Istituto Pasteur-Fondazione Cenci Bolognetti, Department of Biochemical Sciences, CNR, Institute Biology and Molecular Pathology, SAPIENZA University of Rome, Piazzale Aldo Moro 5, 00185, Rome, Italy.
Amino Acids. 2012 Feb;42(2-3):725-31. doi: 10.1007/s00726-011-0988-x. Epub 2011 Aug 2.
Polyamine transport across the mitochondria membrane occurs by a specific, common uniporter system and appears controlled by electrostatic interactions as for polyamine oxidative deamination by bovine serum and mitochondrial matrix amine oxidases was found. In fact in all the cases, while the catalytic constants or the maximum uptake rate values show little changes with the number of the positive charges of the substrates, Michaelis-Menten constant values demonstrate exponential dependence, confirming that electrostatic forces control the docking of the substrate into the enzyme active site or polyamine channel. By the treatment of the kinetic data in terms of Gibbs equation or Eyring theory, the contribution of each positive charge of the polyamine to the Gibbs energy values for the oxidative deamination of polyamines by two mammalian amine oxidase and for polyamine transport, are obtained. These values were comparable and in good accordance with those reported in literature. Previous studies demonstrated that two negative functional groups in the active site of bovine serum and mitochondrial matrix amine oxidases interact electrostatically with three positive charges of the polyamines in the formation of the enzyme-substrate complex. Remembering the structure-function relationship of proteins, our results suggest analogous interactions in the polyamine transporter and, as a consequence, a partial structural similitude between two proteins. It follows that the primary sequences of the amino oxidases and the mitochondrial transport may, in part, be conserved.
多胺通过特定的、共同的单载体系统穿过线粒体膜进行转运,并且似乎受到静电相互作用的控制,因为已经发现牛血清和线粒体基质胺氧化酶对多胺氧化脱氨的作用。事实上,在所有情况下,虽然催化常数或最大摄取率值随底物的正电荷数变化很小,但米氏常数值表现出指数依赖性,这证实了静电作用力控制着底物与酶活性位点或多胺通道的对接。通过根据吉布斯方程或 Eyring 理论处理动力学数据,得到了多胺氧化脱氨和多胺转运过程中每个多胺正电荷对多胺氧化脱氨的吉布斯能量值的贡献。这些值是可比的,并且与文献中报道的值一致。先前的研究表明,牛血清和线粒体基质胺氧化酶的活性位点中的两个负功能基团与多胺中的三个正电荷静电相互作用,形成酶-底物复合物。考虑到蛋白质的结构-功能关系,我们的结果表明在多胺转运蛋白中存在类似的相互作用,因此两种蛋白质在结构上有一定程度的相似性。因此,氨基酸氧化酶和线粒体转运的一级序列可能在一定程度上是保守的。