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基于单细胞转录组数据推断上皮-间质转化的细胞间通讯和多层基因调控

Inference of Intercellular Communications and Multilayer Gene-Regulations of Epithelial-Mesenchymal Transition From Single-Cell Transcriptomic Data.

作者信息

Sha Yutong, Wang Shuxiong, Bocci Federico, Zhou Peijie, Nie Qing

机构信息

Department of Mathematics, University of California, Irvine, Irvine, CA, United States.

The NSF-Simons Center for Multiscale Cell Fate Research, University of California, Irvine, Irvine, CA, United States.

出版信息

Front Genet. 2021 Jan 8;11:604585. doi: 10.3389/fgene.2020.604585. eCollection 2020.

Abstract

Epithelial-to-mesenchymal transition (EMT) plays an important role in many biological processes during development and cancer. The advent of single-cell transcriptome sequencing techniques allows the dissection of dynamical details underlying EMT with unprecedented resolution. Despite several single-cell data analysis on EMT, how cell communicates and regulates dynamics along the EMT trajectory remains elusive. Using single-cell transcriptomic datasets, here we infer the cell-cell communications and the multilayer gene-gene regulation networks to analyze and visualize the complex cellular crosstalk and the underlying gene regulatory dynamics along EMT. Combining with trajectory analysis, our approach reveals the existence of multiple intermediate cell states (ICSs) with hybrid epithelial and mesenchymal features. Analyses on the time-series datasets from cancer cell lines with different inducing factors show that the induced EMTs are context-specific: the EMT induced by transforming growth factor B1 (TGFB1) is synchronous, whereas the EMTs induced by epidermal growth factor and tumor necrosis factor are asynchronous, and the responses of TGF-β pathway in terms of gene expression regulations are heterogeneous under different treatments or among various cell states. Meanwhile, network topology analysis suggests that the ICSs during EMT serve as the signaling in cellular communication under different conditions. Interestingly, our analysis of a mouse skin squamous cell carcinoma dataset also suggests regardless of the significant discrepancy in concrete genes between and EMT systems, the ICSs play dominant role in the TGF-β signaling crosstalk. Overall, our approach reveals the multiscale mechanisms coupling cell-cell communications and gene-gene regulations responsible for complex cell-state transitions.

摘要

上皮-间质转化(EMT)在发育和癌症的许多生物学过程中发挥着重要作用。单细胞转录组测序技术的出现使得能够以前所未有的分辨率剖析EMT背后的动态细节。尽管已经有几项关于EMT的单细胞数据分析,但细胞如何沿着EMT轨迹进行通信和调节动态仍不清楚。在这里,我们使用单细胞转录组数据集推断细胞间通信和多层基因-基因调控网络,以分析和可视化沿着EMT的复杂细胞串扰和潜在的基因调控动态。结合轨迹分析,我们的方法揭示了具有混合上皮和间质特征的多种中间细胞状态(ICS)的存在。对来自具有不同诱导因子的癌细胞系的时间序列数据集的分析表明,诱导的EMT是上下文特异性的:转化生长因子β1(TGFB1)诱导的EMT是同步的,而表皮生长因子和肿瘤坏死因子诱导的EMT是异步的,并且在不同处理或各种细胞状态下,TGF-β途径在基因表达调控方面的反应是异质的。同时,网络拓扑分析表明,EMT期间的ICS在不同条件下作为细胞通信中的信号。有趣的是,我们对小鼠皮肤鳞状细胞癌数据集的分析还表明,尽管人和小鼠EMT系统之间具体基因存在显著差异,但ICS在TGF-β信号串扰中起主导作用。总体而言,我们的方法揭示了耦合细胞间通信和基因-基因调控的多尺度机制,这些机制负责复杂的细胞状态转变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/661a/7820899/66376f18299c/fgene-11-604585-g001.jpg

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