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Frontiers of Chemical Science and Engineering

ISSN 2095-0179

ISSN 2095-0187(Online)

CN 11-5981/TQ

邮发代号 80-969

2019 Impact Factor: 3.552

Front. Chem. Sci. Eng.  2009, Vol. 3 Issue (4): 386-392   https://doi.org/10.1007/s11705-009-0250-1
  Research articles 本期目录
Effect of succinic acid deamidation-induced modification on wheat gluten
Effect of succinic acid deamidation-induced modification on wheat gluten
Lan LIAO,Mouming ZHAO,Haifeng ZHAO,Jiaoyan REN,Chun CUI,Xiao HU,
College of Light Industry and Food Sciences, South China University of Technology, Guangzhou 510640, China;
 全文: PDF(149 KB)  
Abstract:The effect of succinic acid deamidation-induced modification on wheat gluten was investigated in the present study. The changes of surface hydrophobicity, functional properties, secondary structure, and sensibility of proteolysis of modified samples were determined. The solubility of deamidated proteins increased in the isoelectric region of untreated wheat gluten. The isoelectric point of succinic acid deamidated wheat gluten was shifted to a basic pH and existed in the broad pH regions. Foaming property and molecular flexibility of wheat gluten were improved after the modification. The hydrolysis degree of the hydrolysates in proteolysis with flavorzyme and pancreatin increased after succinic acid deamidation. Moreover, succinic acid deamidation-induced modification resulted in little change in molecular weight and secondary structure of the protein. Thus, succinic acid could facilitate unfolding protein conformation. In addition, it could improve protein-water interactions, surface properties, and sensibility of the proteolysis of the deamidated wheat gluten.
出版日期: 2009-12-05
 引用本文:   
. Effect of succinic acid deamidation-induced modification on wheat gluten[J]. Front. Chem. Sci. Eng., 2009, 3(4): 386-392.
Lan LIAO, Mouming ZHAO, Haifeng ZHAO, Jiaoyan REN, Chun CUI, Xiao HU, . Effect of succinic acid deamidation-induced modification on wheat gluten. Front. Chem. Sci. Eng., 2009, 3(4): 386-392.
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https://academic.hep.com.cn/fcse/CN/10.1007/s11705-009-0250-1
https://academic.hep.com.cn/fcse/CN/Y2009/V3/I4/386
Riha W E, Izzo H V, Zhang J, Ho C T. Nonenzymaticdeamidation of food proteins. Crit. ReV.Food Sci. Nutr. 1996, 36: 225–―255
Chan W M, Ma C Y. Acid modification of proteinsfrom soymilk residue (okara). Food ResIntern, 1999, 32: 119―127

doi: 10.1016/S0963-9969(99)00064-2
Wu C H, Nakai S, Powrie W D. Preparation and properties of acid-solubilized glutenconformation. J Agric Food Chem, 1976, 24: 504―510

doi: 10.1021/jf60205a057
Matsudomi N, Sasaki T, Kato A, Kobayashi K. Conformationalchanges and functional properties of acid-modified soy protein. J Agric Biol Chem, 1985, 49: 1251―1256
Berti C, Roncoroni C R, Dolfini E, Bardella L, Falini M L, Claudia T L E, Forlani F. Celiac-relatedproperties of chemically and enzymatically modified gluten proteins. J Agric Food Chem, 2007, 55: 2482―2488

doi: 10.1021/jf062623n
McDonald C E, Pence J W. Wheat gliadin in foams forfood products. Food Technol, 1961, 15: 141―145
Yong Y H, Yamaguchi S, Matsumura Y. Effects of enzymatic deamidation by protein-glutaminaseon structure and functional properties of wheat gluten. J Agric Food Chem, 2006, 54: 6034―6040

