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果蝇间隙基因网络模型中结合位点的功能重要性分析。

Analysis of functional importance of binding sites in the Drosophila gap gene network model.

作者信息

Kozlov Konstantin, Gursky Vitaly V, Kulakovskiy Ivan V, Dymova Arina, Samsonova Maria

出版信息

BMC Genomics. 2015;16 Suppl 13(Suppl 13):S7. doi: 10.1186/1471-2164-16-S13-S7. Epub 2015 Dec 16.

Abstract

BACKGROUND

The statistical thermodynamics based approach provides a promising framework for construction of the genotype-phenotype map in many biological systems. Among important aspects of a good model connecting the DNA sequence information with that of a molecular phenotype (gene expression) is the selection of regulatory interactions and relevant transcription factor bindings sites. As the model may predict different levels of the functional importance of specific binding sites in different genomic and regulatory contexts, it is essential to formulate and study such models under different modeling assumptions.

RESULTS

We elaborate a two-layer model for the Drosophila gap gene network and include in the model a combined set of transcription factor binding sites and concentration dependent regulatory interaction between gap genes hunchback and Kruppel. We show that the new variants of the model are more consistent in terms of gene expression predictions for various genetic constructs in comparison to previous work. We quantify the functional importance of binding sites by calculating their impact on gene expression in the model and calculate how these impacts correlate across all sites under different modeling assumptions.

CONCLUSIONS

The assumption about the dual interaction between hb and Kr leads to the most consistent modeling results, but, on the other hand, may obscure existence of indirect interactions between binding sites in regulatory regions of distinct genes. The analysis confirms the previously formulated regulation concept of many weak binding sites working in concert. The model predicts a more or less uniform distribution of functionally important binding sites over the sets of experimentally characterized regulatory modules and other open chromatin domains.

摘要

背景

基于统计热力学的方法为构建许多生物系统中的基因型-表型图谱提供了一个有前景的框架。在将DNA序列信息与分子表型(基因表达)联系起来的良好模型的重要方面中,调节相互作用和相关转录因子结合位点的选择是关键。由于该模型可能在不同的基因组和调节背景下预测特定结合位点功能重要性的不同水平,因此在不同的建模假设下制定和研究此类模型至关重要。

结果

我们详细阐述了果蝇间隙基因网络的两层模型,并在模型中纳入了一组转录因子结合位点以及间隙基因驼背(hunchback)和克鲁佩尔(Kruppel)之间浓度依赖性的调节相互作用。我们表明,与之前的工作相比,该模型的新变体在对各种基因构建体的基因表达预测方面更加一致。我们通过计算结合位点对模型中基因表达的影响来量化其功能重要性,并计算在不同建模假设下这些影响在所有位点之间的相关性。

结论

关于驼背基因(hb)和克鲁佩尔基因(Kr)之间双重相互作用的假设导致了最一致的建模结果,但另一方面,可能会掩盖不同基因调节区域中结合位点之间间接相互作用的存在。该分析证实了之前提出的许多弱结合位点协同作用的调节概念。该模型预测,在实验表征的调节模块和其他开放染色质结构域的集合中,功能重要的结合位点或多或少呈均匀分布。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9877/4686791/0618d15d4b1f/1471-2164-16-S13-S7-1.jpg

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