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Bridging the gap between modules in isolation and as part of networks: A systems framework for elucidating interaction and regulation of signalling modules

机译:弥合模块之间以及作为网络一部分的模块之间的差距:阐明信令模块的交互和调节的系统框架

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While signalling and biochemical modules have been the focus of numerous studies, they are typically studied in isolation, with no examination of the effects of the ambient network. In this paper we formulate and develop a systems framework, rooted in dynamical systems, to understand such effects, by studying the interaction of signalling modules. The modules we consider are (i) basic covalent modification, (ii) monostable switches, (iii) bistable switches, (iv) adaptive modules, and (v) oscillatory modules. We systematically examine the interaction of these modules by analyzing (a) sequential interaction without shared components, (b) sequential interaction with shared components, and (c) oblique interactions. Our studies reveal that the behaviour of a module in isolation may be substantially different from that in a network, and explicitly demonstrate how the behaviour of a given module, the characteristics of the ambient network, and the possibility of shared components can result in new effects. Our global approach illuminates different aspects of the structure and functioning of modules, revealing the importance of dynamical characteristics as well as biochemical features; this provides a methodological platform for investigating the complexity of natural modules shaped by evolution, elucidating the effects of ambient networks on a module in multiple cellular contexts, and highlighting the capabilities and constraints for engineering robust synthetic modules. Overall, such a systems framework provides a platform for bridging the gap between non-linear information processing modules, in isolation and as parts of networks, and a basis for understanding new aspects of natural and engineered cellular networks. Published by AIP Publishing.
机译:尽管信号和生化模块一直是众多研究的重点,但它们通常是独立研究的,没有检查环境网络的影响。在本文中,我们通过研究信号模块之间的相互作用,制定并开发了以动态系统为基础的系统框架,以了解这种影响。我们考虑的模块是(i)基本共价修饰,(ii)单稳态开关,(iii)双稳态开关,(iv)自适应模块和(v)振荡模块。我们通过分析(a)没有共享组件的顺序交互,(b)与共享组件的顺序交互以及(c)倾斜交互来系统地检查这些模块的交互。我们的研究表明,隔离模块的行为可能与网络中的行为大不相同,并明确证明给定模块的行为,周围网络的特性以及共享组件的可能性如何导致新的效果。我们的全球方法阐明了模块的结构和功能的不同方面,揭示了动力学特征以及生化特征的重要性;这提供了一种方法平台,可用于研究由进化形成的自然模块的复杂性,阐明环境网络在多个蜂窝环境中对模块的影响,并突出显示工程鲁棒的合成模块的功能和约束。总的来说,这样的系统框架提供了一个平台,用于隔离非线性信息处理模块之间的间隙(作为网络的一部分),并为理解自然和工程蜂窝网络的新方面提供了基础。由AIP Publishing发布。

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