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首页> 外文期刊>Biophysical Journal >Enzymatically driven transport: A kinetic theory for nuclear export
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Enzymatically driven transport: A kinetic theory for nuclear export

机译:酶促运输:核出口的动力学理论

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Nuclear import and export are often considered inverse processes whereby transport receptors ferry protein cargo through the nuclear pore. In contrast to import, where the reversible binding of receptor to nuclear RanGTP leads to a balanced bidirectional exchange, termination of export by physiologically irreversible hydrolysis of the Ran-bound GTP leads to unidirectional transport. We present a concise mathematical model that predicts protein distributions and kinetic rates for receptor-mediated nuclear export, which further exhibit an unexpected pseudolinear relation one to the other. Predictions of the model are verified with permeabilized and live cell measurements.
机译:核进出口通常被认为是逆过程,转运受体通过该过程将蛋白货物运送通过核孔。与进口相反,受体与核RanGTP的可逆结合导致平衡的双向交换,而Ran结合的GTP在生理上不可逆的水解终止出口导致单向转运。我们提出了一个简洁的数学模型,该模型可以预测受体介导的核输出的蛋白质分布和动力学速率,从而进一步显示出彼此之间意外的拟线性关系。通过透化和活细胞测量验证模型的预测。

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