Impact of R-loops on oncogene-induced replication stress in cancer cells.

IF 0.7 4区 生物学 Q4 BIOLOGY Comptes Rendus Biologies Pub Date : 2023-09-22 DOI:10.5802/crbiol.123
Jonathan Heuzé, Yea-Lih Lin, Armelle Lengronne, Jérôme Poli, Philippe Pasero
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Abstract

Replication stress is an alteration in the progression of replication forks caused by a variety of events of endogenous or exogenous origin. In precancerous lesions, this stress is exacerbated by the deregulation of oncogenic pathways, which notably disrupts the coordination between replication and transcription, and leads to genetic instability and cancer development. It is now well established that transcription can interfere with genome replication in different ways, such as head-on collisions between polymerases, accumulation of positive DNA supercoils or formation of R-loops. These structures form during transcription when nascent RNA reanneals with DNA behind the RNA polymerase, forming a stable DNA:RNA hybrid. In this review, we discuss how these different cotranscriptional processes disrupt the progression of replication forks and how they contribute to genetic instability in cancer cells.

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R环对癌症细胞中致癌物诱导的复制应激的影响。
复制应激是由各种内源性或外源性事件引起的复制分叉进程的改变。在癌前病变中,致癌途径的失调加剧了这种压力,这显著破坏了复制和转录之间的协调,并导致遗传不稳定和癌症的发展。现在已经确定,转录可以以不同的方式干扰基因组复制,例如聚合酶之间的正面碰撞、阳性DNA超螺旋的积累或R环的形成。当新生的RNA与RNA聚合酶后面的DNA重新结合,形成稳定的DNA:RNA杂交体时,这些结构在转录过程中形成。在这篇综述中,我们讨论了这些不同的共转录过程如何破坏复制分支的进展,以及它们如何导致癌症细胞的遗传不稳定性。
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来源期刊
Comptes Rendus Biologies
Comptes Rendus Biologies 生物-生物学
CiteScore
2.40
自引率
0.00%
发文量
22
审稿时长
3 months
期刊介绍: The Comptes rendus Biologies publish monthly communications dealing with all biological and medical research fields (biological modelling, development and reproduction biology, cell biology, biochemistry, neurosciences, immunology, pharmacology, ecology, etc.). Articles are preferably written in English. Articles in French with an abstract in English are accepted.
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[Evolution of plant mating systems in the face of global change]. The dangerous biology of pathogenic germs. Shedding light on the unseen: how live imaging of translation could unlock new insights in developmental biology. Tribute to Roger Guillemin, a pioneer in neuroendocrinology (1924-2024), Nobel Prize in Physiology or Medicine. [Mitohormesis: a key driver of the therapy resistance in cancer cells].
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