Preparation, separation and amino acid sequence analysis of corn peptides with hypoglycemic activity
Abstract
In this study, the degree of hydrolysis (DH) and polypeptide content were index optimization for corn gluten meal of hydrolysis process. Under the condition of pH 8.5, 60 ℃, orthogonal experiment to obtain the optimal combination for: amount of enzymeenzyme 3.5 g/100 g, hydrolysis time 2 h, solid-liquid ratio 1︰20 (g/mL); on this condition, the DH is 27.02%, peptide content is 85.23%. Meanwhile, optimized the decolorization technology, the best conditions: temperature 50 ℃, pH 3.5, activated carbon dosage: 1.5 g/100 mL, decoloring time 45 min; under the condition, corn peptide yield was 77.86%, the decolorization rate was 87.27%. After decoloring and desalination, three components were isolated by chromatographic separation. The result of hypoglycemic activity in vitro showed that CP1 had the better effect on promoting normal HepG2 cells’ glucose consumption, and the α-glycosidic enzyme inhibitory activity reached 34.64%, after RP-HPLC column purification, 14 components were gotten; the thirteenth (CP1-13) had the best α-glycosidic enzyme inhibitory activity, and reached 39.50%. Determined by UPLC-Q-TOF-MS/MS, the amino acid sequence was A-P-A-L-L-P-F.
Publication Date
6-28-2017
First Page
147
Last Page
152
DOI
10.13652/j.issn.1003-5788.2017.06.030
Recommended Citation
Yuhang, HU; Jun, DAI; Shangwei, CHEN; Song, ZHU; Xuejun, ZHANG; and Ping, ZHANG
(2017)
"Preparation, separation and amino acid sequence analysis of corn peptides with hypoglycemic activity,"
Food and Machinery: Vol. 33:
Iss.
6, Article 30.
DOI: 10.13652/j.issn.1003-5788.2017.06.030
Available at:
https://www.ifoodmm.cn/journal/vol33/iss6/30
References
[1] 中国报告大厅. 2016/17年度中国玉米市场形势: 总消费量为19 711万吨. (2017-01-13)[2017-01-23]. http://www.chinabgao.com/stat/stats/81417.html.
[2] 田京歌, 陈海霞, 陈书涵. 玉米肽的制备及其生物活性研究进展[J]. 食品安全质量检测学报, 2013, 4(3): 754-759.
[3] 刘雪姣. 玉米低聚肽保肝作用的研究[D]. 苏州: 江苏大学, 2016: 2-4.
[4] MOJICA L, MEJIA E G D, MENJIVAR M. Evaluation of the hypoglycemic potential of a black bean hydrolyzed protein isolate and its pure peptides using in silico, in vitro and in vivo approaches[J]. Journal of Functional Foods, 2017, 31: 274-286.
[5] NASRI R, ABDELHEDI O, JEMIL I, et al. Ameliorating effects of goby fish protein hydrolysates on high-fat-high-fructose diet-induced hyperglycemia, oxidative stress and deterioration of kidney function in rats[J]. Chem Biol Interact, 2015, 242: 71-80.
[6] 黄景麟. 抗菌肽Dybowskin-2CDYa促胰岛素分泌及对二型糖尿病大鼠的降血糖和治疗效果[D]. 吉林: 辽宁大学, 2015: 48-49.
[7] 李翔, 史仍飞, 娄淑杰. 玉米肽和有氧运动对肥胖大鼠血浆Glucagon、MCP-1、PP和PYY水平的影响[J]. 实验动物与比较医学, 2014, 34(3): 214-218.
[8] MOCHIDA T, HIRA T, HARA H. The Corn Protein, Zein Hydrolysate, Administered into the Ileum Attenuates Hyperglycemia via Its Dual Action on Glucagon-Like Peptide-1 Secretion and Dipeptidyl Peptidase-IV Activity in Rats[J]. Endocrinology, 2010, 151(7): 3 095-3 104.
[9] HIGUCHI N, HIRA T, YAMADA N, HARA H. Oral Administration of Corn Zein Hydrolysate Stimulates GLP-1 and GIP Secretion and Improves Glucose Tolerance in Male Normal Rats and Goto- Kakizaki Rats[J]. Endocrinology, 2013, 154(9): 3 089-3 098.
[10] 李秀霞, 韩鲁佳. 玉米抗氧化肽的制备及纯化[J]. 食品与发酵工业, 2010, 36(7): 73-77.
[11] 马伟. 玉米低聚肽的制备、分离及其生物活性研究[D]. 无锡: 江南大学, 2015.
[12] 黄敏, 郑喜群, 刘晓兰. 玉米蛋白酶解液的脱色方法研究[J]. 粮食与饲料工业, 2012(4): 25-28.
[13] 包美丽, 杨添植, 张立钢, 等. 双酶法制备马鹿茸降血糖肽条件优化及其对α-葡萄糖苷酶的抑制效果[J]. 食品科学, 2016(6): 88-95.
[14] YAMASHITA R, SAITO T, SATOH S, et al. Effects of dehydroepiandrosterone on gluconeogenic enzymes and glucose uptake in human hepatoma cell line, HepG2[J]. Endocrine Journal, 2005, 52(6): 727-733.
[15] 马伟, 戴军, 陈尚卫, 等. 醒酒玉米低聚肽的分离制备及其氨基酸序列分析[J]. 食品与机械, 2015, 31(5): 197-200, 221.
[16] LI Jiang-tao, HE Hui, MA Zhi-li, et al. Apoptosis in human hepatoma HepG2 cells induced by corn peptidesand its anti-tumor efficacy in H22 tumor bearing mice[J]. Food and Chemical Toxicology, 2013, 51: 297-305.
[17] HATANAKA T, KAWAKAMI K, URAJI M. Inhibitory effect of collagen-derived tripeptides on dipeptidylpeptidase-IV activity[J]. Journal of Enzyme Inhibition and Medicinal Chemistry, 2014, 29(6): 823-828.
[18] ZHUANG Hong, TANG Ning, YUAN Yuan. Purification and identification of antioxidant peptides from corn gluten meal[J]. Journal of Functional Foods, 2013, 5(4): 1 810-1 821.
[19] 黄文浩, 何慧, 董华伟, 等. 酶膜耦合制备高活性ACE抑制玉米肽及结构研究[J]. 中国粮油学报, 2011, 26(4): 24-29.
[20] MA Zhi-li, ZHANG Wen-jun, YU Guo-cai, et al. The primary structure identification of a corn peptide facilitating alcohol metabolism by HPLC-MS/MS[J]. Peptides, 2012, 37(1): 138-143.