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基因组组织与基因调控的统一场理论。

A unified-field theory of genome organization and gene regulation.

作者信息

Negro Giuseppe, Semeraro Massimiliano, Cook Peter R, Marenduzzo Davide

机构信息

SUPA, School of Physics, University of Edinburgh, Peter Guthrie Tait Road, Edinburgh EH9 3FD, UK.

Dipartimento Interateneo di Fisica, Università degli Studi di Bari and INFN, Sezione di Bari, Via Amendola 173, I-70126 Bari, Italy.

出版信息

iScience. 2024 Oct 22;27(12):111218. doi: 10.1016/j.isci.2024.111218. eCollection 2024 Dec 20.

Abstract

Our aim is to predict how often genic and non-genic promoters fire within a cell. We first review a parsimonious pan-genomic model for genome organization and gene regulation, where transcription rate is determined by proximity in 3D space of promoters to clusters containing appropriate factors and RNA polymerases. This model reconciles conflicting results indicating that regulatory mammalian networks are both simple (as over-expressing just 4 transcription factors switches cell state) and complex (as genome-wide association studies show phenotypes like cell type are determined by thousands of loci rarely encoding such factors). We then present 3D polymer simulations, and a proximity formula based on our biological model that enables prediction of transcriptional activities of all promoters in three human cell types. This simple fitting-free formula contains just one variable (distance on the genetic map to the nearest active promoter), and we suggest it can in principle be applied to any organism.

摘要

我们的目标是预测基因启动子和非基因启动子在细胞内的激活频率。我们首先回顾一个用于基因组组织和基因调控的简约泛基因组模型,其中转录速率由启动子在三维空间中与包含适当因子和RNA聚合酶的簇的接近程度决定。该模型调和了相互矛盾的结果,这些结果表明哺乳动物的调控网络既简单(因为仅过表达4种转录因子就能改变细胞状态)又复杂(因为全基因组关联研究表明,诸如细胞类型等表型是由数千个很少编码此类因子的基因座决定的)。然后,我们展示了三维聚合物模拟以及基于我们生物模型的接近度公式,该公式能够预测三种人类细胞类型中所有启动子的转录活性。这个简单的免拟合公式仅包含一个变量(遗传图谱上到最近活性启动子的距离),并且我们认为原则上它可以应用于任何生物体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f38/11607604/6111f79f8a4d/fx1.jpg

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