数字农科院2.0

Proteolysis and lipolysis induced by acidification of sesame seeds

文献类型: 外文期刊

作者: Xinyu Wang;Lili Wang;Lijuan Wang;Caimeng Zhang;Xiangzhen Kong;Yufei Hua;Yeming Chen

作者机构:

关键词: Acidification;Lipases;Oil bodies;Proteases;Protein storage vacuoles;Seeds

期刊名称: Food Chemistry

ISSN: 0308-8146

年卷期: 2025 年 484 卷

页码:

收录情况: SCIE(2025版) ; ; EI(2025版)

摘要: Vinegar-soaked seeds can be consumed as functional foods, and the acidification of vacuoles during seed germination is key for protein mobilization. Inspired by these, sesame seeds, containing proteases with peak activity at pH 4.5, were soaked in a 2 % acetic acid solution at 25 °C. Transmission electron microscopy showed that the acidic sesame proteases localized in protein storage vacuoles (PSVs), while liquid chromatography tandem mass spectrometry identified nine lipases. The seeds were acidified to pH 4.5 within 9 h, and the proteases were fully activated to hydrolyze the storage proteins and tonoplast of PSVs. The proteases were released and attacked almost all organelles. Oil body membrane proteins were degraded, causing the inner oil accessible to lipases. By 7 days of soaking, the protein components in the soaking system consisted of 39 % small peptides and 31 % free amino acids, while the oil was hydrolyzed into 26 % free fatty acids and 13 % diacylglycerols.

分类号:

  • 相关文献

[1]Relationship between kernel size and shape and lipase activity of naked oat before and after pearling treatment. Wei, Yimin,Hu, XinZhong,Wei, Yimin,Zhao, Jing,Ren, Changzhong,Ren, Changzhong.

[2]Ubiquitin-specific proteases UBP12 and UBP13 act in circadian clock and photoperiodic flowering regulation in Arabidopsis. Cui, Xia,Lu, Falong,Xue, Yongming,Kang, Yanyuan,Zhang, Shuaibin,Qiu, Qi,Cui, Xiekui,Zheng, Shuzhi,Cao, Xiaofeng,Li, Yue,Xu, Xiaodong,Xue, Yongming,Kang, Yanyuan,Zhang, Shuaibin,Qiu, Qi,Cui, Xiekui,Liu, Bin.

[3]Genome-wide analysis of regulatory proteases sequences identified through bioinformatics data mining in Taenia solium. Yan, Hong-Bin,Lou, Zhong-Zi,Li, Li,Zheng, Yadong,Luo, Xuenong,Hou, Junling,Guo, Aijiang,Jia, Wan-Zhong,Cai, Xuepeng,Yan, Hong-Bin,Brindley, Paul J.,Yan, Hong-Bin,Brindley, Paul J.. 2014

[4]Meat tenderness: advances in biology, biochemistry, molecular mechanisms and new technologies. Robyn D. Warner,Tommy L. Wheeler,Minh Ha,Xin Li,Alaa El Din Bekhit,James Morton,Rozita Vaskoska,Frank R. Dunshea,Rui Liu,Peter Purslow,Wangang Zhang. 2022

[5]Evaluation of UHT milk spoilage caused by proteases from psychrophilic bacteria based on peptidomics. Jinyu Xu,Xiaodan Wang,Xiaoxuan Zhao,Hongyu Cao,Yunna Wang,Ning Xie,Xu Li,Xiaoyang Pang,Jiaping Lv,Shuwen Zhang. 2024

[6]Natural oil bodies from typical oilseeds: Structural characterization and their potentials as natural delivery system for curcumin. Shan Zhang,Hongjian Chen,Fang Geng,Dengfeng Peng,Bijun Xie,Zhida Sun,Yashu Chen,Qianchun Deng. 2022

[7]Solvent-free encapsulation of β-carotene in natural flaxseed oil bodies induced via tepidity-physical field treatment: Formation, characteristic and stability. Shan Zhang,Hongjian Chen,Fang Geng,Bijun Xie,Zhida Sun,Qingde Huang,Dengfeng Peng,Yashu Chen,Qianchun Deng. 2023

[8]The physicochemical stability and in vivo gastrointestinal digestion of flaxseed milk: Implication of microwave on flaxseed. Xiaopeng Qin,Fan Yang,Haohe Sun,Xiao Yu,Qianchun Deng,Yashu Chen,Fenghong Huang,Fang Geng,Xiaoqiao Tang. 2023

[9]Carotenoids encapsulated in natural flaxseed oil body: Different colloidal interfaces induce their behavior and stability disparity. Shan Zhang,Zhida Sun,David Julian McClements,Bijun Xie,Ruofan Zheng,Qianchun Deng,Yashu Chen. 2024

[10]Study on interfacial regulation in real food system: Cellulase-induced steady-state reconstruction of flaxseed-based plant milk and its molecular mechanisms. Hao, Qian,Deng, Ziyu,Li, Ruyi,Cheng, Yuanmeng,Pei, Yaqiong,Zhou, Bin,Chen, Yashu,Deng, Qianchun. 2025

[11]Assembly of oleosin during efficient extraction: Altering the sequence of defatting solvents. Yu Li,Yuqian Qiao,Yuxuan Zhu,Wangyang Shen,Weiping Jin,Dengfeng Peng,Qingrong Huang. 2025

[12]Bioengineering approaches to improve the nutritional values of seeds by increasing their methionine content. Amir, Rachel,Amir, Rachel,Han, Tihanfu,Ma, Fengming. 2012

[13]Identification of quantitative trait locus of zinc and phosphorus density in wheat (Triticum aestivum L.) grain. Shi, Rongli,Zhang, Fusuo,Zou, Chunqin,Li, Hongwei,Tong, Yiping,Jing, Ruilian.

[14]Chromosome elimination, addition and introgression in intertribal partial hybrids between Brassica rapa and Isatis indigotica. Tu, Yuqin,Sun, Jian,Ge, Xianhong,Li, Zaiyun,Sun, Jian.

[15]Molecular cloning and functional analysis of a novel type of Bowman-Birk inhibitor gene family in rice. Qu, LJ,Chen, J,Liu, MH,Pan, NS,Okamoto, H,Lin, ZZ,Li, CY,Li, DH,Wang, JL,Zhu, GF,Zhao, X,Chen, X,Gu, HG,Chen, ZL.

[16]Temperature dependence of seedling establishment of a perennial, Dioscorea tokoro. Zhong, XL,Nishino, E,Okagami, N.

[17]Determination of D-chiro-inositol in tartary buckwheat using high-performance liquid chromatography with an evaporative light-scattering detector. Yang, Nan,Ren, Guixing.

[18]Influence of host seed on metabolic activity of Enterobacter cloacae in the spermosphere. Roberts, D. P.,Baker, C. J.,Liu, S.,Kobayashi, D. Y..

[19]Genetic and histological characterization of a novel recessive genic male sterile line of Brassica napus derived from a cross with Capsella bursa-pastoris. Chen, Hai-Feng,Ge, Xian-Hong,Du, Xue-Zhu,Zhao, Zhi-Gang,Li, Zai-Yun,Chen, Hai-Feng.

[20]Study on Germination Rate of Zoysia (Zoysia japonica Steud.) Seeds Using Near Infrared Reflectance Spectroscopy. Dai Zi-yun,Liang Xiao-hong,Zhang Li-juan,Fan Bo,Puyang Xue-hua,Han Lie-bao,Mao Wen-hua. 2013

作者其他论文 更多>>