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Chromosome-specific and noisy IFNB1 transcription in individual virus-infected human primary dendritic cells

机译:个别病毒感染的人原代树突状细胞中的染色体特异性和嘈杂的IFNB1转录

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The induction of interferon beta (IFNB1) is a key event in the antiviral immune response. We studied the role of transcriptional noise in the regulation of the IFNB1 locus in primary cultures of human dendritic cells (DCs), which are important 'first responders' to viral infection. In single cell assays, IFNB1 mRNA expression in virus-infected DCs showed much greater cell-to-cell variation than that of a housekeeping gene, another induced transcript and viral RNA. We determined the contribution of intrinsic noise by measuring the allelic origin of transcripts in each cell and found that intrinsic noise is a very significant part of total noise. We developed a stochastic model to investigate the underlying mechanisms. We propose that the surprisingly high levels of IFNB1 transcript noise originate from the complexity of IFNB1 enhanceosome formation, which leads to a range up to many minutes in the differences within each cell in the time of activation of each allele.
机译:干扰素β(IFNB1)的诱导是抗病毒免疫反应中的关键事件。我们研究了转录噪声在人类树突状细胞(DC)的原代培养中对IFNB1基因座的调节中的作用,这是病毒感染的重要“第一反应者”。在单细胞测定中,病毒感染的DC中的IFNB1 mRNA表达比管家基因,另一种诱导的转录本和病毒RNA的细胞间差异更大。我们通过测量每个细胞中转录本的等位基因起源来确定内在噪声的贡献,并发现内在噪声是总噪声的非常重要的部分。我们开发了一个随机模型来研究潜在的机制。我们提出,令人惊讶的高水平的IFNB1转录噪声源自IFNB1增强体形成的复杂性,导致每个等位基因激活时每个细胞内差异的变化范围长达数分钟。

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