Andersen Christian Beyschau, Otzen Daniel, Christiansen Gunna, Rischel Christian
Protein Structure and Biophysics, Novo Nordisk A/S, Novo Nordisk Park, DK-2760 Måløv, Denmark.
Biochemistry. 2007 Jun 19;46(24):7314-24. doi: 10.1021/bi6025374. Epub 2007 May 25.
The 29-residue peptide hormone glucagon readily fibrillates at low pH, but the structure and morphology of the fibrils are very sensitive to the environmental conditions. Here we have investigated the mechanism behind the differences in morphology observed when glucagon fibrils are formed at different peptide concentrations. Electron microscopy shows that fibrils formed at low glucagon concentration (0.25 mg/mL) are twisted, while fibrils formed at high concentration (8 mg/mL) are straight. Monitoring the fibrillation kinetics at different concentrations, we find that the lag time has an unexpected maximum at a concentration of 1 mg/mL, with faster fibrillation at both lower and higher concentrations. Seeding experiments show that small amounts of straight fibril seeds can accelerate fibril growth at both low and high glucagon concentration, while twisted fibril seeds cannot grow at high concentrations. We conclude that there exists a morphology-dependent mechanism for inhibition of glucagon fibril growth. Light scattering experiments indicate that glucagon is mainly monomeric below 1 mg/mL and increasingly trimeric above this concentration. We propose that the glucagon trimer is able to specifically inhibit growth of the twisted fibril morphology. Such inhibitory binding of molecules in an unproductive conformation could also play a role in the selection of morphologies for other fibril-forming peptides and proteins.
由29个氨基酸残基组成的肽激素胰高血糖素在低pH值下很容易形成纤维,但纤维的结构和形态对环境条件非常敏感。在此,我们研究了在不同肽浓度下形成胰高血糖素纤维时观察到的形态差异背后的机制。电子显微镜显示,在低胰高血糖素浓度(0.25 mg/mL)下形成的纤维是扭曲的,而在高浓度(8 mg/mL)下形成的纤维是直的。监测不同浓度下的纤维化动力学,我们发现延迟时间在1 mg/mL的浓度下出现意外的最大值,在较低和较高浓度下纤维化速度都更快。种子实验表明,少量的直纤维种子可以在低和高胰高血糖素浓度下加速纤维生长,而扭曲纤维种子在高浓度下不能生长。我们得出结论,存在一种依赖形态的机制来抑制胰高血糖素纤维的生长。光散射实验表明,胰高血糖素在1 mg/mL以下主要是单体形式,高于此浓度则越来越多地形成三聚体。我们提出,胰高血糖素三聚体能够特异性抑制扭曲纤维形态的生长。这种处于非生产性构象的分子的抑制性结合也可能在其他形成纤维的肽和蛋白质的形态选择中发挥作用。