Aspirin-mediated acetylation induces structural alteration and aggregation of bovine pancreatic insulin

乙酰化 胰岛素 阿司匹林 化学 硫黄素 蛋白质聚集 体外 生物化学 糖尿病 生物物理学 内科学 生物 内分泌学 医学 基因 阿尔茨海默病 疾病
作者
Reza Yousefi,B Taheri,Parnian Alavi,Mohammad Bagher Shahsavani,Zahra Asadi,Maryam Ghahramani,Ali Niazi‎,Mohammad Mehdi Alavianmehr,Ali Akbar Moosavi‐Movahedi
出处
期刊:Journal of Biomolecular Structure & Dynamics [Taylor & Francis]
卷期号:34 (2): 362-375 被引量:9
标识
DOI:10.1080/07391102.2015.1039584
摘要

The simple aggregation of insulin under various chemical and physical stresses is still an important challenge for both pharmaceutical production and clinical formulation. In the storage form, this protein is subjected to various chemical modifications which alter its physicochemical and aggregation properties. Aspirin (acetylsalicylic acid) which is the most widely used medicine worldwide has been indicated to acetylate a large number of proteins both in vitro and in vivo. In this study, as insulin treated with aspirin at 37°C, a significant level of acetylation was observed by flourescamine and o-phthalaldehyde assay. Also, different spectroscopic techniques, gel electrophoresis, and microscopic assessment were applied to compare the structural variation and aggregation/fibrillation propensity among acetylated and non-acetylated insulin samples. The results of spectroscopic assessments elucidate that acetylation induces insulin unfolding which is accompanied with the exposure of protein hydrophobic patches, a transition from alpha-helix to beta-sheet and increased propensity of the protein for aggregation. The kinetic studies propose that acetylation increases aggregation rate of insulin under both thermal and chemical stresses. Also, gel electrophoresis and dynamic light scattering experiments suggest that acetylation induces insulin oligomerization. Additionally, the results of Thioflavin T fluorescence study, Congo red absorption assessment, and microscopic analysis suggest that acetylation with aspirin enhances the process of insulin fibrillation. Overall, the increased susceptibility of acetylated insulin for aggregation may reflect the fact that this type of modification has significant structural destabilizing effect which finally makes the protein more vulnerable for pathogenic aggregation/fibrillation.
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