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Attenuation of noise in ultrasensitive signaling cascades.

机译:超灵敏信号级联中的噪声衰减。

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摘要

Ultrasensitive cascades often implement thresholding operations in cell signaling and gene regulatory networks, converting graded input signals into discrete all-or-none outputs. However, the biochemical and genetic reactions involved in such cascades are subject to random fluctuations, leading to noise in output signal levels. Here we prove that cascades operating near saturation have output signal fluctuations that are bounded in magnitude, even as the number of noisy cascade stages becomes large. We show that these fluctuation-bounded cascades can be used to attenuate the noise in an input signal, and we find the optimal cascade length required to achieve the best possible noise reduction. Cascades with ultrasensitive transfer functions naturally operate near saturation, and can be made to simultaneously implement thresholding and noise reduction. They are therefore ideally suited to mediate signal transfer in both natural and artificial biological networks.
机译:超灵敏级联通常在细胞信号传导和基因调控网络中执行阈值操作,将分级的输入信号转换为离散的全无输出。但是,这种级联反应中涉及的生化和遗传反应会受到随机波动的影响,从而导致输出信号电平产生噪声。在这里,我们证明,即使有噪声的级联级数变大,在饱和附近工作的级联也会在幅度上限制输出信号的波动。我们证明了这些波动有界的级联可用于衰减输入信号中的噪声,并且我们找到了实现最佳可能的降噪所需的最佳级联长度。具有超灵敏传递函数的级联自然会在饱和附近工作,并且可以同时实现阈值化和降噪。因此,它们非常适合在自然和人工生物网络中介导信号传输。

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