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首页> 外文期刊>Theoretical Biology and Medical Modelling >Network, degeneracy and bow tie. Integrating paradigms and architectures to grasp the complexity of the immune system
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Network, degeneracy and bow tie. Integrating paradigms and architectures to grasp the complexity of the immune system

机译:网络,退化和领结。整合范式和架构以掌握免疫系统的复杂性

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Recently, the network paradigm, an application of graph theory to biology, has proven to be a powerful approach to gaining insights into biological complexity, and has catalyzed the advancement of systems biology. In this perspective and focusing on the immune system, we propose here a more comprehensive view to go beyond the concept of network. We start from the concept of degeneracy, one of the most prominent characteristic of biological complexity, defined as the ability of structurally different elements to perform the same function, and we show that degeneracy is highly intertwined with another recently-proposed organizational principle, i.e. 'bow tie architecture'. The simultaneous consideration of concepts such as degeneracy, bow tie architecture and network results in a powerful new interpretative tool that takes into account the constructive role of noise (stochastic fluctuations) and is able to grasp the major characteristics of biological complexity, i.e. the capacity to turn an apparently chaotic and highly dynamic set of signals into functional information.
机译:最近,网络范式(图论在生物学中的一种应用)被证明是一种深入了解生物学复杂性的有力方法,并催化了系统生物学的发展。从这个角度出发,并着重于免疫系统,我们在这里提出了一个更全面的观点,超越了网络的概念。我们从简并性的概念开始,简并性是生物复杂性最突出的特征之一,定义为结构上不同的元素执行相同功能的能力,并且我们证明了简并性与另一项最近提出的组织原则紧密相关,即“领结建筑”。同时考虑诸如简并性,领结结构和网络等概念,会产生一个功能强大的新解释工具,该工具考虑到了噪声(随机波动)的建设性作用,并且能够掌握生物复杂性的主要特征,即将表面上混乱且高度动态的信号转换为功能信息。

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