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A Post-Transcriptional Feedback Mechanism for Noise Suppression and Fate Stabilization

机译:噪声抑制和命运稳定的转录后反馈机制

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摘要

Diverse biological systems utilize fluctuations ("noise'') in gene expression to drive lineage-commitment decisions. However, once a commitment is made, noise becomes detrimental to reliable function, and the mechanisms enabling post-commitment noise suppression are unclear. Here, we find that architectural constraints on noise suppression are overcome to stabilize fate commitment. Using single-molecule and time-lapse imaging, we find that-after a noise-driven event-human immunodeficiency virus (HIV) strongly attenuates expression noise through a non-transcriptional negative-feedback circuit. Feedback is established through a serial cascade of post-transcriptional splicing, whereby proteins generated from spliced mRNAs autodeplete their own precursor unspliced mRNAs. Strikingly, this auto-depletion circuitry minimizes noise to stabilize HIV's commitment decision, and a noisesuppression molecule promotes stabilization. This feedback mechanism for noise suppression suggests a functional role for delayed splicing in other systems and may represent a generalizable architecture of diverse homeostatic signaling circuits.
机译:不同的生物系统利用基因表达中的波动(“噪声”)来驱动谱系承诺的决策。然而,一旦制造承诺,噪声变得不可饶恕的功能,并且能够实现承诺后噪声抑制的机制尚不清楚。这里,我们发现对噪声抑制的建筑限制被克服以稳定命运承诺。使用单分子和延时成像,我们发现 - 经过噪声驱动的事件 - 人类免疫缺陷病毒(HIV),强烈通过非非转录负反馈电路。反馈通过串行级联的后转录剪接建立,由此从剪接MRNA自动佩戴的蛋白质,其自动普拉特自身的前体未能过敏的MRNA。这种自动耗尽电路最小化噪音,以稳定艾滋病的承诺决定,以及噪音抑制分子促进稳定化。用于噪声抑制的该反馈机制表明功能性在其他系统中延迟剪接的作用,并且可以代表各种稳态信号传导电路的概括性架构。

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  • 来源
    《Cell》 |2018年第7期|共28页
  • 作者单位

    Gladstone Inst Gladstone UCSF Ctr Cell Circuitry San Francisco CA 94158 USA;

    Gladstone Inst Gladstone UCSF Ctr Cell Circuitry San Francisco CA 94158 USA;

    Gladstone Inst Gladstone UCSF Ctr Cell Circuitry San Francisco CA 94158 USA;

    Gladstone Inst Gladstone UCSF Ctr Cell Circuitry San Francisco CA 94158 USA;

    Gladstone Inst Gladstone UCSF Ctr Cell Circuitry San Francisco CA 94158 USA;

    Gladstone Inst Gladstone UCSF Ctr Cell Circuitry San Francisco CA 94158 USA;

    Oak Ridge Natl Lab Ctr Nanophase Mat Sci Oak Ridge TN 37831 USA;

    Oak Ridge Natl Lab Ctr Nanophase Mat Sci Oak Ridge TN 37831 USA;

    Gladstone Inst Gladstone UCSF Ctr Cell Circuitry San Francisco CA 94158 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
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