doi: 10.1021/jf060344u
Batt C A. Identification and characterization of deamidation sites in the conservedregions of human immunoglobulin. J FoodSci, 1987, 52: 1583―1587
Nagodawithana T W. Savory flavors. In bioprocess production of flavor, fragrance, andcolor ingredients. Gabelman A, ed. New York: John Wiley & Sons, 1994, 135―168
Aranyi C, Hawrylewiczl E J. Preparation and isolationof acid-catalyzed hydrolysates from wheat gluten. J Agric Food Chem, 2007, 20: 670―675

doi: 10.1021/jf60181a030
Kato A, Tanaka A, Lee Y, Matsudomi N, Kobayashi K. Effects of deamidation withchymotrypsin at pH 10 on the functional properties of proteins. J Agric Food Chem, 1987, 35: 285―288

doi: 10.1021/jf00074a029
Adler-Nissen J. Determinationof degree of hydrolysis of food protein hydrolysates by trinitrobenzenosulfonicacid. J Agric Food Chem, 1979, 27: 1256―1262

doi: 10.1021/jf60226a042
Schacterle G R, Pollack R L. A simplified method for aquantitative assay of small amounts of protein in biological material. Anal Biochem, 1973, 51: 654―655

doi: 10.1016/0003-2697(73)90523-X
AOAC. Chemical Methodsof Analysis. 14th ed. Washington D C: Association of Chemical Analytical Chemists, 1986
Bernardi D L S, Pilosof A M R, Bartholomal G B. Enzymatic modification of soy proteinconcentrates by fungal and bacterial proteases. J American Oil Chemists Society. 1991, 68: 102―105

doi: 10.1007/BF02662327
Haskard C A, Li-Chan E C Y. Hydophobicity of bovine serumalbumin and ovalbumin determined using uncharged (PRODAN) and anionic(ANS―) fluorescent probes. J AgricFood Chem, 1998, 46: 2671―2677

doi: 10.1021/jf970876y
Kato A, Tanaka A, Matsudomi N, Kobayashi K. Deamidationof food proteins by protease in alkaline pH. J Agric Food Chem, 1987, 35: 224―227

doi: 10.1021/jf00074a014
Shih F F. Modification of food proteins by non-enzymatic methods. In: Hudson B J F, ed. Biochemistry of Food Proteins. NewYork: Elsevier Science PublishersLtd, 1992, 235―248
Shih F F, Kalmar A D. SDS-catalyzed deamidationof oilseed proteins. J Agric Food Chem, 1987, 35: 671―675

doi: 10.1021/jf00077a009
Wright H T, Urry D W. Nonenzymatic deamidationof asparaginyl and glutaminyl residues in proteins. Crit Rev in Biochemistry and Molecular Biology, 1991, 26: 1―52

doi: 10.3109/10409239109081719
Townsend A, Nakai S. Relationships between hydrophobicityand foaming characteristics of food proteins. J Food Sci, 1983, 48: 588―594

doi: 10.1111/j.1365-2621.1983.tb10796.x
Mejri M, Roge B, Ben S A, Michels F, Mathlouthi M. Effects of some additiveson wheat gluten solubility: a structural approach. Food Chem, 2005, 92: 7―15

doi: 10.1016/j.foodchem.2004.07.021
Wang J S, Zhao M M, Yang X Q. Improvement on functional properties of wheat glutenby enzymatic hydrolysis and ultrafiltration. J Cereal Sci, 2006, 44: 93―100

doi: 10.1016/j.jcs.2006.04.002
Chou P Y, Fasman G D. β-Turn in proteins. J Mol Biol, 1977, 115: 135―175

doi: 10.1016/0022-2836(77)90094-8
Kristinsson H G, Rasco B A. Biochemical and functionalproperties of atlantic salmon (salmo salar) muscle proteins hydrolyzedwith various alkaline proteases. J AgricFood Chem, 2000, 48: 657―666

doi: 10.1021/jf990447v
Mutilangi W A M, Panyam D, Kilara A. Hydrolysates from proteolysis of heat-denatured wheyproteins. J Food Sci, 1995, 60: 1104―1109

doi: 10.1111/j.1365-2621.1995.tb06302.x
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