A tool for modeling gene regulatory networks (GRN_modeler) and its applications to synthetic biology.

IF 7.7 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Gábor Holló, Jung Hun Park, Emanuele Boni, Yolanda Schaerli
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引用次数: 0

Abstract

Modeling and simulating gene regulatory networks (GRNs) is crucial for understanding biological processes, predicting system behavior, interpreting experimental data and guiding the design of synthetic systems. In synthetic biology, GRNs are fundamental to enable the design and control of complex functions. However, GRN simulations can be time-consuming and often require specialized expertise. To address this challenge, we developed GRN_modeler - a user-friendly tool with a graphical user interface that enables users without programming experience to create phenomenological models, while also offering command-line support for advanced users. GRN_modeler supports the analysis of both dynamical behaviors and spatial pattern formation. We demonstrate its versatility through several examples in synthetic biology, including the design of novel oscillator families capable of robust oscillation with an even number of nodes, complementing the classical repressilator family, which requires odd-numbered nodes. Furthermore, we showcase how GRN_modeler allowed us to develop a light-detecting biosensor in Escherichia coli that tracks light intensity over several days and leaves a record in the form of ring patterns in bacterial colonies.

基因调控网络建模工具(GRN_modeler)及其在合成生物学中的应用。
基因调控网络(grn)的建模和模拟对于理解生物过程、预测系统行为、解释实验数据和指导合成系统的设计至关重要。在合成生物学中,grn是设计和控制复杂功能的基础。然而,GRN模拟可能很耗时,并且通常需要专门的专业知识。为了应对这一挑战,我们开发了GRN_modeler——一个用户友好的工具,具有图形用户界面,使没有编程经验的用户能够创建现象模型,同时还为高级用户提供命令行支持。GRN_modeler支持动态行为和空间格局形成的分析。我们通过合成生物学中的几个例子证明了它的多功能性,包括设计具有偶数节点的新型振荡器家族,以补充需要奇数节点的经典稳压器家族。此外,我们展示了GRN_modeler如何允许我们在大肠杆菌中开发一种光探测生物传感器,该传感器可以在数天内跟踪光强度,并在细菌菌落中以环形图案的形式留下记录。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecular Systems Biology
Molecular Systems Biology 生物-生化与分子生物学
CiteScore
18.50
自引率
1.00%
发文量
62
审稿时长
6-12 weeks
期刊介绍: Systems biology is a field that aims to understand complex biological systems by studying their components and how they interact. It is an integrative discipline that seeks to explain the properties and behavior of these systems. Molecular Systems Biology is a scholarly journal that publishes top-notch research in the areas of systems biology, synthetic biology, and systems medicine. It is an open access journal, meaning that its content is freely available to readers, and it is peer-reviewed to ensure the quality of the published work.
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