Di Paolo M L, Corazza A, Scarpa M, Stevanato R, Rigo A
Dipartimento di Fisica, Università di Trento, Italy.
Biochim Biophys Acta. 1995 Mar 15;1247(2):246-52. doi: 10.1016/0167-4838(94)00217-5.
The interaction between polyphosphates and polyamines was investigated by 31P-NMR spectroscopy and by amine oxidase activity measurements. An apparent competition between negatively charged polyphosphates (ATP, ADP, AMP, tripolyphosphate and pyrophosphate) and positively charged polyamine, for the active site of bovine serum and soybean seedling amine oxidases, was observed by activity measurements. This behavior was explained by formation of polyamine-polyphosphate complexes and the stability constants of these complexes were calculated by 31P NMR. However, at a given concentration of polyphosphate, the amine oxidase activity was found higher than that expected on the basis of the free amine concentration calculated according to the NMR stability constant. This fact, and the different extent of inhibition of the spermidine oxidase activity of soybean seedling and of bovine serum amine oxidases observed in the presence of a given polyphosphate, suggest that amine oxidases may be active also on the polyamine-polyphosphate complexes. This hypothesis was supported by the strong dependence of the kcat/Km of bovine serum amine oxidase on ionic strength, indicating an electrostatic interaction between the charged amine and the active site, while no effect of ionic strength on kcat/Km was observed in the presence of ATP. A kinetic model of this behavior was found to fit the experimental data.
通过31P-NMR光谱法和胺氧化酶活性测量研究了多磷酸盐与多胺之间的相互作用。通过活性测量观察到,带负电荷的多磷酸盐(ATP、ADP、AMP、三聚磷酸盐和焦磷酸盐)与带正电荷的多胺之间对牛血清和大豆幼苗胺氧化酶的活性位点存在明显竞争。这种行为通过多胺-多磷酸盐复合物的形成得到解释,并且通过31P NMR计算了这些复合物的稳定常数。然而,在给定的多磷酸盐浓度下,发现胺氧化酶活性高于根据NMR稳定常数计算的游离胺浓度所预期的活性。这一事实,以及在存在给定多磷酸盐的情况下观察到的大豆幼苗和牛血清胺氧化酶对亚精胺氧化酶活性的不同抑制程度,表明胺氧化酶对多胺-多磷酸盐复合物也可能具有活性。这一假设得到了牛血清胺氧化酶的kcat/Km对离子强度的强烈依赖性的支持,这表明带电荷的胺与活性位点之间存在静电相互作用,而在存在ATP的情况下未观察到离子强度对kcat/Km有影响。发现这种行为的动力学模型符合实验数据。