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多金属氧酸盐介导的冷常压等离子体处理下鸡蛋清溶菌酶的淀粉样纤维化动力学及酶活性恢复

Polyoxometalates Mediated Amyloid Fibrillation Dynamics and Restoration of Enzyme Activity of Hen Egg White Lysozyme Treated under Cold Atmospheric Pressure Plasma.

作者信息

Kalita Kaberi, Phukan Shankab J, Garai Somenath, Sankaranarayanan Kamatchi

机构信息

Physical Sciences Division, Institute of Advanced Study in Science and Technology (An Autonomous Institute Under DST, Government of India), Vigyan Path, Paschim Boragaon, Garchuk, Guwahati, Assam 781035, India.

Department of Chemistry, Institute of Science, Banaras Hindu University, Varanasi 221005, Uttar Pradesh, India.

出版信息

ACS Omega. 2024 Jan 8;9(3):3423-3429. doi: 10.1021/acsomega.3c06921. eCollection 2024 Jan 23.

Abstract

Neurodegenerative disorders are one of the most devastating disorders worldwide. Although a definite mechanistic pathway of neurodegenerative disorders is still not clear, it is almost clear that these diseases are initiated by protein misfolding. Hen Egg White Lysozyme (Lyz) can be converted to highly arranged amyloid fibrils and is therefore considered a good model protein for studying protein aggregation in connection to neurodegeneration. In this study, Lyz has been converted to fibrils using He-air gas fed single jet cold atmospheric plasma (CAP). The reactive oxygen species and the reactive nitrogen species produced by the plasma jet interact with the protein molecules and enhance the fibril formation. We monitored the fibrillation kinetics with the Thioflavin T (ThT) assay and observed that fibrils are formed when the samples are treated for 10 min with He-air gas fed CAP. Further, we studied the role of a special class of inorganic nanomaterials called polyoxometalates (POMs) in the process of the Lyz fibrillation using various biophysical techniques. The Keggin POMs used in this study are phosphomolybdic acid (PMA) and silico molybdic acid (SMA). Keggin POMs bring in structural self-assembly of the protein and disrupt the fibrils as evidenced in the ThT assay and TEM analysis. Molecular docking studies together with electrokinetic potential studies show the interactions between POMs and Lyz dominated via hydrogen bonding and electrostatic interactions. The enzyme activity of Lyz was assessed using the substrate and after treatment with POMs results showed a significant increase in the activity. This study could pave way for looking into Keggin POMs for possible application in neurodegeneration.

摘要

神经退行性疾病是全球最具毁灭性的疾病之一。尽管神经退行性疾病确切的发病机制尚不清楚,但几乎可以确定的是,这些疾病是由蛋白质错误折叠引发的。鸡蛋清溶菌酶(Lyz)可转化为高度有序的淀粉样纤维,因此被认为是研究与神经退行性变相关的蛋白质聚集的良好模型蛋白。在本研究中,利用氦气-空气单射流冷大气等离子体(CAP)将Lyz转化为纤维。等离子体射流产生的活性氧和活性氮与蛋白质分子相互作用,促进纤维形成。我们用硫黄素T(ThT)分析法监测纤维化动力学,观察到当样品用氦气-空气供能的CAP处理10分钟时会形成纤维。此外,我们使用各种生物物理技术研究了一类特殊的无机纳米材料——多金属氧酸盐(POMs)在Lyz纤维化过程中的作用。本研究中使用的Keggin型POMs是磷钼酸(PMA)和硅钼酸(SMA)。如ThT分析和透射电镜(TEM)分析所示,Keggin型POMs可导致蛋白质的结构自组装并破坏纤维。分子对接研究以及电动电位研究表明,POMs与Lyz之间的相互作用主要通过氢键和静电相互作用。使用底物评估Lyz的酶活性,用POMs处理后的结果显示活性显著增加。本研究可为研究Keggin型POMs在神经退行性变中的可能应用铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2855/10809371/7862e3dc7ead/ao3c06921_0001.jpg

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