欢迎登录材料期刊网

材料期刊网

高级检索

考察了1-烷基-3-甲基咪唑类离子液体对柱状假丝酵母脂肪酶(CRL)催化橄榄油水解反应活性的影响,利用电导法确定了磷酸盐缓冲液中Br-,Cl-,[BF4]-系列咪唑离子液体的临界胶束浓度(CMC)和[PF6]-系列咪唑离子液体的溶解度.结果显示,离子液体的阴、阳离子对酶活性的影响规律与离子液体的Kosmotropicity性质无明显关联,但与离子液体在体系中的含量密切相关,在最适离子液体含量时,酶活性达到最高;阳离子[CnMIM]+中的n越大,可促进酶活性的离子液体适宜含量越低;Br-,[BF4]-系列离子液体的浓度超过CMC时则抑制酶活;阴离子对酶活性的最大促进作用顺序为Br->Cl->[BF4]->[PF6]-.离子液体对酶活性的影响随体系pH和温度的不同而改变,在最适离子液体浓度时的最适pH均为7.000.在pH 7.000,30 ℃以及[C8MIM]Br离子液体浓度为47.6mmol/L的最佳条件下,最高相对酶活力和比活力分别达到1734%和54.4 U/mg protein.

参考文献

[1] Moniruzzaman M;Nakashima K;Kamiya N .[J].Goto M Biochern Eng J,2010,48:295.
[2] Ulbert O;Fráter T;Bélafi-Bakó K .[J].Gubicza L J Mol Catal B,2004,31:39.
[3] 毕艳红,王朝宇,茅燕勇,郑尚永,张海江,时号.离子液体对β-糖苷酶催化合成红景天苷的影响[J].催化学报,2012(07):1161-1165.
[4] Zhao H .[J].J Mol CatalB,2005,37:16.
[5] Stock F;Hoffmann J;Ranke J;St(O)rmann R Ondruschka B Jastorff B .[J].Green Chemistry,2004,6:286.
[6] 杜伟燕,李娜,王寿江.不同离子液体反应介质在生物催化中的应用研究进展[J].化学通报,2012(09):780-780.
[7] Seddon KR.;Torres MJ.;Stark A. .Influence of chloride, water, and organic solvents on the physical properties of ionic liquids[J].Pure and Applied Chemistry,2000(12):2275-2287.
[8] Stark A;Seddon K R.Ionic Liquids,in Kirk-Othmer Encyclopedia of Chemical Technology[M].New York:Wiley,2007:859.
[9] Freire M G;Neves C M S S;Carvalho P J;Gardas R L Fernandes A M Marrucho I M Santos L M N B F Coutinho J A P .[J].Journal of Physical Chemistry B,2007,111:13082.
[10] Kaar JL.;Jesionowski AM.;Berberich JA.;Moulton R.;Russell AJ. .Impact of ionic liquid physical properties on lipase activity and stability[J].Journal of the American Chemical Society,2003(14):4125-4131.
[11] Zhao H;Olubajo O;Song Z;Sims AL;Person TE;Lawal RA;Holley LA .Effect of kosmotropicity of ionic liquids on the enzyme stability in aqueous solutions.[J].Bioorganic chemistry: An International Journal,2006(1):15-25.
[12] Lou WY;Zong MH;Liu YY;Wang JF .Efficient enantioselective hydrolysis of D,L-phenylglycine methyl ester catalyzed by immobilized Candida antarctica lipase B in ionic liquid containing systems[J].Journal of Biotechnology,2006(1):64-74.
[13] Yigitoglu M;Temocin Z .[J].JOURNAL OF MOLECULAR CATALYSIS B:ENZYMATIC,2010,66:130.
[14] 孙硕,翟玉娟,孙烨,张玉璞,刘贺,王兴华,于爱民,张寒琦.离子液体-非极性溶剂微波提取法在人参化学成分研究中的应用[J].高等学校化学学报,2010(03):468-472.
[15] Zhao H;Luo R G;Malhotra S V .[J].Biotechnol Proglr,2003,19:1016.
[16] 赵炜,黄卓楠,李娜.恒电位自动滴定法分析脂肪酶水解活性影响因素[J].分析化学,2011(03):351-355.
[17] 单海霞,陆杨,李在均,李明,蔡燕,孙秀兰,张银志.新型温控离子液体介质中脂肪酶催化合成乙酸苯乙酯[J].催化学报,2010(03):289-294.
[18] Nicole W;Christian W;Vaclav C;Andreas P Eva H Rainer R Frank B .[J].Chem Biol Chem,2008,9:1493.
