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来自L.的一种胰岛素受体结合多功能蛋白在饮食诱导的2型糖尿病临床前研究中呈现出降血糖作用。

An Insulin Receptor-Binding Multifunctional Protein from L. Presents a Hypoglycemic Effect in a Diet-Induced Type 2 Diabetes-Preclinical Study.

作者信息

Costa Izael, Lima Mayara, Medeiros Amanda, Bezerra Lucas, Santos Paula, Serquiz Alexandre, Lima Maíra, Oliveira Gerciane, Santos Elizeu, Maciel Bruna, Monteiro Norberto, Morais Ana Heloneida

机构信息

Biochemistry and Molecular Biology Postgraduate Program, Biosciences Center, Federal University of Rio Grande do Norte, Natal 59075-000, Brazil.

Chemistry Postgraduate Program, Science Center, Federal University of Ceará, Fortaleza 60020-903, Brazil.

出版信息

Foods. 2022 Jul 25;11(15):2207. doi: 10.3390/foods11152207.

Abstract

The objectives of this study were to evaluate the hypoglycemic effect of the trypsin inhibitor isolated from tamarind seeds (TTI) in an experimental model of T2DM and the in silico interaction between the conformational models of TTI 56/287 and the insulin receptor (IR). After inducing T2DM, 15 male Wistar rats were randomly allocated in three groups ( = 5): 1-T2DM group without treatment; 2-T2DM group treated with adequate diet; and 3-T2DM treated with TTI (25 mg/kg), for 10 days. Insulinemia and fasting glucose were analyzed, and the HOMA-IR and HOMA-β were calculated. The group of animals treated with TTI presented both lower fasting glucose concentrations ( = 0.0031) and lower HOMA-IR indexes ( = 0.0432), along with higher HOMA-β indexes ( = 0.0052), than the animals in the other groups. The in silico analyses showed that there was an interaction between TTIp 56/287 and IR with interaction potential energy (IPE) of -1591.54 kJ mol (±234.90), being lower than that presented by insulin and IR: -894.98 kJ mol (±32.16). In addition, the presence of amino acids, type of binding and place of interaction other than insulin were identified. This study revealed the hypoglycemic effect of a bioactive molecule of protein origin from Tamarind seeds in a preclinical model of T2DM. Furthermore, the in silico analysis allowed the prediction of its binding in the IR, raising a new perspective for explaining TTI's action on the glycemic response.

摘要

本研究的目的是在2型糖尿病实验模型中评估从罗望子种子中分离出的胰蛋白酶抑制剂(TTI)的降血糖作用,以及TTI 56/287的构象模型与胰岛素受体(IR)之间的计算机模拟相互作用。诱导2型糖尿病后,将15只雄性Wistar大鼠随机分为三组(每组n = 5):1-未治疗的2型糖尿病组;2-接受适当饮食治疗的2型糖尿病组;3-接受TTI(25 mg/kg)治疗的2型糖尿病组,为期10天。分析胰岛素血症和空腹血糖,并计算HOMA-IR和HOMA-β。与其他组的动物相比,接受TTI治疗的动物组空腹血糖浓度较低(P = 0.0031),HOMA-IR指数较低(P = 0.0432),同时HOMA-β指数较高(P = 0.0052)。计算机模拟分析表明,TTIp 56/287与IR之间存在相互作用,相互作用势能(IPE)为-1591.54 kJ/mol(±234.90),低于胰岛素与IR之间的相互作用势能:-894.98 kJ/mol(±32.16)。此外,还确定了除胰岛素外的氨基酸存在情况、结合类型和相互作用位点。本研究揭示了罗望子种子中一种蛋白质来源的生物活性分子在2型糖尿病临床前模型中的降血糖作用。此外,计算机模拟分析能够预测其与IR的结合,为解释TTI对血糖反应的作用提出了新的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dcc4/9332146/d547a04d4a50/foods-11-02207-g001.jpg

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