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Direct effects of phosphorylation on the preferred backbone conformation of peptides: a nuclear magnetic resonance study.

机译:磷酸化对肽的优选主链构象的直接影响:核磁共振研究。

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摘要

Control of protein activity by phosphorylation appears to work principally by inducing conformational change, but the mechanisms so far reported are dependent on the structural context in which phosphorylation occurs. As the activity of many small peptides is also regulated by phosphorylation, we decided to investigate possible direct consequences of this on the preferred backbone conformation. We have performed 1H nuclear magnetic resonance (NMR) experiments with short model peptides of the pattern Gly-Ser-Xaa-Ser, where Xaa represents Ser, Thr, or Tyr in either phosphorylated or unphosphorylated form and with either free or blocked amino and carboxy termini. The chemical shifts of amide protons and the 3JNH-Halpha coupling constants were estimated from one-dimensional and two-dimensional scalar correlated spectroscopy (COSY) spectra at different pH values. The results clearly indicate a direct structural effect of serine and threonine phosphorylation on the preferred backbone dihedrals independent of the presence of charged groups in the surrounding sequence. Tyrosine phosphorylation does not induce such a charge-independent effect. Additionally, experiments with p-fluoro- and p-nitro-phenylalanine-containing peptides showed that the mere presence of an electronegative group on the aromatic ring of tyrosine does not produce direct structural effects. In the case of serine and threonine phosphorylation a strong dependence of the conformational shift on the protonation level of the phosphoryl group could be observed, showing that phosphorylation induces the strongest effect in its dianionic, i.e., physiological, form. The data reveal a hitherto unknown mechanism that may be added to the repertoire of conformational control of peptides and proteins by phosphorylation.
机译:通过磷酸化控制蛋白质活性似乎主要是通过诱导构象变化起作用,但是迄今为止报道的机制取决于磷酸化发生的结构背景。由于许多小肽的活性也受磷酸化作用的调节,我们决定研究其对优选的主链构象的可能直接影响。我们已经对Gly-Ser-Xaa-Ser模式的短模型肽进行了1H核磁共振(NMR)实验,其中Xaa代表磷酸化或非磷酸化形式的Ser,Thr或Tyr以及游离或受保护的氨基和羧基总站。从一维和二维标量相关光谱(COSY)光谱在不同的pH值估计酰胺质子的化学位移和3JNH-Halpha耦合常数。结果清楚地表明丝氨酸和苏氨酸磷酸化对优选的主链二面体的直接结构影响,而与周围序列中带电基团的存在无关。酪氨酸磷酸化不会诱导这种不依赖电荷的作用。另外,含对氟和对硝基苯丙氨酸的肽的实验表明,酪氨酸芳环上仅存在带负电基团不会产生直接的结构作用。在丝氨酸和苏氨酸磷酸化的情况下,可以观察到构象变化强烈依赖于磷酸基的质子化水平,这表明磷酸化以其双阴离子即生理形式诱导出最强的作用。数据揭示了迄今未知的机制,其可以通过磷酸化添加到肽和蛋白质的构象控制库中。

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