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姜黄素与β-环糊精复合物的协同效应对丝素蛋白聚集的调控。

Modulation of aggregation of silk fibroin by synergistic effect of the complex of curcumin and β-cyclodextrin.

机构信息

Department of Textile Technology, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.

Department of Chemistry, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.

出版信息

Biochim Biophys Acta Proteins Proteom. 2019 Apr;1867(4):416-425. doi: 10.1016/j.bbapap.2019.01.009. Epub 2019 Jan 21.

Abstract

Amyloid aggregation has been associated with numerous human pathological diseases. A recent study has demonstrated that silk fibroin intermittently endorses amyloidogenesis in vivo. In the current study, we explored the propensity of silk fibroin to undergo amyloid-like aggregation and its prevention using an optimized concoction of curcumin with β-cyclodextrin. Aggregation of silk fibroin resulted in the formation of fibrils with a diameter of ~3.2 nm. However, addition of the optimized concentration of curcumin and β-cyclodextrin to silk fibroin inhibited aggregation and preserved the random coil conformation even under aggregation inducing conditions, as demonstrated by CD and FTIR spectroscopy. Benzene rings of curcumin interact with the aromatic residues of fibroin via hydrophobic interactions. However, β-cyclodextrin preferentially interacts with the non-polar residues, which are the core components for nucleation dependent protein aggregation. The present study demonstrates the ability of the concoction of curcumin and β-cyclodextrin in tuning the self assembly process of fibroin. It also provides a platform to explore the assembly process of nano-fibril and hierarchical structures in vitro along with a novel insight for designing clinically relevant silk-based functional biomaterials.

摘要

淀粉样蛋白聚集与许多人类病理疾病有关。最近的一项研究表明,丝素蛋白在体内间歇性地促进淀粉样蛋白的形成。在本研究中,我们探索了丝素蛋白发生类似淀粉样蛋白聚集的倾向,以及使用姜黄素和β-环糊精的优化混合物来预防这种聚集。丝素蛋白的聚集导致直径约为 3.2nm 的原纤维的形成。然而,向丝素蛋白中添加优化浓度的姜黄素和β-环糊精可抑制聚集,并通过 CD 和 FTIR 光谱证明即使在诱导聚集的条件下也可保留无规卷曲构象。姜黄素的苯环通过疏水相互作用与丝素蛋白的芳香残基相互作用。然而,β-环糊精优先与非极性残基相互作用,这些残基是核依赖性蛋白质聚集的核心成分。本研究证明了姜黄素和β-环糊精混合物在调节丝素蛋白自组装过程中的能力。它还为体外探索纳米原纤维和分层结构的组装过程提供了一个平台,并为设计临床相关的基于丝素的功能性生物材料提供了新的见解。

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