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解析癌细胞中非遗传异质性的全球来源。

Deciphering a global source of non-genetic heterogeneity in cancer cells.

机构信息

Center for Quantitative Biology and Peking-Tsinghua Center for Life Sciences, Academy for Advanced Interdisciplinary Studies, Peking University, Beijing 100871, China.

The MOE Key Laboratory of Cell Proliferation and Differentiation, School of Life Sciences, Peking University, Beijing 100871, China.

出版信息

Nucleic Acids Res. 2023 Sep 22;51(17):9019-9038. doi: 10.1093/nar/gkad666.

Abstract

Cell-to-cell variability within a clonal population, also known as non-genetic heterogeneity, has created significant challenges for intervening with diseases such as cancer. While non-genetic heterogeneity can arise from the variability in the expression of specific genes, it remains largely unclear whether and how clonal cells could be heterogeneous in the expression of the entire transcriptome. Here, we showed that gene transcriptional activity is globally modulated in individual cancer cells, leading to non-genetic heterogeneity in the global transcription rate. Such heterogeneity contributes to cell-to-cell variability in transcriptome size and displays both dynamic and static characteristics, with the global transcription rate temporally modulated in a cell-cycle-coupled manner and the time-averaged rate being distinct between cells and heritable across generations. Additional evidence indicated the role of ATP metabolism in this heterogeneity, and suggested its implication in intrinsic cancer drug tolerance. Collectively, our work shed light on the mode, mechanism, and implication of a global but often hidden source of non-genetic heterogeneity.

摘要

克隆群体内的细胞间变异性,也称为非遗传异质性,给干预癌症等疾病带来了重大挑战。虽然非遗传异质性可能源于特定基因表达的可变性,但克隆细胞在整个转录组表达上是否以及如何表现出异质性在很大程度上仍不清楚。在这里,我们表明基因转录活性在单个癌细胞中被全局调节,导致整个转录率的非遗传异质性。这种异质性导致转录组大小的细胞间变异性,并表现出动态和静态特征,全局转录率以细胞周期偶联的方式随时间变化,而细胞间的平均速率在不同细胞和跨代之间是不同的。额外的证据表明 ATP 代谢在这种异质性中起作用,并表明其对内在癌症药物耐受性的影响。总的来说,我们的工作揭示了非遗传异质性的一种普遍但常常隐藏的来源的模式、机制和意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/132c/10516630/83b036f663ac/gkad666figgra1.jpg

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