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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Polyphenolic compounds are novel protective agents against lipid membrane damage by alpha-synuclein aggregates in vitro
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Polyphenolic compounds are novel protective agents against lipid membrane damage by alpha-synuclein aggregates in vitro

机译:多酚化合物是新型的保护剂,可在体外抵抗α-突触核蛋白聚集体对脂质膜的破坏

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Cumulative evidence now suggests that the abnormal aggregation of the protein a-synuclein (aS) is a critical factor in triggering neurodegeneration in Parkinson's disease (PD). In particular, a fundamental pathogenetic mechanism appears to involve targeting of neuronal membranes by soluble oligomeric intermediates of aS, leading to their disruption or permeabilisation. Therefore, a model assay was developed in which fluorophore-loaded unilamellar vesicles were permeabilised by soluble oligomers, the latter formed by aggregation of human recombinant aS protein. The aS oligomers induced an impairment of membrane integrity similar to that of the pore-forming bacterial peptide gramicidin. The lipid vesicle permeabilisation assay was then utilised to screen 11 natural polyphenolic compounds, 8 synthetic N'-benzylidene-benzohydrazide compounds and black tea extract for protection against membrane damage by wild-type and mutant (A30P, A53T) synuclein aggregates. A select group of potent inhibitory compounds included apigenin, baicalein, morin, nordihydroguaiaretic acid, and black tea extract. Structure-activity analysis further suggests that a 5,7-dihydroxy-chromen-4-one moiety appears to be favourable for the inhibition reaction. In conclusion, we have identified a group of polyphenols that can effectively hinder membrane damage by aS aggregates. These may serve as a viable source of lead compounds for the development and design of novel therapeutic agents in PD.
机译:现在的累积证据表明,α-突触核蛋白(aS)的异常聚集是引发帕金森氏病(PD)神经退行性变的关键因素。特别地,基本的致病机制似乎涉及通过aS的可溶性寡聚中间体靶向神经元膜,从而导致其破坏或通透性。因此,开发了一种模型测定法,其中通过可溶性寡聚物渗透了荧光团负载的单层囊泡,可溶性寡聚物由人重组aS蛋白的聚集形成。 aS低聚物诱导的膜完整性受损,类似于成孔细菌肽短杆菌肽。然后利用脂质囊泡通透性测定法筛选11种天然多酚化合物,8种合成的N'-亚苄基-苯并酰肼化合物和红茶提取物,以防止野生型和突变型(A30P,A53T)突触核蛋白聚集体对膜的损害。一组有效的抑制性化合物包括芹菜素,黄ical素,香豆素,去甲二氢愈创木酸和红茶提取物。结构活性分析进一步表明5,7-二羟基-铬-4-基团似乎对抑制反应是有利的。总之,我们确定了一组可以有效阻止aS聚集体破坏膜的多酚。这些可以作为铅化合物的可行来源,用于开发和设计PD中的新型治疗剂。

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