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利用时间分辨单细胞成像技术解析细胞周期进程中的促有丝分裂信号。

Disentangling Pro-mitotic Signaling during Cell Cycle Progression using Time-Resolved Single-Cell Imaging.

机构信息

Institute of Pathology, Charité-Universitätsmedizin Berlin, 10117 Berlin, Germany; Institute for Theoretical Biology, Charité-Universitätsmedizin Berlin, 10115 Berlin, Germany; Integrative Research Institute Life Sciences, Humboldt University Berlin, 10115 Berlin, Germany.

Department of Biology, Technische Universität Darmstadt, 64287 Darmstadt, Germany.

出版信息

Cell Rep. 2020 Apr 14;31(2):107514. doi: 10.1016/j.celrep.2020.03.078.

Abstract

Cells rely on input from extracellular growth factors to control their proliferation during development and adult homeostasis. Such mitogenic inputs are transmitted through multiple signaling pathways that synergize to precisely regulate cell cycle entry and progression. Although the architecture of these signaling networks has been characterized in molecular detail, their relative contribution, especially at later cell cycle stages, remains largely unexplored. By combining quantitative time-resolved measurements of fluorescent reporters in untransformed human cells with targeted pharmacological inhibitors and statistical analysis, we quantify epidermal growth factor (EGF)-induced signal processing in individual cells over time and dissect the dynamic contribution of downstream pathways. We define signaling features that encode information about extracellular ligand concentrations and critical time windows for inducing cell cycle transitions. We show that both extracellular signal-regulated kinase (ERK) and phosphatidylinositol 3-kinase (PI3K) activity are necessary for initial cell cycle entry, whereas only PI3K affects the duration of S phase at later stages of mitogenic signaling.

摘要

细胞依赖于细胞外生长因子的输入来控制其在发育和成人稳态期间的增殖。这种有丝分裂输入通过多种信号通路传递,这些信号通路协同作用,精确调节细胞周期进入和进展。尽管这些信号网络的结构已经在分子水平上得到了很好的描述,但它们的相对贡献,特别是在细胞周期的后期阶段,仍然在很大程度上没有得到探索。通过将未转化的人类细胞中荧光报告基因的定量时间分辨测量与靶向药理学抑制剂和统计分析相结合,我们可以随时间定量测量表皮生长因子 (EGF) 诱导的单个细胞中的信号处理,并剖析下游途径的动态贡献。我们定义了可以编码关于细胞外配体浓度和诱导细胞周期转变的关键时间窗口的信号特征。我们表明,细胞外信号调节激酶 (ERK) 和磷脂酰肌醇 3-激酶 (PI3K) 的活性对于初始细胞周期进入都是必需的,而只有 PI3K 会影响有丝分裂信号后期 S 期的持续时间。

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