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大分子拥挤体系下葡聚糖对SPI的共价修饰 被引量:1

Covalent Modification of SPI by Dextran in Macromolecular Crowding Conditions
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摘要 为探讨糖链对蛋白质的共价修饰作用,在大分子拥挤体系中通过Maillard反应制备了大豆分离蛋白(SPI)-葡聚糖共价复合物(SDC),通过十二烷基磺酸钠-聚丙烯酰胺凝胶电泳、荧光光谱、凝胶渗透色谱、圆二色光谱等方法研究了葡聚糖共价键入后对SPI功能和构象的影响.结果表明,大豆分离蛋白和葡聚糖发生共价结合;Maillard反应的适宜条件为SPI/葡聚糖质量比1∶1,温度60℃、反应时间30 h;在大分子拥挤体系中,与未经Maillard反应的SPI/葡聚糖混合物相比,SDC表面的疏水基团减少,乳化活性较高;与SPI相比,SDC的热稳定性提高;糖链的键入使SPI的结构发生了变化,柔韧性有所增加,更有利于发挥其功能. In order to explore the covalent modification of proteins by polysaccharide chains,soy protein isolate(SPI)-dextran conjugate(SDC) was prepared via the Maillard reaction in macromolecular crowding conditions.Then,the functions and conformation of the product were analyzed by means of the sodium dodecyl sulfate-polyacrylamide gel electrophoresis,the fluorescence spectroscopy,the gel permeation chromatography and the circular dichroism spectroscopy.The results show that(1) there occurs a covalent binding of dextran to SPI after the Maillard reaction best being carried out with a SPI-to-dextran mass ratio of 1∶ 1 at 60 ℃ for 30 h;(2) as compared with the SPI-dextran mixture without the Maillard reaction,SDC possesses less hydrophobic groups on its surface and stronger emulsifying activity in macromolecular crowding conditions;(3) SDC is more thermally stable than SPI;and(4) the covalent binding of polysaccharides changes the structure of SPI and improves the structural flexibility,which benefits the function display of SPI.
出处 《华南理工大学学报(自然科学版)》 EI CAS CSCD 北大核心 2011年第12期121-126,共6页 Journal of South China University of Technology(Natural Science Edition)
基金 国家自然科学基金资助项目(31000758) 华南理工大学中央高校基本科研业务费专项资金资助项目(2009ZM0145) 福建省区域重大科技项目(2010N3008)
关键词 大分子拥挤 大豆分离蛋白 葡聚糖 共价键 MAILLARD反应 macromolecular crowding soybean protein isolate dextran covalent bonds Maillard reaction
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参考文献19

  • 1Minton A P.The influence of macromolecular crowding and macromolecular confinement on biochemical reactions in physiological media[J].Journal of Biological Chemistry,2001,276(14):10577-10580.
  • 2Donald J W,Peter R W.Molecular crowding effects of linear polymers in protein solutions[J].Biophysical Chemistry,2006,119(2):186-195.
  • 3Akhtar M,Dickinson E.Emulsifying properties of whey protein-dextran conjugates at low pH and different salt concentrations[J].Colloids and Surfaces B-Biointeffaces,2003,31 (1/2/3/4):125-132.
  • 4Qi J R,Yang X Q,Liao J S.Improvement of functional properties of acid-precipitated soy protein by the attachment of dextran through Maillard reaction[J].International Journal of Food Science and Technology,2009,44(11):2296-2302.
  • 5Diftis N,Kiosseoglou V.Physicochemical properties of dry-beated soy protein isolate-dextran mixtures[J].Food Chemistry,2006,96 (2):228-233.
  • 6Diftis N,Kiosseoglou V.Stability against heat-induced aggregation of emulsions prepared with a dry-heated soy protein isolate-dextran mixture[J].Food Hydrocolloids,2006,20(6):787-792.
  • 7Giovanni R A,Ezio B.Thermodynamics of proteins in unusual environments[J].Biophysical Chemistry,2007,126(1/2/3):65-79.
  • 8Sasahara K,McPhie P,Minton A P.Effect of dextran on protein stability and conformation attributed to macromolecular crowding[J].Journal of Molecular Biology,2003,326 (4):1227-1237.
  • 9Eggers D K,Valentine J S.Molecular confinement influences protein structure and enhances thermal protein stability[J].Protein Science,2001,10(2):250-261.
  • 10齐军茹,卓秀英,杨晓泉.液相体系中SPI-葡聚糖复合物的制备及性质[J].华南理工大学学报(自然科学版),2011,39(4):99-104. 被引量:1

二级参考文献19

  • 1Akhtar M, Dickinson E. Emulsifying properties of whey protein-dextran conjugates at low pH and different salt concentrations [ J ]. Colloids and Surfaces B-Biointerfaees ,2003,31 (1/2/3/4) :125-132.
  • 2Qi j R, Yang X Q, Liao J S. Improvement of functional properties of acid-precipitated soy protein by the attachment of dextran through Maillard reaction [ J ]. International Journal of Food Science and Technology, 2009,44 ( 11 ) :2296-2302.
  • 3Diftis N, Kiosseoglou V. Physicochemical properties of dry-heated soy protein isolate-dextran mixtures [ J ]. Food Chemistry, 2006,96 ( 2 ) : 228- 233.
  • 4Diftis N, Kiosseoglou V. Stability against heat-induced aggregation of emulsions prepared with a dry-heated soy protein isolate-dextran mixture [ J ]. Food Hydrocolloids, 2006,20(6) :787-792.
  • 5Kato A, Murate K, Kobayashi K. Preparation and characterization of ovalbumin-dextran conjugate having excellent emulsifying properties [J]. Journal of Agricultural and Food Chemistry, 1988,36(2) :421-425.
  • 6Kato A, Sasaki Y, Furuta R, et al. Functional protein-polysaccharide conjugate prepared by controlled dry-heating of ovalbumin-dextran mixtures [ J ]. Agricultural Biological Chemistry, 1990,54 ( 1 ) : 107-112.
  • 7Zhu D, Damodaran S, Lucey J A. Formation of whey protein isolate (WPI)-dextran conjugates in aqueous solutions [ J ]. Journal of Agricultural and Food Chemistry, 2008,56(16) :7113-7118.
  • 8Oliver C M, Meltonl L D, Stanley R A. Functional properties of caseinate glycoconjugates prepared during controlled heat treatment in the "dry" state [J]. J Sci Food Agric,2006 ,86 :722-731.
  • 9Kroh L W, Hollnagel A. News on the Maillard reaction of oligomeric carbohydrates : a survey [ J ]. Nahrung/Food, 2001,45(3) :160-163.
  • 10Malec L S, Pereyra G A S, Naranjo G B, et al. Influence of water activity and storage temperature on lysine availability of a milk like system [ J ]. Food Research International ,2002,35 ( 9 ) : 849-853.

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