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在受限迁移过程中,机械压力会导致异常有丝分裂和 c-MYC 扩增。

Mechanical stress during confined migration causes aberrant mitoses and c-MYC amplification.

机构信息

Istituto Fondazione Italiana per la Ricerca sul Cancro di Oncologia molecolare-the Associazione Italiana per la Ricerca sul Cancro Institute of Molecular Oncology, Milano 20139, Italy.

Università degli Studi di Milano, Milan 20122, Italy.

出版信息

Proc Natl Acad Sci U S A. 2024 Jul 16;121(29):e2404551121. doi: 10.1073/pnas.2404551121. Epub 2024 Jul 11.

Abstract

Confined cell migration hampers genome integrity and activates the ATR and ATM mechano-transduction pathways. We investigated whether the mechanical stress generated by metastatic interstitial migration contributes to the enhanced chromosomal instability observed in metastatic tumor cells. We employed live cell imaging, micro-fluidic approaches, and scRNA-seq to follow the fate of tumor cells experiencing confined migration. We found that, despite functional ATR, ATM, and spindle assembly checkpoint (SAC) pathways, tumor cells dividing across constriction frequently exhibited altered spindle pole organization, chromosome mis-segregations, micronuclei formation, chromosome fragility, high gene copy number variation, and transcriptional de-regulation and up-regulation of c-MYC oncogenic transcriptional signature via c-MYC locus amplifications. In vivo tumor settings showed that malignant cells populating metastatic foci or infiltrating the interstitial stroma gave rise to cells expressing high levels of c-MYC. Altogether, our data suggest that mechanical stress during metastatic migration contributes to override the checkpoint controls and boosts genotoxic and oncogenic events. Our findings may explain why cancer aneuploidy often does not correlate with mutations in SAC genes and why c-MYC amplification is strongly linked to metastatic tumors.

摘要

细胞受限迁移会损害基因组完整性,并激活 ATR 和 ATM 机械转导途径。我们研究了转移性间质迁移产生的机械应力是否导致转移性肿瘤细胞中观察到的染色体不稳定性增强。我们采用活细胞成像、微流控方法和单细胞 RNA 测序来跟踪经历受限迁移的肿瘤细胞的命运。我们发现,尽管存在功能正常的 ATR、ATM 和纺锤体组装检查点 (SAC) 途径,但在穿过收缩区域进行分裂的肿瘤细胞中,经常出现纺锤体极组织改变、染色体错误分离、微核形成、染色体脆弱性、高基因拷贝数变异以及通过 c-MYC 基因座扩增导致 c-MYC 致癌转录特征的转录失调和上调。在体内肿瘤环境中,填充转移灶或浸润间质基质的恶性细胞产生表达高水平 c-MYC 的细胞。总之,我们的数据表明,转移性迁移过程中的机械应力有助于克服检查点控制,并促进遗传毒性和致癌事件。我们的发现可以解释为什么癌症非整倍性通常与 SAC 基因中的突变无关,以及为什么 c-MYC 扩增与转移性肿瘤密切相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab8d/11260125/7a59dbd73f5c/pnas.2404551121fig01.jpg

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