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Genome-Wide Alterations of the DNA Replication Program during Tumor Progression

机译:肿瘤进展期间DNA复制程序的基因组改变

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Oncogenic stress is a major driving force in the early stages of cancer development. Recent experimental findings reveal that, in precancerous lesions and cancers, activated oncogenes may induce stalling and dissociation of DNA replication forks resulting in DNA damage. Replication timing is emerging as an important epigenetic feature that recapitulates several genomic, epigenetic and functional specificities of even closely related cell types. There is increasing evidence that chromosome rearrangements, the hallmark of many cancer genomes, are intimately associated with the DNA replication program and that epigenetic replication timing changes often precede chromosomic rearrangements. The recent development of a novel methodology to map replication fork polarity using deep sequencing of Okazaki fragments has provided new and complementary genome-wide replication profiling data. We review the results of a wavelet-based multi-scale analysis of genomic and epigenetic data including replication profiles along human chromosomes. These results provide new insight into the spatio-temporal replication program and its dynamics during differentiation. Here our goal is to bring to cancer research, the experimental protocols and computational methodologies for replication program profiling, and also the modeling of the spatio-temporal replication program. To illustrate our purpose, we report very preliminary results obtained for the chronic myelogeneous leukemia, the archetype model of cancer. Finally, we discuss promising perspectives on using genome-wide DNA replication profiling as a novel efficient tool for cancer diagnosis, prognosis and personalized treatment.
机译:致癌胁迫是癌症发展早期阶段的主要动力。最近的实验结果表明,在癌前病变和癌症中,活化的癌症可能会诱导DNA复制叉的停滞和解离导致DNA损伤。复制时序是作为重要的表观遗传特征,其概括了甚至密切相关细胞类型的若干基因组,表观遗传和功能特异性。越来越多的证据表明,染色体重排,许多癌症基因组的标志,与DNA复制计划密切相关,并且表观遗传复制时序通常会改变染色体重排。使用冈崎片段的深度测序来映射复制叉极度的新型方法的最新发展已经提供了新的和互补的基因组复制分析数据。我们审查基于小波的基因组和表观遗传数据的基于小尺度分析的结果,包括沿人类染色体的复制谱。这些结果在分化期间对时空复制程序及其动力学提供了新的洞察力。在这里,我们的目标是为复制程序分析带来癌症研究,实验协议和计算方法,以及时空复制程序的建模。为了说明我们的目的,我们报告了对慢性敏感白血病,癌症原型模型获得的非常初步的结果。最后,我们讨论了对使用基因组DNA复制分析作为癌症诊断,预后和个性化治疗的新型有效工具的前景。

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