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Periodic signaling controlled by an oscillatory circuit that includes protein kinases ERK2 and PKA

机译:由包含蛋白激酶ERK2和PKA的振荡电路控制的周期性信号传导

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Self-regulating systems often use robust oscillatory circuits. One such system controls the chemotactic signaling mechanism of Dictyostelium, where pulses of adenosine 3', 5'-monophosphate (cAMP) are generated with a periodicity of 7 minutes. We have observed spontaneous oscillations in activation of the mitogen-activated protein (MAP) kinase ERK2 that occur in phase with peaks of cAMP, and we show that ERK2 modulates cAMP levels through the phosphodiesterase RegA. Computer modeling and simulations of the underlying circuit faithfully account for the ability of the cells to spontaneously generate periodic pulses during specific stages of development. Similar oscillatory processes may occur in cells of many different species.
机译:自调节系统通常使用鲁棒的振荡电路。一种这样的系统控制了盘基网柄菌的趋化性信号传导机制,其中以7分钟的周期产生腺苷3',5'-单磷酸酯(cAMP)的脉冲。我们已经观察到与cAMP峰同相发生的有丝分裂原活化蛋白(MAP)激酶ERK2激活中的自发振荡,并且我们显示ERK2通过磷酸二酯酶RegA调节cAMP水平。底层电路的计算机建模和仿真忠实地说明了细胞在特定发育阶段自发产生周期性脉冲的能力。类似的振荡过程可能发生在许多不同物种的细胞中。

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