首页> 美国卫生研究院文献>Biophysical Journal >Conformation of a Protein Kinase C Substrate NG(28-43) and Its Analog in Aqueous and Sodium Dodecyl Sulfate Micell Solutions
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Conformation of a Protein Kinase C Substrate NG(28-43) and Its Analog in Aqueous and Sodium Dodecyl Sulfate Micell Solutions

机译:蛋白质激酶C底物NG(28-43)及其在水溶液和十二烷基硫酸钠微细胞溶液中的类似物的构象

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摘要

A peptide corresponding to the neuronal protein neurogranin (NG) residues 28-43, NG(28-43), and its analog, [A35]NG(28-43), have been investigated by NMR, electron paramagnetic resonance (EPR), and circular dichroism (CD) spectroscopies. The peptides existed in aqueous solution predominantly in radom form. However, a nascent helical structure was detected in the central region of the parent peptide from NMR data. Furthermore, a helical structure can be detected for both peptides with greater induced secondary structure for the parent peptide in the presence of sodium dodecyl sulfate (SDS) micelle. The formation of micelles for SDS was confirmed by results from EPR as well as 13C NMR. As shown by CD experiments, helical conformer was induced for NG(28-43) in vesicular solution containing phosphatidyl serine (PS), whereas no helix can be discerned for the peptide in phosphatidyl choline (PC)-containing vesicular solution. Together with the induction of the peptide into helix in SDS micellar solution as suggested by both NMR and CD data, these results underscored the electrostatic contribution to the interaction of the PKC substrate peptides and proteins with membrane. According to NMR and CD data, a dynamic equilibrium existed between free and micelle-bound states for the peptide. Moreover, proton-deuterium exchange results and SDS-induced linewidth broadening of proton resonances allowed delineation of the orientation of the amphipathic helix on the surface of SDS micelle. The result was supported by spin label experiments that indicated F35 of NG(28-43) interacted strongly with the hydrocarbon interior of micelle. Based on the experimental findings, a working model was proposed that attempted to partly explain the roles played by the nonpolar amino acid near the phosphorylation site, by the negatively charged phospholipids, and by the basic amino acids of the substrate.
机译:已通过NMR研究了对应于神经元蛋白神经颗粒(NG)残基28-43,NG(28-43)及其类似物[A 35 ] NG(28-43)的肽,电子顺磁共振(EPR)和圆二色性(CD)光谱。肽主要以随机形式存在于水溶液中。然而,根据NMR数据,在母体肽的中心区域检测到新生的螺旋结构。此外,在十二烷基硫酸钠(SDS)胶束存在的情况下,可以检测出两种肽的螺旋结构,其亲本肽具有更高的诱导二级结构。 EPR和 13 C NMR结果证实了SDS胶束的形成。如CD实验所示,在含有磷脂酰丝氨酸(PS)的囊泡溶液中,NG(28-43)的螺旋构象异构体被诱导,而在含有磷脂酰胆碱(PC)的囊泡溶液中,无法辨认该肽的螺旋结构。 NMR和CD数据均表明,在SDS胶束溶液中将肽诱导成螺旋形后,这些结果强调了静电对PKC底物肽和蛋白质与膜相互作用的贡献。根据NMR和CD数据,该肽的游离态和胶束结合态之间存在动态平衡。此外,质子-氘交换结果和SDS引起的质子共振线宽加宽使得能够描述SDS胶束表面两亲性螺旋的取向。该结果得到自旋标记实验的支持,该实验表明NG(28-43)的F35与胶束的烃内部强烈相互作用。根据实验结果,提出了一个工作模型,试图部分解释磷酸化位点附近的非极性氨基酸,带负电荷的磷脂以及底物的碱性氨基酸所起的作用。

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