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Separation of growth-stimulating peptides for Bifidobacterium from soybean conglycinin

机译:从大豆伴大豆球蛋白中分离双歧杆菌的生长刺激肽

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摘要

AIM: To isolate and identify the soybean conglycinin peptides that selectively stimulates the growth of bifidobacteria in vitro, and to investigate the effect of soybean conglycinin peptides on intestinal ecosystem in vivo.METHODS: Soybean conglycinin was purified from soybean seeds by gel filtration (Sepharose-CL-6B). These proteins were submitted to hydrolysis by pepsin. Several growth-stimulating peptides for bifidobacteria were isolated chromatographically from pepsin hydrolysis of soybean conglycinin and identified by means of matrix-assisted laser desorption ionization time of flight mass spectrometry (MALDI-TOF-MS). Parallel to in vitro study, in vivo experiments with soybean conglycinin peptideswere performed in mice. Ninety male KM mice were randomly assigned into five groups of 16 mice each, and each group was administered for 21d intragastrically with physiological saline (control), conglycinin, pepsin-treated conglycinin (PTC), the most active fraction which isolated from pepsin-treated conglycinin (P2-PTC) and HCl-full hydrolysis of conglycinin (HCl-FHC), respectively. Intestinal microflora were evaluated by standard microbiologic methods and biochemical assays of cecal content samples after treatment.RESULTS: The results showed that the peptides which were isolated from soybean conglycinin could stimulate the growth of bifidobacteria in vitro, and the molecular mass of purified peptides with MALDI-TOF-MS ranged from 693.32 to 1829.55. Compared with control group, in vivo experiments showed that P2-PTC group decreased cecal pH (7.080.08 vs 7.210.09, P < 0.05) and enterococci counts (5.380.26 log10CFU/g vs 5.780.19 log10CFU/g, P < 0.05), significantly increased sIgA level (172.0835.40 ng/g vs 118.2733.93 ng/g, P < 0.01) and b-galactosidase activity (1.280.23 U/g vs 1.820.58 U/g, P < 0.05).CONCLUSION: The results have shown that conglycinin is good source for enzyme-mediated production of peptides which stimulate the growth of bifidobacteria. These peptides are inactive within the sequence of the parent protein but can be released during enzymatic hydrolysis, and in vivo experiments demonstrate that conglycinin peptides may be beneficial for improving gastrointestinal health.
机译:目的:分离和鉴定选择性刺激体外双歧杆菌生长的大豆伴大豆球蛋白肽,并研究大豆伴大豆球蛋白肽对体内肠道生态系统的影响。方法:通过凝胶过滤从大豆种子中纯化大豆伴大豆球蛋白(Sepharose- CL-6B)。这些蛋白质被胃蛋白酶水解。从大豆伴大豆球蛋白的胃蛋白酶水解色谱分离了几种双歧杆菌生长刺激肽,并通过基质辅助激光解吸电离飞行时间质谱(MALDI-TOF-MS)进行了鉴定。与体外研究平行,在小鼠中进行了大豆伴大豆球蛋白肽的体内实验。将90只雄性KM小鼠随机分为5组,每组16只,并在胃内21 d给予生理盐水(对照),伴大豆球蛋白,胃蛋白酶处理的伴大豆球蛋白(PTC),这是从胃蛋白酶处理中分离的活性最高的组分伴大豆球蛋白(P2-PTC)和HCl完全水解伴大豆球蛋白(HCl-FHC)。结果:从大豆大豆球蛋白中分离得到的肽可以刺激双歧杆菌的体外生长,纯化后的分子质量可以通过MALDI法进行检测。 -TOF-MS的范围是693.32至1829.55。与对照组相比,体内实验显示P2-PTC组降低盲肠pH(7.080.08 vs 7.210.09,P <0.05)和肠球菌计数(5.380.26 log10CFU / g vs 5.780.19 log10CFU / g,P < 0.05),sIgA水平显着增加(172.0835.40 ng / g对118.2733.93 ng / g,P <0.01)和b-半乳糖苷酶活性(1.280.23 U / g对1.820.58 U / g,P <0.05)结论:结果表明伴大豆球蛋白是酶介导的能刺激双歧杆菌生长的肽生产的良好来源。这些肽在亲本蛋白的序列内是无活性的,但是可以在酶促水解过程中释放,并且体内实验证明伴大豆球蛋白的肽可能有益于改善肠胃健康。

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