首页> 美国卫生研究院文献>Molecules >Immobilization of Brassica oleracea Chlorophyllase 1 (BoCLH1) and Candida rugosa Lipase (CRL) in Magnetic Alginate Beads: An Enzymatic Evaluation in the Corresponding Proteins
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Immobilization of Brassica oleracea Chlorophyllase 1 (BoCLH1) and Candida rugosa Lipase (CRL) in Magnetic Alginate Beads: An Enzymatic Evaluation in the Corresponding Proteins

机译:固定在藻酸盐磁珠中的甘蓝叶绿素酶1(BoCLH1)和皱纹念珠菌脂肪酶(CRL):相应蛋白质的酶评价。

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摘要

Enzymes have a wide variety of applications in diverse biotechnological fields, and the immobilization of enzymes plays a key role in academic research or industrialization due to the stabilization and recyclability it confers. In this study, we immobilized the Brassica oleracea chlorophyllase 1 (BoCLH1) or Candida rugosa lipase (CRL) in magnetic iron oxide nanoparticles-loaded alginate composite beads. The catalytic activity and specific activity of the BoCLH1 and CRL entrapped in magnetic alginate composite beads were evaluated. Results show that the activity of immobilized BoCLH1 in magnetic alginate composite beads (3.36 ± 0.469 U/g gel) was higher than that of immobilized BoCLH1 in alginate beads (2.96 ± 0.264 U/g gel). In addition, the specific activity of BoCLH1 beads (10.90 ± 1.521 U/mg protein) was higher than that immobilized BoCLH1 in alginate beads (8.52 ± 0.758 U/mg protein). In contrast, the immobilized CRL in magnetic alginate composite beads exhibited a lower enzyme activity (11.81 ± 0.618) than CRL immobilized in alginate beads (94.83 ± 7.929), and the specific activity of immobilized CRL entrapped in magnetic alginate composite beads (1.99 ± 0.104) was lower than immobilized lipase in alginate beads (15.01 ± 1.255). A study of the degradation of magnetic alginate composite beads immersed in acidic solution (pH 3) shows that the magnetic alginate composite beads remain intact in acidic solution for at least 6 h, indicating the maintenance of the enzyme catalytic effect in low-pH environment. Finally, the enzyme immobilized magnetic alginate composite beads could be collected by an external magnet and reused for at least six cycles.
机译:酶在不同的生物技术领域中具有广泛的应用,并且由于其赋予的稳定性和可回收性,酶的固定化在学术研究或工业化中起着关键作用。在这项研究中,我们将甘蓝型油菜叶绿素酶1(BoCLH1)或皱纹念珠菌脂肪酶(CRL)固定在装载磁性氧化铁纳米颗粒的藻酸盐复合珠中。评估了藻酸盐复合磁珠中捕获的BoCLH1和CRL的催化活性和比活性。结果表明,固定的BoCLH1在藻酸盐磁珠中的活性(3.36±0.469 U / g凝胶)高于固定的BoCLH1在藻酸盐磁珠中的活性(2.96±0.264 U / g凝胶)。此外,BoCLH1珠的比活(10.90±1.521 U / mg蛋白)比固定在藻酸盐珠中的BoCLH1的比活性(8.52±0.758 U / mg蛋白)高。相比之下,固定在藻酸盐复合磁珠中的CRL的酶活性(11.81±0.618)比固定在藻酸盐微珠中的CRL(94.83±7.929)低,而固定化CRL滞留在藻酸盐复合磁珠中的比活性(1.99±0.104) )低于藻酸盐珠中的固定化脂肪酶(15.01±1.255)。对浸泡在酸性溶液(pH 3)中的藻酸盐磁性复合珠的降解研究表明,藻酸盐复合磁性珠在酸性溶液中至少完整保持6 h,这表明在低pH环境中酶催化作用得以维持。最后,固定有酶的藻酸盐磁性复合材料磁珠可通过外部磁体收集,并重复使用至少六个循环。

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