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Kinetic evidence for the uniport mechanism hypothesis in the mitochondrial tricarboxylate transport system

机译:线粒体三羧酸盐运输系统中单向机制假说的动力学证据

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The kinetics of the transport of citrate by the tricarboxylate transport system located in the inner mitochondrial membrane was studied in proteoliposomes containing the purified carrier protein, in order to verify the previously hypothesized mechanism of uniport (J. Bioenerg. Biomembr. 35, 133-140, 2003) and achieve some information on the kinetic properties of the carrier transport system. For this purpose, a mathematical model has been elaborated and the experimental data were analyzed according to it. The results indicate that the data actually fit with the uniport model, and hence it is confirmed that the carrier has a single binding site for its substrates and can oscillate between the inside and outside form, in both the free and substrate-bound states. The rearrangement of the free form is slower than the bound form in both directions. The dissociation constants for the internal substrate are at least one order of magnitude higher than the one for external citrate. As a consequence of these last two points, the rate of citrate transport by the carrier is much higher when it operates in exchange with another substrate than when it operates in net uniport.
机译:在含有纯化载体蛋白的脂质体中研究了位于内线粒体膜上的三羧酸盐转运系统转运柠檬酸盐的动力学,以验证先前假设的单端口机制(J. Bioenerg。Biomembr。35,133-140 (2003年)并获得有关载运系统动力学特性的一些信息。为此,已经建立了一个数学模型,并据此对实验数据进行了分析。结果表明该数据实际上与单端口模型相符,因此证实了载体具有与其底物的单个结合位点,并且可以在自由和底物结合状态下在内部和外部形式之间振荡。自由形式的重新排列在两个方向上都比绑定形式慢。内部基质的解离常数比外部柠檬酸盐的解离常数高至少一个数量级。由于这最后两点,当与另一种底物交换操作时,该载体的柠檬酸盐运输速率要比在净单端口下操作时的高得多。

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