[19] Debnath, S;Das, D;Dutta, S;Das, PK .Imidazolium Bromide-Based Ionic Liquid Assisted Improved Activity of Trypsin in Cationic Reverse Micelles[J].Langmuir: The ACS Journal of Surfaces and Colloids,2010(6):4080-4086.
[20] Park S;Kazlauskas R J .[J].J Orgl Chem,2001,66:8395.
[21] Lozano P;De Diego T;Guegan J P;Vaultier M Iborra J L .[J].Biotechnology and Bioengineering,2001,75:563.
[22] Huddleston J G;Rogers R D.[J].Chemistry Communications,1998:1765.
[23] 尚雁,李娜,覃小焕,鲁保旺,傅强.介孔分子筛SBA-15的脂肪酶固定量分析测定[J].分析化学,2009(08):1173-1177.
[24] Sirieix-Plénet J;Gaillon L;Letellier P .[J].TALANTA,2004,63:979.
[25] Dong B;Li N;Zheng LQ;Yu L;Inoue T .Surface adsorption and micelle formation of surface active ionic liquids in aqueous solution[J].Langmuir: The ACS Journal of Surfaces and Colloids,2007(8):4178-4182.
[26] Miskolczy Z;Seb(o)k-Nagy K;Biczók L;G(o)ktürk S .[J].CHEMICAL PHYSICS LETTERS,2004,400:296.
[27] Geng F;Zheng L O;Yu L;Li G Z Tung C H .[J].Process Biochemistry,2010,45:306.
[28] Borgstrom B;DonnerJ .[J].JLipidRes,1976,17:491.
[29] Goodchild I;Collier L;Millar SL;Prokes I;Lord JCD;Butts CP;Bowers J;Webster JRP;Heenan RK .Structural studies of the phase, aggregation and surface behaviour of 1-alkyl-3-methylimidazolium halide plus water mixtures[J].Journal of Colloid and Interface Science,2007(2):455-468.
[30] Wang J J;Wang H Y;Zhang Sh L;Zhang H Ch Zhao Y .[J].Journal of Physical Chemistry B,2007,111:6181.
[31] 付素珍,陈庆德,沈兴海.离子液体1-烷基-3-甲基咪唑四氟硼酸盐在水溶液中的聚集行为[J].物理化学学报,2011(08):1913-1918.
[32] Katayanagi H;Nishikawa K;Shimozaki H;Miki K Westh P Koga Y .[J].Journal of Physical Chemistry B,2004,108:19451.
[33] Rehmann L;Ivanova E;Ferguson J L;Gunaratne H Q N Seddon K R Stephens G M .[J].Green Chemistry,2012,14:725.
[34] Gorke J;Srienc F;Kazlauskas R .[J].BIOTECHNOLOGY AND BIOPROCESS ENGINEERING,2010,15:40.
[35] Blesic M;Marques M H;Plechkova N V;Seddon K R Rebelo L P N Lopes A .[J].Green Chemistry,2007,9:481.
[36] 辛嘉英,赵永杰,郑妍,夏春谷,李树本.水饱和离子液体中萘普生的酶法拆分[J].催化学报,2006(03):263-269.
[37] Wong DSH.;Chen JP.;Chang JM.;Chou CH. .Phase equilibria of water and ionic liquids [emim][PF6] and [bmim][PF6][J].Fluid Phase Equilibria,2002(Special Issue SI):1089-1095.
[38] 王方惠,李春喜,孟洪,王子镐.离子液体在水、乙醇及其混合物中的电导率测定[J].北京化工大学学报(自然科学版),2006(06):17-21.
[39] Dominguez de Maria P;Martinez-Alzamora F;Moreno S P;Valero F Rua M L Sánchez-Montero J M Sinisterra J V Alcantara A R .[J].Enzyme and Microbial Technology,2002,31:283.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%