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Immobilization of Candida antarctica Lipase B on Porous Polystyrene Resins: Protein Distribution and Activity

机译:南极假丝酵母脂肪酶B固定在多孔聚苯乙烯树脂上:蛋白质分布和活性。

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摘要

We studied the effects of polystyrene resin particle size and pore diameter on Candida antarctica Lipase B (CALB). CALB adsorbs rapidly on polystyrene (saturation time ≤ 4 min) for particle sizes ≤ 120 μm (pore size 300 A). Through infrared microspectroscopy, CALB was shown to form protein loading fronts regardless of resin particle size at similar enzyme loadings (~ 8%). From IR images, fractions of total surface area available to enzyme are 21, 33, 35, 37 and 88%, respectively, for particle sizes 350-600, 120, 75, 35 μm (pore size 300 A) and 35 μm (pore size 1000 A). Titration with p-nitrophenyl n-hexyl-phosphate (MNPHP) showed the fraction of active CALB molecules adsorbed onto resins was about 60 %. The fraction of active CALB molecules was invariable as a function of resin particle and pore size. At about 8% w/w CALB loading, by increasing the immobilization support pore diameter from 300 to 1000 A, turnover frequency (TOF) of ε-CL to polyester increased from 12.4 to 28.2 S~(-1). However, the ε-CL conversion rate was not influenced by changes in resin particle size. Similar trends were observed for condensation polymerizations between 1,8-octanediol and adipic acid.
机译:我们研究了聚苯乙烯树脂的粒径和孔径对南极假丝酵母脂肪酶B(CALB)的影响。 CALB在粒径≤120μm(孔径300 A)的聚苯乙烯上快速吸附(饱和时间≤4分钟)。通过红外光谱,无论在相同的酶含量(〜8%)下树脂颗粒大小如何,CALB均显示出形成蛋白的前沿。从IR图像中,对于350-600、120、75、35μm(孔径300 A)和35μm(孔径)的颗粒,可用于酶的总表面积的比例分别为21%,33%,35%,37%和88% 1000 A)。用对硝基苯基正己基磷酸酯(MNPHP)滴定表明,吸附在树脂上的活性CALB分子的比例约为60%。活性CALB分子的分数随树脂颗粒和孔径的变化而不变。在大约8%w / w的CALB负载下,通过将固定支撑孔的直径从300 A增加到1000 A,ε-CL与聚酯的周转频率(TOF)从12.4 S〜(-1)增加到28.2 S〜(-1)。但是,ε-CL转化率不受树脂粒径变化的影响。在1,8-辛二醇和己二酸之间的缩聚反应中观察到相似的趋势。

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  • 来源
  • 会议地点 Boston MA(US);Boston MA(US)
  • 作者单位

    NSF I/UCRC for Biocatalysis and Bioprocessing of Macromolecules, Polytechnic University, Six Metrotech Center, Brooklyn, NY 11201;

    Rohm and Haas Company, P.O. Box 904, Spring House, PA 19477;

    rnNSF I/UCRC for Biocatalysis and Bioprocessing of Macromolecules, Polytechnic University, Six Metrotech Center, Brooklyn, NY 11201;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TB347;
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