细胞信号传导的非平衡热力学

E. Hernández-Lemus
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引用次数: 15

摘要

细胞内部和细胞间的信号转导,也称为细胞信号传导,是大多数生物功能的关键,最终关系到生物体的生死。引起生物信号传播的过程是复杂的,极其合作的,并且发生在远离热力学平衡的状态下。它们还受到强烈依赖于局部能量学的激活动力学的驱动。由于这些原因,需要一种非平衡热力学描述,不仅考虑第二信使的激活,而且考虑传输过程和耗散。在这里,我们提出了这样一种形式的建议,它认为细胞是一个小的热力学系统,并在介观非平衡热力学的指导下,将波动的作用作为动力学的内在因素。我们还提出了一个细胞信号传导的最小模型,包括激活、运输和内在波动的贡献。我们最后通过考虑FAS信号传导的情况来说明其可行性,FAS信号传导是通过细胞凋亡决定细胞存活或死亡的重要信号转导途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonequilibrium Thermodynamics of Cell Signaling
Signal transduction inside and across the cells, also called cellular signaling, is key to most biological functions and is ultimately related with both life and death of the organisms. The processes giving rise to the propagation of biosignals are complex and extremely cooperative and occur in a far-from thermodynamic equilibrium regime. They are also driven by activation kinetics strongly dependent on local energetics. For these reasons, a nonequilibrium thermodynamical description, taking into account not just the activation of second messengers, but also transport processes and dissipation is desirable. Here we present a proposal for such a formalism, that considers cells as small thermodynamical systems and incorporates the role of fluctuations as intrinsic to the dynamics in a spirit guided by mesoscopic nonequilibrium thermodynamics. We present also a minimal model for cellular signaling that includes contributions from activation, transport, and intrinsic fluctuations. We finally illustrate its feasibility by considering the case of FAS signaling which is a vital signal transduction pathway that determines either cell survival or death by apoptosis.
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