Agmon Eran
Center for Cell Analysis and Modeling, Department of Molecular Biology and Biophysics, University of Connecticut Health, Farmington, Connecticut, USA.
ArXiv. 2024 Nov 22:arXiv:2408.00942v2.
Composition is a powerful principle for systems biology, focused on the interfaces, interconnections, and orchestration of distributed processes to enable integrative multiscale simulations. Whereas traditional models focus on the structure or dynamics of specific subsystems in controlled conditions, compositional systems biology aims to connect these models, asking critical questions about : What variables should a submodel expose through its interface? How do coupled models connect and translate across scales? How do domain-specific models connect across biological and physical disciplines to drive the synthesis of new knowledge? This approach requires robust software to integrate diverse datasets and submodels, providing researchers with tools to flexibly recombine, iteratively refine, and collaboratively expand their models. This article offers a comprehensive framework to support this vision, including: a conceptual and graphical framework to define interfaces and composition patterns; standardized schemas that facilitate modular data and model assembly; biological templates that integrate detailed submodels that connect molecular processes to the emergence of the cellular interface; and user-friendly software interfaces that empower research communities to construct and improve multiscale models of cellular systems. By addressing these needs, compositional systems biology will foster a unified and scalable approach to understanding complex cellular systems.
组合是系统生物学的一个强大原则,专注于分布式过程的接口、互连和编排,以实现整合的多尺度模拟。传统模型关注的是特定子系统在受控条件下的结构或动态,而组合系统生物学旨在连接这些模型,提出一些关键问题,比如:子模型应通过其接口公开哪些变量?耦合模型如何跨尺度连接和转换?特定领域的模型如何跨生物和物理学科连接以推动新知识的合成?这种方法需要强大的软件来整合不同的数据集和子模型,为研究人员提供灵活重组、迭代完善和协作扩展其模型的工具。本文提供了一个全面的框架来支持这一愿景,包括:一个用于定义接口和组合模式的概念性和图形化框架;便于模块化数据和模型组装的标准化模式;整合将分子过程与细胞接口的出现相连接的详细子模型的生物学模板;以及让研究团体能够构建和改进细胞系统多尺度模型的用户友好型软件接口。通过满足这些需求,组合系统生物学将促进一种统一且可扩展的方法来理解复杂的细胞系统。