Kazan Institute of Biochemistry and Biophysics, FRC Kazan Scientific Center of RAS, 2/31 Lobachevsky Street, 420111 Kazan, Russia.
Int J Mol Sci. 2023 Nov 12;24(22):16223. doi: 10.3390/ijms242216223.
Proteins can lose native functionality due to non-physiological aggregation. In this work, we have shown the power of sulfated polysaccharides as a natural assistant to restore damaged protein structures. Protein aggregates enriched by cross-β structures are a characteristic of amyloid fibrils related to different health disorders. Our recent studies demonstrated that model fibrils of hen egg white lysozyme (HEWL) can be disaggregated and renatured by some negatively charged polysaccharides. In the current work, using the same model protein system and FTIR spectroscopy, we studied the role of conformation and charge distribution along the polysaccharide chain in the protein secondary structure conversion. The effects of three carrageenans (κ, ι, and λ) possessing from one to three sulfate groups per disaccharide unit were shown to be different. κ-Carrageenan was able to fully eliminate cross-β structures and complete the renaturation process. ι-Carrageenan only initiated the formation of native-like β-structures in HEWL, retaining most of the cross-β structures. In contrast, λ-carrageenan even increased the content of amyloid cross-β structures. Furthermore, κ-carrageenan in rigid helical conformation loses its capability to restore protein native structures, largely increasing the amount of amyloid cross-β structures. Our findings create a platform for the design of novel natural chaperons to counteract protein unfolding.
蛋白质可能会由于非生理聚集而失去天然功能。在这项工作中,我们展示了硫酸化多糖作为一种天然辅助物来恢复受损蛋白质结构的强大功能。富含交叉-β结构的蛋白质聚集体是与多种健康障碍相关的淀粉样纤维的特征。我们最近的研究表明,鸡卵清溶菌酶(HEWL)的模型纤维可以被一些带负电荷的多糖解聚和重新折叠。在当前的工作中,我们使用相同的模型蛋白系统和傅里叶变换红外(FTIR)光谱,研究了多糖链构象和电荷分布对蛋白质二级结构转化的影响。具有每个二糖单元一个至三个硫酸盐基团的三种卡拉胶(κ、ι 和 λ)的作用不同。κ-卡拉胶能够完全消除交叉-β结构并完成重折叠过程。ι-卡拉胶仅在 HEWL 中起始形成类似天然的β-结构,保留了大部分交叉-β结构。相比之下,λ-卡拉胶甚至增加了淀粉样交叉-β结构的含量。此外,刚性螺旋构象的 κ-卡拉胶丧失了恢复蛋白质天然结构的能力,大大增加了淀粉样交叉-β结构的含量。我们的发现为设计新型天然分子伴侣以对抗蛋白质展开提供了一个平台。