亡的人类基因。揭示了许多新的遗传脆弱性,为癌症治疗开辟了新的可能性,我们通过正交药理学抑制方法证明了这一点,该方法模拟了基因沉默。我们发现,靶向 WEE1 细胞周期激酶或 USP1 去泛素化酶与 G4 配体处理相结合,可增强细胞杀伤。我们还鉴定了新的基因和途径来调节或与 G4 相互作用,并证明了 DDX42 DEAD 盒解旋酶是一种新发现的 G4 结合蛋白。
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