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Information propagation from IP3 to target protein: A combined model for encoding and decoding of Ca2+ signal

机译:从IP3到目标蛋白的信息传播:Ca2 +信号编码和解码的组合模型

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It is well known that information is encoded in the frequency or amplitude of Ca2+ Signal and then decoded by target protein. However, few models considered both the encoding and decoding procedures of Ca2+ signal. In this work, a minimal Li-Rinzel model is coupled with a phosphorylation-dephosphorylation cycle model, which is used to investigate information transmissions from inositol 1,4,5-trisphosphate (IP3) to target proteins and their relations. We found that the mean target protein activity increases with the IP3 concentration, and at a low level of stimulation, the target protein can be more efficiently activated by an oscillatory signal than a constant signal of the same average calcium if Ca2+ acts cooperatively on the kinase. The internal noise resulting from the finite system size is also taken into account in the combined model.
机译:众所周知,信息以Ca 2+信号的频率或幅度编码,然后由靶蛋白解码。但是,很少有模型同时考虑Ca2 +信号的编码和解码过程。在这项工作中,一个最小的Li-Rinzel模型与一个磷酸化-去磷酸化循环模型结合在一起,该模型用于研究从肌醇1,4,5-三磷酸(IP3)到目标蛋白的信息传递及其关系。我们发现平均靶蛋白活性随IP3浓度的增加而增加,并且在低水平的刺激下,如果Ca2 +协同作用于激酶,则与相同平均钙的恒定信号相比,振荡信号可以更有效地激活靶蛋白。 。在组合模型中还考虑了由有限系统大小引起的内部噪声。

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