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一种基于细胞的模型系统将染色体碎裂与超倍体联系起来。

A cell-based model system links chromothripsis with hyperploidy.

作者信息

Mardin Balca R, Drainas Alexandros P, Waszak Sebastian M, Weischenfeldt Joachim, Isokane Mayumi, Stütz Adrian M, Raeder Benjamin, Efthymiopoulos Theocharis, Buccitelli Christopher, Segura-Wang Maia, Northcott Paul, Pfister Stefan M, Lichter Peter, Ellenberg Jan, Korbel Jan O

机构信息

European Molecular Biology Laboratory, Genome Biology Unit, Heidelberg, Germany.

European Molecular Biology Laboratory, Cell Biology and Biophysics Unit, Heidelberg, Germany.

出版信息

Mol Syst Biol. 2015 Sep 28;11(9):828. doi: 10.15252/msb.20156505.

Abstract

A remarkable observation emerging from recent cancer genome analyses is the identification of chromothripsis as a one-off genomic catastrophe, resulting in massive somatic DNA structural rearrangements (SRs). Largely due to lack of suitable model systems, the mechanistic basis of chromothripsis has remained elusive. We developed an integrative method termed "complex alterations after selection and transformation (CAST)," enabling efficient in vitro generation of complex DNA rearrangements including chromothripsis, using cell perturbations coupled with a strong selection barrier followed by massively parallel sequencing. We employed this methodology to characterize catastrophic SR formation processes, their temporal sequence, and their impact on gene expression and cell division. Our in vitro system uncovered a propensity of chromothripsis to occur in cells with damaged telomeres, and in particular in hyperploid cells. Analysis of primary medulloblastoma cancer genomes verified the link between hyperploidy and chromothripsis in vivo. CAST provides the foundation for mechanistic dissection of complex DNA rearrangement processes.

摘要

近期癌症基因组分析得出的一个显著发现是,染色体碎裂被认定为一次性的基因组灾难,会导致大量体细胞DNA结构重排(SRs)。很大程度上由于缺乏合适的模型系统,染色体碎裂的机制基础一直难以捉摸。我们开发了一种名为“选择与转化后的复杂改变(CAST)”的综合方法,通过细胞扰动结合强大的选择屏障,随后进行大规模平行测序,能够在体外高效产生包括染色体碎裂在内的复杂DNA重排。我们运用这种方法来表征灾难性SR形成过程、它们的时间顺序以及它们对基因表达和细胞分裂的影响。我们的体外系统揭示了染色体碎裂在端粒受损的细胞中,特别是在超倍体细胞中发生的倾向。对原发性髓母细胞瘤癌症基因组的分析证实了体内超倍体与染色体碎裂之间的联系。CAST为复杂DNA重排过程的机制剖析奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6da6/4592670/ad45b0e1413c/msb0011-0828-f1.jpg

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