Pal Sampa, Maity Sanhita, Sardar Subrata, Chakraborty Jishnu, Halder Umesh Chandra
Organic Chemistry Section, Department of Chemistry, Jadavpur University, Kolkata, 700032, India.
Organic Chemistry Section, Department of Chemistry, Jadavpur University, Kolkata, 700032, India.
Int J Biol Macromol. 2016 Mar;84:121-34. doi: 10.1016/j.ijbiomac.2015.11.055. Epub 2015 Dec 2.
Many proteins form ordered irreversible aggregates called amyloid fibrils which are responsible for several neurodegenerative diseases. β-lactoglobulin (β-lg), an important globular milk protein, self-assembles to form amyloid-like fibrils on heating at low pH. The present study investigated the effects of two commonly used organic solvents acetonitrile (MeCN) and antimicrobial preservative benzyl alcohol (BA) on the conformation and self-assembly of β-lg at ambient condition. Both MeCN and BA induced a concentration-dependent conformational change showing exposure of hydrophobic patches, loss of tertiary structure and higher α-helical structure at moderate concentrations. In the presence of 50-80% (v/v) MeCN and 1.5-3% (v/v) BA further structural transitions from α-helical to non-native β-sheet structure were observed with a molten globule-like intermediate at 70% MeCN. These non-native β-sheet structures have high tendency to form aggregates. The formation of β-lg self-assembly was confirmed by Thioflavin T studies, Congo red assay, Rayleigh scattering and dynamic light scattering analysis. Transmission electron microscopy studies showed amyloid fibril formation in both MeCN and BA. Our results showed that BA enhances the unfolding and self-assembly of β-lg at much lower concentration than MeCN. Thus solvent composition forces the protein to achieve the non-native structures which are responsible for protein aggregation.
许多蛋白质会形成有序的不可逆聚集体,即淀粉样纤维,这是导致几种神经退行性疾病的原因。β-乳球蛋白(β-lg)是一种重要的球状乳蛋白,在低pH值下加热时会自组装形成淀粉样纤维。本研究在环境条件下研究了两种常用有机溶剂乙腈(MeCN)和抗菌防腐剂苯甲醇(BA)对β-lg构象和自组装的影响。MeCN和BA均诱导浓度依赖性构象变化,在中等浓度下表现出疏水区域暴露、三级结构丧失和更高的α-螺旋结构。在50-80%(v/v)MeCN和1.5-3%(v/v)BA存在下,观察到进一步的结构转变,从α-螺旋结构转变为非天然β-折叠结构,在70%MeCN时存在类似熔球的中间体。这些非天然β-折叠结构具有很高的聚集倾向。通过硫黄素T研究、刚果红测定、瑞利散射和动态光散射分析证实了β-lg自组装的形成。透射电子显微镜研究显示在MeCN和BA中均形成了淀粉样纤维。我们的结果表明,BA在比MeCN低得多的浓度下增强了β-lg的去折叠和自组装。因此,溶剂组成迫使蛋白质形成负责蛋白质聚集的非天然结构。