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Shadow enhancers can suppress input transcription factor noise through distinct regulatory logic

机译:暗影增强器可以通过不同的调节逻辑抑制输入转录因子噪声

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摘要

Shadow enhancers, groups of seemingly redundant enhancers, are found in a wide range of organisms and are critical for robust developmental patterning. However, their mechanism of action is unknown. We hypothesized that shadow enhancers drive consistent expression levels by buffering upstream noise through a separation of transcription factor (TF) inputs at the individual enhancers. By measuring the transcriptional dynamics of several Kruppel shadow enhancer configurations in live Drosophila embryos, we showed that individual member enhancers act largely independently. We found that TF fluctuations are an appreciable source of noise that the shadow enhancer pair can better buffer than duplicated enhancers. The shadow enhancer pair is also uniquely able to maintain low levels of expression noise across a wide range of temperatures. A stochastic model demonstrated the separation of TF inputs is sufficient to explain these findings. Our results suggest the widespread use of shadow enhancers is partially due to their noise suppressing ability.
机译:暗影增强剂,看似冗余的增强剂组在各种各样的生物中发现,对强大的发展模式至关重要。然而,他们的行动机制是未知的。我们假设暗影增强器通过在各个增强器处的转录因子(TF)输入的分离通过分离来缓冲上游噪声来驱动一致的表达水平。通过测量Live Drosophila胚胎中几种Kruppel阴影增强剂配置的转录动态,我们表明各个成员增强剂在很大程度上独立行动。我们发现TF波动是一个明显的噪声来源,即阴影增强器对可以比重复的增强器更好地缓冲。影子增强器对也是独特的,也能够在各种温度范围内保持低水平的表达噪声。随机模型证明了TF输入的分离足以解释这些发现。我们的结果表明阴影增强器的广泛使用部分是由于其噪声抑制能力。

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