研究报告

羟自由基氧化对核桃蛋白性质和结构的影响

  • 张雪春 ,
  • 李如蕊 ,
  • 程群 ,
  • 杨曦 ,
  • 王娇芳 ,
  • 刘江 ,
  • 孙健
展开
  • 1(西南林业大学 生命科学学院,云南 昆明,650224)
    2(广西农业科学院 农产品加工研究所,广西 南宁,530007)
博士,副教授(孙健研究员为通讯作者,E-mail:jiansun@gxaas.net)

收稿日期: 2021-01-18

  修回日期: 2021-02-20

  网络出版日期: 2021-10-18

基金资助

广西壮族自治区农业科学院博士后启动基金(桂农科博2018033);国家自然科学基金地区科学基金项目(31760440)

Effect of hydroxyl radical oxidation on properties and structure of walnut protein

  • ZHANG Xuechun ,
  • LI Rurui ,
  • CHENG Qun ,
  • YANG Xi ,
  • WANG Jiaofang ,
  • LIU Jiang ,
  • SUN Jian
Expand
  • 1(College of Life Sciences, Southwest Forestry University,Kunming 650224, China)
    2(Agro-food Science and Technology Research Institute, Guangxi Academy of Agricultural Sciences, Nanning 530007, China)

Received date: 2021-01-18

  Revised date: 2021-02-20

  Online published: 2021-10-18

摘要

为研究羟自由基氧化对核桃蛋白性质和结构的影响,以碱溶酸沉法提取核桃蛋白,经铁/过氧化氢/抗坏血酸体系氧化产生羟自由基,分析不同氧化程度核桃蛋白的羰基、巯基、内源荧光、粒径和功能性质的变化规律。结果表明,随着H2O2浓度的增大,核桃蛋白的溶解性、游离巯基和内源荧光强度呈下降趋势,最大降幅分别为45.6%、28.2%和34.8%;持水性、平均粒径和羰基随H2O2浓度的增大而逐渐增加,最大增幅分别为136.6%、12.7%和88.9%;核桃蛋白的乳化性、乳化稳定性、起泡性和持油性呈先增大后减小的趋势,最大增幅分别为108.8%、53.4%、42.6%和146.0%;电镜扫描结果显示经低浓度羟自由基(0.1 mmol/L)氧化可使核桃蛋白的结构更紧密,而高浓度羟自由基氧化(15 mmol/L)则使其形态变疏松,孔隙率增大。该研究表明羟自由基氧化会影响核桃蛋白的功能性质和结构,而适度氧化可获得具较好乳化性和起泡性的核桃蛋白。

本文引用格式

张雪春 , 李如蕊 , 程群 , 杨曦 , 王娇芳 , 刘江 , 孙健 . 羟自由基氧化对核桃蛋白性质和结构的影响[J]. 食品与发酵工业, 2021 , 47(18) : 107 -112 . DOI: 10.13995/j.cnki.11-1802/ts.026794

Abstract

To study the hydroxyl radical oxidation (HRO) effects on properties and structure of the walnut protein, the alkali extraction-acid precipitation method was implemented to extract WP, and then oxidized with hydroxyl radical generated by Fe / H2O2/ Asc system. Various patterns of carbonyl, thiol, endogenesis fluorescence, particle size, and functional properties of WP with different degrees of oxidation were studied. The results showed that the solubility, free thiol, and endogenesis fluorescence intensity were decreased with the increase of H2O2 concentration, and the largest drop was 45.6%, 28.2%, and 34.8%, respectively. The water holding capacity (WHC), mean particle size, and carbonyl content of WP were increased with the H2O2 concentration, and reached 136.6%, 12.7% and 88.9%, respectively. The emulsifying activity index (EAI), emulsifying stability index (ESI), foaming property (FP), and oil holding capacity (OHC) were first increased and then decreased, and the maximum was 108.8%, 53.4%, 42.6%, and 146.0%, respectively. Scanning electron microscope (SEM) showed a tight structure of WP with low concentration oxidation (0.1 mmol/L), while the morphology became loose and the porosity increased with high concentration oxidation (15 mmol/L). Taken together, hydrogen peroxide oxidation has a large effect on the functional properties and structure of WP, and better emulsifying and foaming property could be obtained by low concentration oxidation.

