APPLICATION OF ZINC HYDROXIDE IN THE PURIFICATION OF BEAN ALPHA-AMYLASE INHIBITOR

被引:5
作者
Szamos, J. [1 ]
Maczo, A. [1 ]
Gelencser, E. [1 ]
机构
[1] Cent Food Res Inst, Dept Biol, H-1022 Budapest, Hungary
关键词
bean alpha-amylase inhibitor; zinc hydroxide; protein purification; PHASEOLUS-VULGARIS; SEEDS;
D O I
10.1556/AAlim.41.2012.2.14
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
A novel step in bean (Phaseolus vulgaris) alpha-amylase inhibitor (AAI) purification, based on the application of an inorganic adsorbent, zinc hydroxide, was developed. The new method was substantially faster than existing protocols. Up to 98% of bean seed proteins were bound to the white precipitate in the range of 1-4% (w/v) zinc hydroxide, while the amount of bound bean AAI was far less in the range of 1-2%. The AAI-enriched fraction, unbound by zinc hydroxide, was further purified by DEAE-(diethylaminoethyl)chromatography and gel filtration. It was found that zinc hydroxide binds the majority of soluble proteins of bean, while it leaves alpha-amylase inhibitor in solution. The binding of proteins to zinc-hydroxide occurs in a short time and the change caused in the buffer composition is insignificant, thus it may open new approaches in purification of other proteins, too.
引用
收藏
页码:272 / 276
页数:5
相关论文
共 50 条
[31]   Production of alpha-amylase from Aspergillus oryzae for several industrial applications in a single step [J].
Porfirif, Maria C. ;
Milatich, Esteban J. ;
Farruggia, Beatriz M. ;
Romanini, Diana .
JOURNAL OF CHROMATOGRAPHY B-ANALYTICAL TECHNOLOGIES IN THE BIOMEDICAL AND LIFE SCIENCES, 2016, 1022 :87-92
[32]   Concurrent occurrence of α-amylase inhibitor and stimulator in red kidney bean seed: physiological implications [J].
Alizadeh, H. ;
Leung, D. W. M. ;
Cole, A. L. J. .
BIOLOGIA PLANTARUM, 2010, 54 (01) :195-197
[33]   Purification, developmental expression, and in silico characterization of α-amylase inhibitor from Echinochloa frumentacea [J].
Panwar, Priyankar ;
Verma, A. K. ;
Dubey, Ashutosh .
3 BIOTECH, 2018, 8 (05)
[34]   Characterization and functional properties of the α-amylase inhibitor (α-AI) from kidney bean (Phaseolus vulgaris) seeds [J].
Le Berre-Anton, V ;
Bompard-Gilles, C ;
Payan, F ;
Rougé, P .
BIOCHIMICA ET BIOPHYSICA ACTA-PROTEIN STRUCTURE AND MOLECULAR ENZYMOLOGY, 1997, 1343 (01) :31-40
[35]   Challenges and opportunities in developing low glycemic index foods with white kidney bean α-amylase inhibitor [J].
Liu, Tingting ;
Gu, Yao ;
Waleed, AL-Ansi ;
Wang, Li ;
Li, Yan ;
Qian, Haifeng .
TRENDS IN FOOD SCIENCE & TECHNOLOGY, 2024, 147
[36]   Identification of novel alleles from wild barley for the improvement of alpha-amylase and related malt quality traits [J].
Cu, Suong T. ;
March, Timothy J. ;
Degner, Sophia ;
Eglinton, Jason K. .
PLANT BREEDING, 2016, 135 (06) :663-670
[37]   α-Amylase inhibitor in local Himalyan collections of Colocasia: Isolation, purification, characterization and selectivity towards α-amylases from various sources [J].
Kumari, Bandna ;
Sharma, Pratima ;
Nath, Amarjit Kaur .
PESTICIDE BIOCHEMISTRY AND PHYSIOLOGY, 2012, 103 (01) :49-55
[38]   The impact of four processing methods on trypsin-, chymotrypsin- and alpha-amylase inhibitors present in underutilised legumes [J].
Choi, Wai Chuen ;
Parr, Tim ;
Lim, Yin Sze .
JOURNAL OF FOOD SCIENCE AND TECHNOLOGY-MYSORE, 2019, 56 (01) :281-289
[39]   Characterization of the third α-amylase inhibitor, αAI-3, in the common bean (Phaseolus vulgaris L.) [J].
Suzuki, K ;
Ishimoto, M .
BREEDING SCIENCE, 1999, 49 (04) :275-280
[40]   Trypsin Inhibitor Isolated From Glycine max (Soya Bean) Extraction, Purification, and Characterization [J].
Khan, Sabir ;
Arshad, Shafia ;
Arif, Amina ;
Tanveer, Rida ;
Amin, Zeemal Seemab ;
Abbas, Saba ;
Maqsood, Amna ;
Raza, Muhammad ;
Munir, Arooj ;
Latif, Amara ;
Habiba, Maryam ;
Afzal, Muhammad .
DOSE-RESPONSE, 2022, 20 (04)