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组成型表达的真核基因的最小内在随机性是亚泊松分布的。

The minimal intrinsic stochasticity of constitutively expressed eukaryotic genes is sub-Poissonian.

作者信息

Weidemann Douglas E, Singh Abhyudai, Grima Ramon, Hauf Silke

机构信息

Department of Biological Sciences, Virginia Tech, Blacksburg, VA 24061, USA.

Fralin Life Sciences Institute, Virginia Tech, Blacksburg, VA 24061, USA.

出版信息

bioRxiv. 2023 Mar 8:2023.03.06.531283. doi: 10.1101/2023.03.06.531283.

Abstract

Stochastic variation in gene products ("noise") is an inescapable by-product of gene expression. Noise must be minimized to allow for the reliable execution of cellular functions. However, noise cannot be suppressed beyond an intrinsic lower limit. For constitutively expressed genes, this limit is believed to be Poissonian, meaning that the variance in mRNA numbers cannot be lower than their mean. Here, we show that several cell division genes in fission yeast have mRNA variances significantly below this limit, which cannot be explained by the classical gene expression model for low-noise genes. Our analysis reveals that multiple steps in both transcription and mRNA degradation are essential to explain this sub-Poissonian variance. The sub-Poissonian regime differs qualitatively from previously characterized noise regimes, a hallmark being that cytoplasmic noise is reduced when the mRNA export rate increases. Our study re-defines the lower limit of eukaryotic gene expression noise and identifies molecular requirements for ultra-low noise which are expected to support essential cell functions.

摘要

基因产物中的随机变化(“噪声”)是基因表达不可避免的副产物。必须将噪声降至最低,以确保细胞功能的可靠执行。然而,噪声不能被抑制到内在下限以下。对于组成型表达的基因,这个下限被认为是泊松分布的,这意味着mRNA数量的方差不能低于其均值。在这里,我们表明裂殖酵母中的几个细胞分裂基因的mRNA方差显著低于这个下限,这无法用低噪声基因的经典基因表达模型来解释。我们的分析表明,转录和mRNA降解的多个步骤对于解释这种亚泊松方差至关重要。亚泊松状态在性质上不同于先前表征的噪声状态,一个标志是当mRNA输出速率增加时,细胞质噪声会降低。我们的研究重新定义了真核基因表达噪声的下限,并确定了超低噪声的分子要求,这些要求有望支持基本的细胞功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3df7/10028819/d628a9d606f0/nihpp-2023.03.06.531283v2-f0001.jpg

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