单细胞基因表达适应性的随机建模揭示了肿瘤亚克隆进化的非基因组因素。

Cell systems Pub Date : 2025-01-15 Epub Date: 2024-12-18 DOI:10.1016/j.cels.2024.11.013
M G Hirsch, Soumitra Pal, Farid Rashidi Mehrabadi, Salem Malikic, Charli Gruen, Antonella Sassano, Eva Pérez-Guijarro, Glenn Merlino, S Cenk Sahinalp, Erin K Molloy, Chi-Ping Day, Teresa M Przytycka
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引用次数: 0

摘要

癌症进展是一个进化过程,其驱动力是选择适应获得生长优势的细胞。我们对基因表达在亚克隆进化中的适应性进行了正式研究。我们利用亚克隆的进化历史和单细胞表达数据,将基因表达的进化变化模拟为随机的奥恩斯坦-乌伦贝克过程。将我们的模型应用于小鼠黑色素瘤单细胞衍生的亚系,发现具有不同表型的亚系具有不同的基因表达适应模式,这表明癌症进化的非遗传机制。以前观察到的抗CTLA4治疗耐药亚系表现出与侵袭和非典型Wnt信号转导相关基因的适应性表达,而对治疗有反应的亚系则表现出与增殖和典型Wnt信号转导相关基因的适应性表达。我们的研究结果表明,克隆表型的出现是基因表达特定适应性模式的结果。本文的同行评审过程透明,其记录见补充信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stochastic modeling of single-cell gene expression adaptation reveals non-genomic contribution to evolution of tumor subclones.

Cancer progression is an evolutionary process driven by the selection of cells adapted to gain growth advantage. We present a formal study on the adaptation of gene expression in subclonal evolution. We model evolutionary changes in gene expression as stochastic Ornstein-Uhlenbeck processes, jointly leveraging the evolutionary history of subclones and single-cell expression data. Applying our model to sublines derived from single cells of a mouse melanoma revealed that sublines with distinct phenotypes are underlined by different patterns of gene expression adaptation, indicating non-genetic mechanisms of cancer evolution. Sublines previously observed to be resistant to anti-CTLA4 treatment showed adaptive expression of genes related to invasion and non-canonical Wnt signaling, whereas sublines that responded to treatment showed adaptive expression of genes related to proliferation and canonical Wnt signaling. Our results suggest that clonal phenotypes emerge as the result of specific adaptivity patterns of gene expression. A record of this paper's transparent peer review process is included in the supplemental information.

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