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一个数学模型阐明了增强子-基因预测中使用的ABC评分公式。

A mathematical model clarifies the ABC Score formula used in enhancer-gene prediction.

作者信息

Nasser Joseph, Nam Kee-Myoung, Gunawardena Jeremy

机构信息

Department of Systems Biology, Harvard Medical School, Boston, MA, USA.

Current address: Department of Physics, Brandeis University, Waltham, MA, USA.

出版信息

bioRxiv. 2024 Dec 3:2024.11.29.626072. doi: 10.1101/2024.11.29.626072.

Abstract

Enhancers are discrete DNA elements that regulate the expression of eukaryotic genes. They are important not only for their regulatory function, but also as loci that are frequently associated with disease traits. Despite their significance, our conceptual understanding of how enhancers work remains limited. CRISPR-interference methods have recently provided the means to systematically screen for enhancers in cell culture, from which a formula for predicting whether an enhancer regulates a gene, the Activity-by-Contact (ABC) Score, has emerged and has been widely adopted. While useful as a binary classifier, it is less effective at predicting the quantitative effect of an enhancer on gene expression. It is also unclear how the algebraic form of the ABC Score arises from the underlying molecular mechanisms and what assumptions are needed for it to hold. Here, we use the graph-theoretic linear framework, previously introduced to analyze gene regulation, to formulate the , a mathematical model of how multiple enhancers independently regulate a gene. We show that the algebraic form of the ABC Score arises from this model. However, the default model assumptions also imply that enhancers act additively on steady-state gene expression. This is known to be false for certain genes and we show how modifying the assumptions can accommodate this discrepancy. Overall, our approach lays a rigorous, biophysical foundation for future studies of enhancer-gene regulation.

摘要

增强子是调控真核基因表达的离散DNA元件。它们不仅因其调控功能而重要,还作为经常与疾病性状相关的位点。尽管它们很重要,但我们对增强子工作方式的概念性理解仍然有限。CRISPR干扰方法最近提供了在细胞培养中系统筛选增强子的手段,由此出现了一种预测增强子是否调控基因的公式,即接触活性(ABC)评分,并已被广泛采用。虽然作为二元分类器很有用,但它在预测增强子对基因表达的定量影响方面效果较差。目前也不清楚ABC评分的代数形式是如何从潜在的分子机制中产生的,以及它成立需要哪些假设。在这里,我们使用先前引入的用于分析基因调控的图论线性框架,来构建一个多个增强子如何独立调控一个基因的数学模型。我们表明ABC评分的代数形式源于这个模型。然而,默认的模型假设也意味着增强子对稳态基因表达的作用是累加的。已知对于某些基因来说这是错误的,我们展示了如何修改假设来适应这种差异。总体而言,我们的方法为未来增强子 - 基因调控的研究奠定了严谨的生物物理基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e685/11642778/d8985a254db6/nihpp-2024.11.29.626072v1-f0001.jpg

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