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首页> 外文期刊>Bioprocess and Biosystems Engineering >An efficient immobilizing technique of penicillin acylase with combining mesocellular silica foams support and p-benzoquinone cross linker
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An efficient immobilizing technique of penicillin acylase with combining mesocellular silica foams support and p-benzoquinone cross linker

机译:青霉素酰基转移酶的高效固定化技术,结合了介孔二氧化硅泡沫载体和对苯醌交联剂

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摘要

To improve the performance of covalently immobilized penicillin acylase (PA), the immobilization was carried out in mesocellular silica foams (MCFs) using p-benzoquinone as cross linker. The characterizations of the immobilized enzyme were studied carefully. The results showed that the relative activity of the immobilized PA was increased to 145% of that of free enzyme. The activity was 3.7 folds of that of PA on the silica nanopar-ticles. The enzyme in MCFs presented a turnover equal to that of free enzyme. It was also found that the optimum pH of the immobilized PA shifted to pH 7.5 and the optimum reaction temperature rose from 45 to 50 ℃. Furthermore, the stability of PA was ameliorated greatly after immobilization. Fourier transform infrared spectroscopy showed no major secondary structural change for PA confined in MCFs. The proposed covalent immobilizing technique would rank among the potential strategies for efficient immobilization of PA.
机译:为了提高共价固定的青霉素酰化酶(PA)的性能,使用对苯醌作为交联剂在介孔二氧化硅泡沫(MCFs)中进行固定。仔细研究了固定化酶的特性。结果表明,固定化PA的相对活性提高到游离酶的145%。在二氧化硅纳米颗粒上的活性是PA的活性的3.7倍。 MCFs中的酶具有与游离酶相同的周转率。还发现固定化PA的最佳pH值移至7.5,最佳反应温度从45升至50℃。此外,固定后PA的稳定性大大改善。傅里叶变换红外光谱表明,MCF中PA的主要二级结构没有变化。拟议的共价固定技术将成为有效固定PA的潜在策略之一。

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