首页> 外文期刊>Journal of Agricultural and Food Chemistry >Discovery of Flazin, an Alkaloid Isolated from Cherry Tomato Juice, As a Novel Non-Enzymatic Protein Glycation Inhibitor via in Vitro and in Silico Studies
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Discovery of Flazin, an Alkaloid Isolated from Cherry Tomato Juice, As a Novel Non-Enzymatic Protein Glycation Inhibitor via in Vitro and in Silico Studies

机译:挥之不向素,一种从樱桃番茄汁中分离的生物碱的发现,作为一种通过体外和硅研究的新型非酶促蛋白质糖化抑制剂

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摘要

Both overproduced reactive oxygen species/reactive nitrogen species and hyperglycemic conditions accompany a significant increase in protein glycation and nitration that contribute to the initiation and progression of diabetic complications and neuronal disorders. In this study, 19 compounds, including steroidal saponins, alkaloids, cerebroside, phenolic compounds, sterols, and nucleosides, were isolated from cherry tomato (Solanum lycopersicum var. cerasiforme ) juice, of which flazin showed good inhibition on monosaccharide-induced non-enzymatic bovine pancreas insulin and bovine serum albumin (BSA) glycation. Molecular dynamics simulations revealed that flazin continuously interacts with Phe1, Val2, Tyr26, and Lys29 insulin residues, which play a key role in insulin glycation/dimerization. In addition, depending upon the flazin dose, this blocked the tyrosine nitration of BSA via scavenging peroxynitrite anions. Taken together, our novel findings suggest that flazin could be a lead compound for the treatment of diabetes and neuronal disorders via the inhibition of non-enzymatic protein glycation and the elimination of peroxynitrite.
机译:过度产生的活性氧/活性氮和高血糖状态都伴随着蛋白质糖基化和硝化的显著增加,这有助于糖尿病并发症和神经系统疾病的发生和发展。本研究从樱桃番茄(Solanum lycopersicum var.cerasiforme)果汁中分离到19种化合物,包括甾体皂苷、生物碱、脑苷、酚类化合物、甾醇和核苷,其中flazin对单糖诱导的非酶促牛胰胰岛素和牛血清白蛋白(BSA)糖基化有良好的抑制作用。分子动力学模拟显示,flazin持续与Phe1、Val2、Tyr26和Lys29胰岛素残基相互作用,这些残基在胰岛素糖基化/二聚化中起关键作用。此外,根据flazin的剂量,这通过清除过氧亚硝酸盐阴离子阻止BSA的酪氨酸硝化。综上所述,我们的新发现表明,flazin可以通过抑制非酶蛋白糖基化和消除过氧亚硝酸盐,成为治疗糖尿病和神经系统疾病的先导化合物。

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