Peariso Amber M, Nicholson Kellie M, Benjamin Jones R, Green-Church Kari B, Funk Max O
Department of Chemistry, University of Toledo, Toledo, Ohio 43606, USA.
Proteins. 2008 Feb 15;70(3):650-8. doi: 10.1002/prot.21543.
Electrospray ionization mass spectrometry was used to examine both the covalent structure and solution conformation of the soybean lipoxygenases. The post-translational modifications of two lipoxgyenases were identified as N-terminal acetylations by tandem mass spectrometry of peptides generated by trypsin digestion. The N-terminal sequence suggests that the proteins were substrates for the plant homolog of the N-terminal acetyltransferase complex C in yeast. Analysis of samples of native lipoxygenase-3 produced ions corresponding within experimental error to the mass of the N-acetylated polypeptide and one iron atom. The precision of the measurements was within roughly 100 ppm for the 96,856 Da protein. This made it possible to detect the addition of a single oxygen atom to the enzyme in a chemical modification reaction with cumene hydroperoxide. The acid-induced denaturation of lipoxygenase-3, which was accompanied by nearly complete loss of catalytic activity, was observed below pH 3.5 with the appearance of ions in the mass spectrum derived from the apoprotein. There was no evidence for the loss of iron in the absence of unfolding. Solutions of lipoxygenase-3 incubated in 0.1M acetic acid produced ions with a novel charge state distribution suggesting a unique conformation. Circular dichroism measurements showed that the secondary structure features of the native protein were retained in the new conformation. Dynamic light scattering revealed that the new conformation was not a consequence of protein aggregation as the hydrodynamic radius of lipoxygenase-3 was significantly smaller in acetic acid solution than at pH 7.0. Remarkably, the enzyme incubated in acetic acid retained full catalytic activity.
采用电喷雾电离质谱法研究了大豆脂氧合酶的共价结构和溶液构象。通过对胰蛋白酶消化产生的肽段进行串联质谱分析,确定了两种脂氧合酶的翻译后修饰为N端乙酰化。N端序列表明这些蛋白质是酵母中N端乙酰转移酶复合物C的植物同源物的底物。对天然脂氧合酶-3样品的分析产生了与N-乙酰化多肽和一个铁原子质量在实验误差范围内相对应的离子。对于96,856 Da的蛋白质,测量精度约为100 ppm。这使得在与氢过氧化异丙苯的化学修饰反应中能够检测到酶上单个氧原子的添加。在pH 3.5以下观察到脂氧合酶-3的酸诱导变性,伴随着催化活性几乎完全丧失,同时质谱中出现了来自脱辅基蛋白的离子。在没有展开的情况下没有铁流失的证据。在0.1M乙酸中孵育的脂氧合酶-3溶液产生了具有新电荷态分布的离子,表明其构象独特。圆二色性测量表明,天然蛋白质的二级结构特征在新构象中得以保留。动态光散射显示,新构象不是蛋白质聚集的结果,因为脂氧合酶-3在乙酸溶液中的流体动力学半径明显小于在pH 7.0时的半径。值得注意的是,在乙酸中孵育的酶保留了全部催化活性。