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Reaction-Diffusion Systems in Intracellular Molecular Transport and Control

机译:细胞内分子运输与控制中的反应扩散系统

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Chemical reactions make cells work only if the participating chemicals are delivered to desired locations in a timely and precise fashion. Most research to date has focused on active-transport mechanisms, although passive diffusion is often equally rapid and energetically less costly. Capitalizing on these advantages, cells have developed sophisticated reaction-diffusion (RD) systems that control a wide range of cellular functions—from chemotaxis and cell division, through signaling cascades and oscillations, to cell motility. These apparently diverse systems share many common features and are "wired" according to "generic" motifs such as nonlinear kinetics, autocatalysis, and feedback loops. Understanding the operation of these complex (bio)chemical systems requires the analysis of pertinent transport-kinetic equations or, at least on a qualitative level, of the characteristic times of the constituent subprocesses. Therefore, in reviewing the manifestations of cellular RD, we also describe basic theory of reaction-diffusion phenomena.
机译:化学反应只有在将参与的化学物质及时准确地输送到所需位置时,细胞才能起作用。迄今为止,大多数研究都集中在主动传输机制上,尽管被动扩散通常同样迅速并且在能源上成本更低。利用这些优势,细胞开发了复杂的反应扩散(RD)系统,该系统可控制广泛的细胞功能-从趋化性和细胞分裂到信号级联和振荡,再到细胞运动。这些看似多样化的系统具有许多共同的特征,并根据“通用”主题(例如非线性动力学,自催化和反馈回路)进行“布线”。了解这些复杂的(生物)化学系统的操作要求分析相关的运输动力学方程,或者至少在定性上分析组成子过程的特征时间。因此,在回顾细胞RD的表现时,我们还描述了反应扩散现象的基本理论。

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