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βi-Conglycinin Embeds Active Peptides That Inhibit Lipid Accumulation in 3T3-L1 Adipocytes in Vitro

机译:βi-伴大豆球蛋白嵌入抑制3T3-L1脂肪细胞中脂质蓄积的活性肽

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Obesity is a worldwide health concern because it is a well-recognized predictor of premature mortality. The objective was to identify soybean varieties that have improved potential to inhibit fat accumulation in adipocytes by testing the effects of soy hydrolysates having a range of protein subunit compositions on lipid accumulation and adiponectin expression in 3T3-L1 adipocytes. The results showed that differences in the protein distribution of 15 soy genotypes led to different potentials for the reduction of fat accumulation. The inhibition of lipid accumulation of soy alcalase hydrolysates in 3T3-L1 adipocytes ranged from 29 to 46%. Soy hydrolysates made from genotypes with 45.3 ± 3.3% of total protein as β-conglycinin, on average, showed significantly higher inhibition of lipid accumulation compared to those with 24.7 ± 1.5% of extracted total protein as β-conglycinin. Moreover, after in vitro simulated digestion with pepsin-pancreatin of the soy alcalase hydrolysates, 86% of the original activity remained. Adiponectin expression was induced in 3T3-L1 adipocytes treated with 15 soy hydrolysates up to 2.49- and 2.63-fold for high and low molecular weight adiponectin, respectively. The inhibition of lipid accumulation calculated from a partial least squares (PLS) analysis model correlated well with experimental data (R~2 = 0.91). In conclusion, it was feasible to differentiate soy varieties on the basis of the potential of their proteins to reduce fat accumulation using a statistical model and a cell-based assay in vitro. Furthermore, β-conglycinin embeds more peptides than glycinin subunits that inhibit lipid accumulation and induce adiponectin in 3T3-L1 adipocytes. Therefore, soy ingredients containing β-conglycinin may be important food components for the control of lipid accumulation in adipose tissue.
机译:肥胖是世界范围内对健康的关注,因为它是公认的过早死亡的预测因子。目的是通过测试具有多种蛋白质亚基组成的大豆水解产物对3T3-L1脂肪细胞中脂质积累和脂联素表达的影响,来确定具有更高潜力抑制脂肪在脂肪细胞中积累的大豆品种。结果表明,15种大豆基因型蛋白质分布的差异导致减少脂肪积累的潜力。在3T3-L1脂肪细胞中大豆alalase水解产物脂质积累的抑制作用范围为29%至46%。与总蛋白提取率为24.7±1.5%的β-伴大豆球蛋白相比,由总蛋白占45.3±3.3%的基因型制成的大豆水解物平均表现出更高的脂类抑制作用。此外,在用胃蛋白酶-胰酶对大豆alcalase水解产物进行体外模拟消化后,仍保留了原始活性的86%。在用15种大豆水解物处理的3T3-L1脂肪细胞中,脂联素的表达被诱导,分别高和低分子量脂联素的2.49倍和2.63倍。根据偏最小二乘(PLS)分析模型计算的脂质蓄积抑制与实验数据密切相关(R〜2 = 0.91)。总之,使用统计模型和基于细胞的体外试验,根据大豆蛋白减少脂肪积累的潜力来区分大豆品种是可行的。此外,β-伴大豆球蛋白比抑制3D3-L1脂肪细胞中脂质积累并诱导脂联素的大豆球蛋白亚基嵌入更多的肽。因此,含有β-伴大豆球蛋白的大豆成分可能是控制脂肪组织中脂质蓄积的重要食品成分。

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