【2h】

Messages diffuse faster than messengers

机译:信息传播比信使更快

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摘要

In many cell-signaling pathways, information is transmitted by the diffusion of messenger molecules. Diffusion coefficients characterize the messenger's spatial range and the characteristic times of signal propagation. Inside cells, particles usually diffuse in the presence of immobile binding sites (or traps). It is well known that binding to traps results in an effective diffusion coefficient that is smaller than the free coefficient in media free of traps. To measure effective diffusion coefficients in cells, “tagged” particles are often used. Radioactive calcium was used in a giant squid axon and in cytosolic extracts of Xenopus laevis oocytes. Fluorescence recovery after photobleaching yields diffusion coefficients from observations of the distribution of fluorescently labeled proteins. In the absence of traps, free diffusion coefficients give both the rate at which single-particle mean square displacements increase and the rate at which information in the form of inhomogeneities in particle concentration spread out with time. We show here that, in the presence of traps, information diffuses faster than single particles. Thus, messages diffuse faster than messengers. Tagged-particle experiments give the single-particle diffusion coefficients and, thus, can underestimate the rate of diffusive signal propagation.
机译:在许多细胞信号通路中,信息是通过信使分子的扩散来传递的。扩散系数表征了信使的空间范围和信号传播的特征时间。在细胞内部,粒子通常在固定结合位点(或陷阱)存在的情况下扩散。众所周知,与陷阱的结合导致有效的扩散系数小于没有陷阱的介质中的自由系数。为了测量细胞中的有效扩散系数,通常使用“标记”颗粒。放射性钙用于巨型鱿鱼轴突和非洲爪蟾卵母细胞的胞质提取物中。光漂白后的荧光恢复从荧光标记蛋白分布的观察结果得出扩散系数。在没有陷阱的情况下,自由扩散系数既给出单颗粒均方位移增加的速率,又给出颗粒浓度不均匀形式的信息随时间散布的速率。我们在这里表明,在存在陷阱的情况下,信息的扩散速度比单个粒子快。因此,消息的传播比消息传递的速度更快。标记粒子实验给出了单粒子扩散系数,因此可能会低估扩散信号传播的速率。

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