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乙醇-水体系中酪蛋白水解物的类蛋白反应及ACE抑制活性的变化

Plastein reaction of casein hydrolysates in alcohol-water system and the change of ACE inhibitory activity
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摘要 采用Neutrase 0.8L蛋白酶水解酪蛋白,制备水解度为13.6%的酪蛋白水解产物,测得其对血管紧张素转化酶(ACE)的体外抑制活性IC50为(46.92±0.27)mg/L。在乙醇溶剂中,利用Neutrase 0.8L蛋白酶对水解物进行类蛋白反应修饰,并研究酶添加量、底物质量分数、反应温度、反应时间和乙醇浓度对修饰反应的影响。在优化条件下的类蛋白反应体系中,游离氨基浓度减少,说明合成反应占优势;酶添加量、底物质量分数、乙醇质量分数对修饰反应的影响显著,而反应时间和温度影响不大。通过单因素实验确定类蛋白反应的最适反应条件为:44%乙醇水溶液、反应温度为40℃,酶添加量为3 kU/g蛋白质、底物质量分数40%、反应时间6.0 h。此条件下,反应体系中游离氨基浓度变化达到202.19μmol/g蛋白质,修饰产物的IC50值降低至(25.96±0.29)mg/L,降低44.7%。 Casein hydrolysate were prepared with Nuetrase 0.8 L. The prepared hydrolysate exhibited inhibition on angiotensin-I-converting enzyme(ACE) in vitro, and the inhibitory activity IC50was(46.92±0.27)μg/mL at the degree of hydrolysis of 13.6%. The hydrolysates were modified by plastein reaction with Neutrase 0.8 L in ethanol. The impacts of the amount of enzyme content, substrate concentration, reaction temperature, reaction time and the ethanol concentration were studied by single factor experiments, and the decrease of free amino acid in the reaction system were detected under optimized reaction conditions, which was suggested that synthesis reaction is dominant. The impacts of substrate concentration, amount of enzyme addition, and ethanol concentration were notable, at the same time temperature and time of reaction were not significant. The optimal reaction conditions were determined by single factor experiment: ethanol solution 44%, reaction temperature of 40 °C, enzyme dosage 3 kU/g proteins, substrate concentration40%, reaction time is 6.0 h. Under this condition, the free amino group content in the reaction system reached 202.19 μmol/g protein, the IC50 value of the modified product was(25.96 ± 0.29)μg/mL, decreased by 44.7%.
出处 《中国乳品工业》 CAS 北大核心 2014年第8期12-15,26,共5页 China Dairy Industry
基金 国家自然科学基金资助(31140009)
关键词 酪蛋白水解物 乙醇 类蛋白反应 ACE抑制活性 casein hydrolysate ethanol plastein reaction ACE-inhibitory activity
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参考文献22

  • 1V L Spitsberg, Invited Review: bovine milk fat globule membrane as a potential nutraceutical [J]. Dairy Sci., 2005, 88:2289-2294. 被引量:1
  • 2MUGURUMA M, AHHMED A M, KATAYAMA K, et al. Identifi- cation of Pro-drug Type ACE Inhibitory Peptide Sourced from Por- cine Myosin B: Evaluation of Its Antihypertensive Effects in Vivo[J]. Food Chemistry, 2009, 114 (2): 516-522. 被引量:1
  • 3MACMAHON S, PETO R, CUTLER J, et al. Blood Pressure, Stroke, and Coronary Heart Disease: Part 1, Prolonged Differences in Blood Pressure: Prospective Observational Studies Corrected for the Regression Dilution Bias[J]. The Lancet, 1990, 335 (8692): 765 - 774. 被引量:1
  • 4COLLINS R, S, PETO R, MACMAHON S, et al. Blood Pressure, Strike, and Coronary Heart Disease: Part 2, Short-term Reductions in Blood Pressure: Overview of Randomised Drug Trials in their Epide- miological Context [J]. The Lancet, 1990, 335 (8693): 827 - 838. 被引量:1
  • 5OTTE J, SHALABY SMA, ZAKORA M, et al. Fractionation and identification of ACE-inhibitory peptides from o -lactalbumin and [3 -casein produced by thermolysin-catalysed hydrolysis [J]. Interna- tional Dairy Journal, 2007, 17:1460-1472. 被引量:1
  • 6TSAI J, CHEN T, PAN B, et al. Antihypertensive Effect of Bioactive Peptides Produced by Protease-facilitated Lactic Acid Fermentation of Milk [J]. Food Chemistry, 2008, 106 (2):552-558. 被引量:1
  • 7CHIANG W, TSOU M, TSAI Z, et al. Angiotensin I-converting En- zyme Inhibitor Derived from Soy Protein Hydrolysate and Produced by Using Membrane Reactor [J]. Food Chemistry, 2006, 98 (4): 725-732. 被引量:1
  • 8KONG Q,CHENG F,WANG X, et al. Optimizatiorr of Conditions for Enzymatic Production of ACE Inhibitory Peptides from Collagen [J]. Food Bioprocess Technology, 2011, 4 (7): 1205-1211. 被引量:1
  • 9ZHAO X H, LI Y Y. An Approach to Improve ACE Inhibitory Activ- ity of Casein Hydrolysates with Plastein Reaction Catalyzed by Alcalase [J]. European Food Research and Techno!ogy, 2009, 229 (5):795-805. 被引量:1
  • 10李亚云,赵新淮.酪蛋白水解物的酶法修饰与ACE抑制活性变化[J].食品与发酵工业,2009,35(5):35-39. 被引量:17

二级参考文献42

  • 1赵新淮,冯志彪.蛋白质水解物水解度的测定[J].食品科学,1994,15(11):65-67. 被引量:525
  • 2陈季旺,刘英,夏文水,顾磊,舒静.大米降压肽酶法制备工艺及其性质研究[J].农业工程学报,2007,23(5):210-213. 被引量:22
  • 3SB/T10317-1999,蛋白酶活力测定[S]. 被引量:13
  • 4Ottea J, Shalabya S M, Zakoraa M, et al. Angiotensinconverting enzyme inhibitory activity of milk protein hydrolysates: Effect of substrate, enzyme and time of hydrolysis[J].International Dairy Journal, 2007, 17(5) : 488--503. 被引量:1
  • 5Kuba M, Tana C, Tawata S, et al. Production of angiotensin I-converting enzyme inhibitory peptides from soybean protein with Monascus purpureus acid protein- ase[J]. Process Biochemistry, 2005, 40 (6): 2 191- 2 196. 被引量:1
  • 6Hudson B j F. Biochemistry of food Proteins[M]. London and New York: Elsevier Applied Science, 1992, 271--300. 被引量:1
  • 7Yamashita M, Arai S, Fujimaki M. Plastein reaction for food protein improvement [J].Journal of Agricultural and Food Chemistry, 1976, 24(6): 132--134. 被引量:1
  • 8Goepfert A, Lorenzen P C, Schlimme E. Peptide syn thesis during in vitro proteolysis-transpeptidation or condensation? [J]. Nahrung, 1999, 43(3): 211--212. 被引量:1
  • 9Andrews A T, Alichanidis E. The plastein reaction revisited: evidence for a purely aggregation reaction mechanism [J].Food Chemistry, 1990, 35(4): 243 261. 被引量:1
  • 10Church F C, Swaisgood H E, Porter D H, et al. Spectrophtotometric assay using o-Phthaldialdehyde for de termination of proteolysis in milk and milk proteins [J]. Journal of Dairy Science, 1983, 66(6): 1 219-- 1 277. 被引量:1

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