PURIFICATION OF THERMOSTABLE β-GALACTOSIDASE FROM ANOXYBACILLUS SP KP1 AND ESTIMATION OF COMBINED EFFECT OF SOME CHEMICALS ON ENZYME ACTIVITY USING SEMIPARAMETRIC ERRORS IN VARIABLES MODEL

被引:0
作者
Bekler, Fatma Matpan [1 ]
Yalaz, Secil [2 ]
Acer, Omer [1 ]
Guven, Kemal [3 ]
机构
[1] Dicle Univ, Fac Sci, Dept Biol, TR-21280 Diyarbakir, Turkey
[2] Dicle Univ, Fac Sci, Dept Math, TR-21280 Diyarbakir, Turkey
[3] Dicle Univ, Fac Sci, Dept Mol Biol & Genet, TR-21280 Diyarbakir, Turkey
来源
FRESENIUS ENVIRONMENTAL BULLETIN | 2017年 / 26卷 / 03期
关键词
beta-galactosidase; characterization; inhibitor; purification; semiparametric EIV Model; ALICYCLOBACILLUS-ACIDOCALDARIUS; BIOCHEMICAL-CHARACTERIZATION; ALPHA-AMYLASE; BACILLUS-SUBTILIS; CLONING; BACTERIUM; IMMOBILIZATION; IDENTIFICATION; OPTIMIZATION;
D O I
暂无
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The thermostable beta-galactosidase from thermophilic Anoxybacillus sp. KP1 was partially purified by Sephadex G-75 gel permeation chromatography with a fold purification of 14.4 and a yield of 11.8%, respectively. The optimal activity of purified beta-galactosidase was pH 9.0 and a temperature of 60 degrees C. The enzyme was stable at pH 9.0. Thermostability of the enzyme was also 60 degrees C. The molecular weight of the enzyme was determined as 68 kDa by SDS-PAGE. The partially purified thermostable alkaline beta-galactosidase was significantly inhibited by various divalent cations, including Hg2+ and Cu2+ while Ca2+ and Mg2+ ions activated the enzyme activity. The combined effects of some chemicals on beta-galactosidase activity by Anoxybacillus sp. KP1 were studied using semiparametric errors in variables methodology. The optimal combinations of chemicals concen-tration for maximum beta-galactosidase activity was determined as 4 mM DTT, 4 mM PMSF, 4 mM NEM, 4 mM Iod A, 4 mM beta-Mer and 10 mM phen.
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页码:2253 / 2261
页数:9
相关论文
共 49 条
  • [1] Al-Jazairi M, 2015, INT FOOD RES J, V22, P1361
  • [2] A clostridial endo-β-galactosidase that cleaves both blood group A and B glycotopes
    Anderson, KM
    Ashida, H
    Maskos, K
    Dell, A
    Li, SC
    Li, YT
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (09) : 7720 - 7728
  • [3] Asraf SS, 2010, FORMATEX RES CTR, V2, P880
  • [4] Cloning, purification and characterization of a thermostable carboxylesterase from Anoxybacillus sp PDF1
    Ay, Fulya
    Karaoglu, Hakan
    Inan, Kadriye
    Canakci, Sabriye
    Belduz, Ali Osman
    [J]. PROTEIN EXPRESSION AND PURIFICATION, 2011, 80 (01) : 74 - 79
  • [5] Bekler FM, 2015, CELL MOL BIOL, V61, P71
  • [6] Isolation and production of thermostable α-amylase from thermophilic Anoxybacillus sp KP1 from Diyadin hot spring in Agri, Turkey
    Bekler, Fatma Matpan
    Guven, Kemal
    [J]. BIOLOGIA, 2014, 69 (04) : 419 - 427
  • [7] Purification, properties and characterization of a high-molecular-mass beta-galactosidase isoenzyme from Thermus aquaticus YT-I
    Berger, JL
    Lee, BH
    Lacroix, C
    [J]. BIOTECHNOLOGY AND APPLIED BIOCHEMISTRY, 1997, 25 : 29 - 41
  • [8] Purification and characterization of a novel β-galactosidase from Bacillus sp MTCC 3088
    Chakraborti, S
    Sani, RK
    Banerjee, UC
    Sobti, RC
    [J]. JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGY, 2000, 24 (01) : 58 - 63
  • [9] Chen H., 2014, ADV J FOOD SCI TECHN, V6, P819
  • [10] Immobilization of recombinant thermostable β-galactosidase from Bacillus stearothermophilus for lactose hydrolysis in milk
    Chen, W.
    Chen, H.
    Xia, Y.
    Yang, J.
    Zhao, J.
    Tian, F.
    Zhang, H. P.
    Zhang, H.
    [J]. JOURNAL OF DAIRY SCIENCE, 2009, 92 (02) : 491 - 498