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在 BL21 pET 系统中表达几丁质酶基因,并研究负载几丁质酶的 AlgSep 纳米复合珠的生物催化性能。

Expression of chitinase gene in BL21 pET system and investigating the biocatalystic performance of chitinase-loaded AlgSep nanocomposite beads.

机构信息

Department of Cell and Molecular Biology, Faculty of Basic Science, University of Maragheh, Maragheh, Iran.

Department of Cell and Molecular Biology, Faculty of Basic Science, University of Maragheh, Maragheh, Iran.

出版信息

Int J Biol Macromol. 2017 Nov;104(Pt B):1664-1671. doi: 10.1016/j.ijbiomac.2017.03.119. Epub 2017 Mar 24.

Abstract

Chitin, a polysaccharide, is abundant in nature and this substrate can be easily hydrolyzed by chitinase. Pharmaceutical and industrial applications of chitinase are considerably noteworthy, therefore in this study, high scale production of Chit36 enzyme was targeted using the E. coli pET expression system. The purified Chit36 enzyme was immobilized in Ca-cross linked alginate/sepiolite (AlgSep) nanocomposite beads for improving the catalytic activity and stability of Chit36 enzyme during the biocatalytic process. Immobilized enzymes require optimal conditions different from soluble enzymes. The AlgSep nanocomposite can save spatial structure and activity of the enzyme which is critical for enzyme immobilization. The catalytic activity and specific activity of the Chit36 entrapped in alginate nanocomposite beads were evaluated. Results showed that the activity of immobilized Chit36 in Ca-Alginate sepiolite composites beads (3.10±0.63U/g gel) was higher than that of immobilized Chit36 in Ca-alginate beads (3.95±0.40U/g gel). Also, the specific activity of Chit36 in AlgSep nanocomposite beads (22.9±1.521U/mg protein) was higher than the immobilized Chit36 in sepiolite-free alginate beads (8.52±0.758U/mg protein). The promising results obtained from this study would have beneficial pharmaceutical and industrial applications.

摘要

壳聚糖是一种丰富的多糖,它可以被壳聚糖酶轻易水解。壳聚糖酶在医药和工业领域有着广泛的应用,因此在本研究中,我们使用大肠杆菌 pET 表达系统来大规模生产 Chit36 酶。为了提高 Chit36 酶在生物催化过程中的催化活性和稳定性,我们将纯化的 Chit36 酶固定在 Ca 交联的海藻酸钠/海泡石(AlgSep)纳米复合材料珠中。固定化酶需要不同于游离酶的最佳条件。AlgSep 纳米复合材料可以保存酶的空间结构和活性,这对于酶的固定化至关重要。我们评估了固定在海藻酸钠纳米复合材料珠中的 Chit36 的催化活性和比活性。结果表明,固定在 Ca-海藻酸钠-海泡石复合材料珠中的 Chit36 的活性(3.10±0.63U/g 凝胶)高于固定在 Ca-海藻酸钠珠中的 Chit36 的活性(3.95±0.40U/g 凝胶)。此外,固定在 AlgSep 纳米复合材料珠中的 Chit36 的比活性(22.9±1.521U/mg 蛋白)高于固定在无海泡石海藻酸钠珠中的 Chit36 的比活性(8.52±0.758U/mg 蛋白)。本研究取得的有前景的结果将具有有益的医药和工业应用价值。

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