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绿茶多酚表没食子儿茶素没食子酸酯对αA(66-80)肽聚集的影响,αA(66-80)肽是参与白内障形成的αA-晶状体蛋白的主要片段 。

Effect of Green Tea Polyphenol Epigallocatechin-3-gallate on the Aggregation of αA(66-80) Peptide, a Major Fragment of αA-crystallin Involved in Cataract Development.

作者信息

Kumar Vijay, Gour Shalini, Peter Ocan Simon, Gandhi Shraddha, Goyal Pankaj, Pandey Janmejay, Harsolia Ram Swaroop, Yadav Jay Kant

机构信息

a Department of Biotechnology , Central University of Rajasthan , NH-8 Bandarsindri, Kishangarh Ajmer , Rajasthan , India.

b Department of Ophthalmology , Jawaharlal Nehru Medical College and Hospital , Ajmer , Rajasthan , India.

出版信息

Curr Eye Res. 2017 Oct;42(10):1368-1377. doi: 10.1080/02713683.2017.1324628. Epub 2017 Jun 19.

Abstract

PURPOSE

Crystallin is a major protein present in eye lens. Peptide fragment αA(66-80) derived from αA-crystallin possesses high aggregation propensity and forms amyloid-like structures. αA(66-80) aggregates are known to interact with soluble crystallins and destabilize native structures that subsequently undergo aggregation. Crystallin aggregation in eye lens leads to reduction in lens opacity, the condition generally referred to as a cataract. Thus, αA(66-80) aggregation appears to be an important event during cataract development, and therefore, inhibition of αA(66-80) aggregation may be an attractive strategy to intervene in cataract development.

MATERIALS AND METHODS

αA(66-80) peptide derived from αA-crystallin possesses high aggregation potential and has a crucial role in cataract development. In order to inhibit the aggregation of αA(66-80) peptide, epigallocatechin-3-gallate (EGCG), a major active constituent of green tea, was employed. The inhibitory effect was assessed by Congo Red (CR) spectral shift assay, Thioflavin-T binding assay, transmission electron microscopy and fluorescence microscopy.

RESULTS

The inhibitory potential of EGCG toward αA-crystallin was clearly observed as in the presence of EGCG, the αA(66-80) aggregation was considerably inhibited and the pre-formed fibrillary aggregates of αA(66-80) were found to be disassembled.

CONCLUSION

In the present study, we are able to successfully demonstrate that EGCG efficiently blocks the aggregation of αA(66-80) peptide in a concentration-dependent manner. Furthermore, it is also evident that EGCG is able to disaggregate pre-formed αA(66-80) aggregates. The study suggests that EGCG can be a potential molecule that can prevent the initiation of cataract as well as be helpful in the disease reversal.

摘要

目的

晶状体蛋白是眼晶状体中的主要蛋白质。源自αA-晶状体蛋白的肽片段αA(66 - 80)具有很高的聚集倾向,并形成淀粉样结构。已知αA(66 - 80)聚集体与可溶性晶状体蛋白相互作用,破坏天然结构,随后这些天然结构发生聚集。眼晶状体中的晶状体蛋白聚集会导致晶状体混浊度降低,这种情况通常被称为白内障。因此,αA(66 - 80)聚集似乎是白内障发展过程中的一个重要事件,所以,抑制αA(66 - 80)聚集可能是干预白内障发展的一种有吸引力的策略。

材料与方法

源自αA-晶状体蛋白的αA(66 - 80)肽具有很高的聚集潜力,在白内障发展中起关键作用。为了抑制αA(66 - 80)肽的聚集,使用了表没食子儿茶素-3-没食子酸酯(EGCG),它是绿茶的主要活性成分。通过刚果红(CR)光谱位移测定、硫黄素-T结合测定、透射电子显微镜和荧光显微镜评估抑制效果。

结果

EGCG对αA-晶状体蛋白的抑制潜力清晰可见,因为在EGCG存在的情况下,αA(66 - 80)聚集受到显著抑制,并且发现预先形成的αA(66 - 80)纤维状聚集体被拆解。

结论

在本研究中,我们能够成功证明EGCG以浓度依赖的方式有效阻断αA(66 - 80)肽的聚集。此外,很明显EGCG能够拆解预先形成的αA(66 - 80)聚集体。该研究表明EGCG可能是一种潜在的分子,既能预防白内障的发生,也有助于疾病的逆转。

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