参考文献

[1] JAHANBANI R, GHAFFARI M, VAHDATI K, et al.Kinetics study of protein hydrolysis and inhibition of angiotensin converting enzyme by peptides hydrolysate extracted from walnut[J].International Journal of Peptide Research and Therapeutics, 2018,24(1):77-85.
[2] HELLWIG M.Analysis of protein oxidation in food and feed products[J].Journal of Agricultural and Food Chemistry, 2020,68(46):12 870-12 885.
[3] MEISSNER P M, KEPPLER J K, STÖCKMANN H, et al.Cooxidation of proteins and lipids in whey protein oleogels with different water amounts[J].Food Chemistry, 2020,328:127123.
[4] 葛环宇. 偃松松仁蛋白的制备及其功能性质的研究[D].哈尔滨:东北林业大学, 2020.
GE H Y.Study on preparation and functional properties of Pinus pumila nut protein[D].Harbin:Northeast Forestry University, 2020.
[5] YE L, LIAO Y, ZHAO M M, et al.Effect of protein oxidation on the conformational properties of peanut protein isolate[J].Journal of Chemistry, 2013(2):1-6.
[6] 张洪超, 薛张芝, 徐晓蓉, 等.羟基自由基氧化对乌贼蛋白分子间作用力及结构的影响[J].核农学报, 2020,34(1):131-138.
ZHANG H C, XUE Z Z, XU X R, et al.Effect of hydroxyl radical oxidation on myofibrillar protein intermolecular force and structural of Sepia esculenta[J].Journal of Nuclear Agricultural Sciences, 2020,34(1):131-138.
[7] NYAISABA B M, LIU X X, ZHU S C, et al.Effect of hydroxyl-radical on the biochemical properties and structure of myofibrillar protein from Alaska pollock (Theragra chalcogramma)[J].LWT, 2019,106:15-21.
[8] FU Q Q, LIU R, WANG H O, et al.Effects of oxidation in vitro on structures and functions of myofibrillar protein from beef muscles[J].Journal of Agricultural and Food Chemistry, 2019,67(20):5 866-5 873.
[9] 王策, 李侠, 邓少颖, 等.羟基自由基氧化对牛血清白蛋白结构及水合特性的影响[J].中国农业科学, 2017,50(15):3 013-3 023.
WANG C, LI X, DENG S Y, et al.Effects of hydroxyl radicals oxidation on structure and hydration properties of bovine serum albumin[J].Scientia Agricultura Sinica, 2017,50(15):3 013-3 023.
[10] 卢岩. 适度氧化改善大豆分离蛋白功能特性及其与肌原纤维蛋白互作的研究[D].哈尔滨:东北农业大学, 2015.
LU Y.Study on improvement of functional properties of soy protein isolate by moderate oxidation and interaction of myofibrillar protein[D].Harbin:Northeast Agricultural University, 2015.
[11] LI S G, HUANG Y, AN F P, et al.Hydroxyl radical-induced early stage oxidation improves the foaming and emulsifying properties of ovalbumin[J].Poultry Science, 2019,98(2):1 047-1 054.
[12] LI X P, LIU C K, WANG J X, et al.Tea polyphenols affect oxidative modification and solution stability of myofibrillar protein from grass carp (Ctenopharyngodon idellus)[J].Food Biophysics, 2020,15(4):397-408.
[13] HELLWIG M.The chemistry of protein oxidation in food[J].Angewandte Chemie International Edition, 2019,58(47):16 742-16 763.
[14] 朱卫星, 王远亮, 李宗军.蛋白质氧化机制及其评价技术研究进展[J].食品工业科技, 2011,32(11):483-486.
ZHU W X, WANG Y L, LI Z J.Research progress of protein oxidation mechanism and evaluation technology[J].Science and Technology of Food Industry, 2011,32(11):483-486.
