首页> 外文期刊>Journal of the American Chemical Society >ELECTROSTATIC FORCES AND DIELECTRIC POLARIZABILITY OF MULTIPLY PROTONATED GAS-PHASE CYTOCHROME C IONS PROBED BY ION/MOLECULE CHEMISTRY
【24h】

ELECTROSTATIC FORCES AND DIELECTRIC POLARIZABILITY OF MULTIPLY PROTONATED GAS-PHASE CYTOCHROME C IONS PROBED BY ION/MOLECULE CHEMISTRY

机译:离子/分子化学法检测质子化气相色谱铬离子的静电力和介电极化率

获取原文
获取原文并翻译 | 示例
           

摘要

We demonstrate a method to quantitatively determine both Coulomb energy and the intrinsic dielectric polarizability of large, multiply protonated gas-phase protein ions. Information about the conformation and maximum charge state of these ions in the gas phase is also obtained. The apparent gas-phase basicities (GB(app)) of individual charge states are measured; these values are compared to those calculated from a relatively simple model in which charges are assigned to sites in an ion such that the overall ion free energy is minimized. For cytochrome c, we find our calculations can be fit to measured values of GB(app) of the 3+ to 15+ ions using a fully denatured ion conformation and an epsilon(r) = 2.0+/-0.2. This value is substantially higher than that of the small cyclic decapeptide gramicidin s, but below that predicted by theory for the interior of a protein. We find that the intrinsic basicity of individual basic charge sites, estimated by GB measurements of small peptides, is 13-18 kcal/mol higher than those of the corresponding individual amino acid, consistent with independent intramolecular interaction (self-solvation) of the charge site occurring in these large multiply protonated ions. For the 21+ ion in a denatured conformation, we find that the minimum Coulomb contribution to ion zero-point energy is 24 eV. This substantial Coulomb energy accounts for the increased reactivity and decreased stability of these highly charged ions. Our calculations indicate that the maximum charge state observed in electrospray mass spectra is determined by the relative apparent gas-phase basicity of the ion/solvent combination. Finally, we find that the gas-phase conformation of cytochrome c ions is consistent with a denatured form, although our calculations indicate that cytochrome c electrosprayed from an aqueous solution is initially in its native conformation subsequent to its desorption into the gas phase. [References: 87]
机译:我们展示了一种定量确定库仑能量和大的,多重质子化的气相蛋白质离子的固有介电极化率的方法。还可以获得有关这些离子在气相中的构象和最大电荷状态的信息。测量了各个电荷状态的表观气相碱度(GB(app));将这些值与从相对简单的模型计算得出的值进行比较,在该模型中,将电荷分配给离子中的位点,从而使总的自由离子能量最小。对于细胞色素c,我们发现使用完全变性的离子构象和epsilon(r)= 2.0 +/- 0.2,我们的计算可以适合3+至15+离子的GB(app)测量值。该值基本上高于小环十肽短杆菌肽的值,但低于理论上对蛋白质内部预测的值。我们发现,单个基本电荷位点的固有碱性(通过小肽的GB测量估算)比相应的单个氨基酸的固有碱性高13-18 kcal / mol,这与电荷的独立分子内相互作用(自溶)相一致这些大的多质子化离子中出现的位点。对于具有变性构象的21+离子,我们发现对离子零点能量的最小库仑贡献为24 eV。这种大量的库仑能量说明了这些高电荷离子的反应性增强和稳定性降低。我们的计算表明,在电喷雾质谱图中观察到的最大电荷状态由离子/溶剂组合的相对表观气相碱性确定。最后,我们发现细胞色素c离子的气相构象与变性形式一致,尽管我们的计算表明,从水溶液中电喷雾的细胞色素c最初解吸成气相后处于其天然构象。 [参考:87]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号