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在混合培养条件下进行分化图谱分析揭示了 T 细胞命运的可调和连续谱。

Mapping differentiation under mixed culture conditions reveals a tunable continuum of T cell fates.

机构信息

Department of Immunology, Weizmann Institute of Science, Rehovot, Israel.

出版信息

PLoS Biol. 2013 Jul;11(7):e1001616. doi: 10.1371/journal.pbio.1001616. Epub 2013 Jul 30.

Abstract

Cell differentiation is typically directed by external signals that drive opposing regulatory pathways. Studying differentiation under polarizing conditions, with only one input signal provided, is limited in its ability to resolve the logic of interactions between opposing pathways. Dissection of this logic can be facilitated by mapping the system's response to mixtures of input signals, which are expected to occur in vivo, where cells are simultaneously exposed to various signals with potentially opposing effects. Here, we systematically map the response of naïve T cells to mixtures of signals driving differentiation into the Th1 and Th2 lineages. We characterize cell state at the single cell level by measuring levels of the two lineage-specific transcription factors (T-bet and GATA3) and two lineage characteristic cytokines (IFN-γ and IL-4) that are driven by these transcription regulators. We find a continuum of mixed phenotypes in which individual cells co-express the two lineage-specific master regulators at levels that gradually depend on levels of the two input signals. Using mathematical modeling we show that such tunable mixed phenotype arises if autoregulatory positive feedback loops in the gene network regulating this process are gradual and dominant over cross-pathway inhibition. We also find that expression of the lineage-specific cytokines follows two independent stochastic processes that are biased by expression levels of the master regulators. Thus, cytokine expression is highly heterogeneous under mixed conditions, with subpopulations of cells expressing only IFN-γ, only IL-4, both cytokines, or neither. The fraction of cells in each of these subpopulations changes gradually with input conditions, reproducing the continuous internal state at the cell population level. These results suggest a differentiation scheme in which cells reflect uncertainty through a continuously tuneable mixed phenotype combined with a biased stochastic decision rather than a binary phenotype with a deterministic decision.

摘要

细胞分化通常由外部信号指导,这些信号驱动相反的调节途径。在极化条件下研究分化,只提供一个输入信号,其能力有限,无法解决相反途径之间相互作用的逻辑。通过绘制系统对输入信号混合物的反应,可以促进对这种逻辑的剖析,预计这些信号混合物将在体内发生,其中细胞同时受到具有潜在相反效应的各种信号的影响。在这里,我们系统地绘制了幼稚 T 细胞对驱动 Th1 和 Th2 谱系分化的信号混合物的反应。我们通过测量两个谱系特异性转录因子(T-bet 和 GATA3)和两种谱系特征细胞因子(IFN-γ 和 IL-4)的水平来在单细胞水平上表征细胞状态,这些细胞因子由这些转录调节剂驱动。我们发现了混合表型的连续体,其中单个细胞以逐渐依赖于两个输入信号水平的方式共同表达两种谱系特异性主调节因子。使用数学建模,我们表明,如果调节该过程的基因网络中的自调节正反馈环是逐渐的并且优于交叉途径抑制,则会出现这种可调节的混合表型。我们还发现,谱系特异性细胞因子的表达遵循两个独立的随机过程,这些过程受主调节因子表达水平的偏向。因此,在混合条件下细胞因子的表达高度异质,细胞亚群仅表达 IFN-γ、仅表达 IL-4、两者均表达或两者均不表达。这些亚群中的细胞的分数随着输入条件的变化而逐渐变化,在细胞群体水平上再现连续的内部状态。这些结果表明了一种分化方案,其中细胞通过连续可调的混合表型和偏向随机的决策来反映不确定性,而不是具有确定性决策的二进制表型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f57/3728017/521590998c2a/pbio.1001616.g001.jpg

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