[15] KONG B H, XIONG Y L, CUI X H, et al.Hydroxyl radical-stressed whey protein isolate:Functional and rheological properties[J].Food and Bioprocess Technology, 2013,6(1):169-176.
[16] WANG Z M, HE Z F, GAN X, et al.Effect of peroxyl radicals on the structure and gel properties of isolated rabbit meat myofibrillar proteins[J].International Journal of Food Science & Technology, 2018,53(12):2 687-2 696.
[17] ZHANG D, LI H J, EMARA A M, et al.Effect of in vitro oxidation on the water retention mechanism of myofibrillar proteins gel from pork muscles[J].Food Chemistry, 2020,315:126226.
[18] ZHANG D, LI H J, WANG Z F, et al.Effects of in vitro oxidation on myofibrillar protein charge, aggregation, and structural characteristics[J].Food Chemistry, 2020,332:127396.
[19] 孙英杰. 超声波处理对大豆分离蛋白结构和功能性质影响研究[D].哈尔滨:东北农业大学, 2014.
SUN Y J.Study on the effect of ultrasonic treatments on structure and functional properties of SPI[D].Harbin:Northeast Agricultural University, 2014.
[20] 杨曦, 程群, 常陆望, 等.羟自由基和过氧自由基氧化对美藤果蛋白功能性质的影响[J].中国油脂, 2020,45(10):35-40.
YANG X, CHENG Q, CHANG L W, et al.Effect of hydroxyl radical and peroxy radical oxidation on functional properties of Sacha inchi protein[J].China Oils and Fats, 2020,45(10):35-40.
[21] RYSMAN T, VAN HECKE T, VAN POUCKE C, et al.Protein oxidation and proteolysis during storage and in vitro digestion of pork and beef patties[J].Food Chemistry, 2016,209:177-184.
[22] DAVIES M J.The oxidative environment and protein damage[J].Biochimica et Biophysica Acta (BBA)-Protein and Proteomics, 2005, 1 703(2):93-109.
[23] 李玲, 郭燕云, 周怡.氧化程度对肌原纤维蛋白理化特性和凝胶水分分布的影响[J].食品与发酵工业, 2019,45(6):97-103.
LI L, GUO Y Y, ZHOU Y.Effect of oxidation degree on physiochemical properties and gelling water distribution of pork myofibrillar protein[J].Food and Fermentation Industries, 2019,45(6):97-103.
[24] LI X P, LIU C K, WANG J X, et al.Effect of hydroxyl radicals on biochemical and functional characteristics of myofibrillar protein from large yellow croaker (Pseudosciaena crocea)[J].Journal of Food Biochemistry, 2020,44(1):e13084.
[25] 王耀松, 张唯唯, 马天怡, 等.丙二醛氧化对核桃分离蛋白结构及乳化性的影响[J].中国农业科学, 2020,53(16):3 372-3 384.
WANG Y S, ZHANG W W, MA T Y, et al.Influence of oxidative modification by malondialdehyde on structure and emulsifying properties of walnut protein[J].Scientia Agricultura Sinica, 2020,53(16):3 372-3 384.
[26] GENG F, HUANG Y, HUANG Q, et al.Effect of hydroxyl radical-induced oxidation on the structure and heat-induced gel properties of ovalbumin[J].Journal of Food Processing and Preservation, 2018,42(6):e13626.
[27] 孙领鸽, 毛晓英, 吴庆智, 等.蛋白质氧化对核桃蛋白界面性质的影响[J].中国食品学报, 2020,20(9):59-66.
SUN L G, MAO X Y, WU Q Z, et al.Effect of protein oxidation on interfacial properties of walnut protein[J].Journal of Chinese Institute of Food Science and Technology, 2020,20(9):59-66.
[28] 周非白. 氧化修饰对猪肉肌原纤维蛋白结构与功能特性的调控研究[D].广州:华南理工大学, 2016.
ZHOU F B.Oxidative modification on porcine myofibrillar protein in relation to structural changes and functional properties[D].Guangzhou:South China University of Technology, 2016.
文章导航

/