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通过解析转录爆发中的噪声来评估果蝇 Bicoid 形态发生素梯度系统。

Evaluating the Drosophila Bicoid morphogen gradient system through dissecting the noise in transcriptional bursts.

机构信息

Division of Biomedical Informatics, Cincinnati Children's Research Foundation, Cincinnati, OH 45229, USA.

出版信息

Bioinformatics. 2012 Apr 1;28(7):970-5. doi: 10.1093/bioinformatics/bts068. Epub 2012 Feb 2.

Abstract

MOTIVATION

We describe a statistical model to dissect the noise in transcriptional bursts in a developmental system.

RESULTS

We assume that, at any given moment of time, each copy of a native gene inside a cell can exist in either a bursting (active) or non-bursting (inactive) state. The experimentally measured total noise in the transcriptional states of a gene in a population of cells can be mathematically dissected into two contributing components: internal and external. While internal noise quantifies the stochastic nature of transcriptional bursts, external noise is caused by cell-to-cell differences including fluctuations in activator concentration. We use our developed methods to analyze the Drosophila Bicoid (Bcd) morphogen gradient system. For its target gene hunchback (hb), the noise properties can be recapitulated by a simplified gene regulatory model in which Bcd acts as the only input, suggesting that the external noise in hb transcription is primarily derived from fluctuations in the Bcd activator input. However, such a simplified gene regulatory model is insufficient to predict the noise properties of another Bcd target gene, orthodenticle (otd), suggesting that otd transcription is sensitive to additional external fluctuations beyond those in Bcd. Our results show that analysis of the relationship between input and output noise can reveal important insights into how a morphogen gradient system works. Our study also advances the knowledge about transcription at a fundamental level.

CONTACT

jun.ma@cchmc.org

SUPPLEMENTARY INFORMATION

Supplementary data are available at Bioinformatics online.

摘要

动机

我们描述了一个统计模型,用于剖析发育系统中转录爆发中的噪声。

结果

我们假设,在细胞内的任何给定时刻,一个天然基因的每个副本都可以存在于爆发(活跃)或非爆发(不活跃)状态。在细胞群体中基因转录状态的实验测量总噪声可以数学上分解为两个贡献成分:内部和外部。虽然内部噪声量化了转录爆发的随机性质,但外部噪声是由细胞间差异引起的,包括激活剂浓度的波动。我们使用我们开发的方法来分析果蝇 Bicoid (Bcd) 形态发生素梯度系统。对于其靶基因 hunchback (hb),噪声特性可以通过简化的基因调控模型来再现,其中 Bcd 作为唯一输入,这表明 hb 转录中的外部噪声主要来自 Bcd 激活剂输入的波动。然而,这样一个简化的基因调控模型不足以预测另一个 Bcd 靶基因 orthodenticle (otd) 的噪声特性,这表明 otd 转录对 Bcd 之外的其他外部波动敏感。我们的结果表明,分析输入和输出噪声之间的关系可以揭示形态发生素梯度系统如何工作的重要见解。我们的研究还在基本层面上推进了对转录的认识。

联系方式

jun.ma@cchmc.org

补充信息

补充数据可在 Bioinformatics 在线获取。

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