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作为酶纳米颗粒稳定纤维素酶复合酶。

Stabilization of the cellulase enzyme complex as enzyme nanoparticle.

机构信息

Research Institute of Chemical and Process Engineering, FIT, University of Pannonia, Egyetem út. 10, 8200 Veszprém, Hungary.

出版信息

Appl Biochem Biotechnol. 2012 Nov;168(6):1372-83. doi: 10.1007/s12010-012-9863-9. Epub 2012 Sep 7.

Abstract

The native Celluclast BG cellulase enzyme complex consists of different enzymes which can also degrade great substrate molecules as native celluloses. This enzyme complex has been covered by a very thin, a few nanometers thick, polymer layer, in order to improve its stability. It has been proved that the polymer layer around the enzyme molecules does not hinder the digestion as great substrates as crystalline cellulose polymer. The stability of the prepared enzyme nanoparticles (PE) could significantly be increased comparing to that of the native one what was proved by results of the total cellulose activity measured. The pretreated enzyme complex holds its activity often a few magnitudes of orders longer in time than that of the native enzyme complex (enzyme without pretreatment). It retains its activity at least ten times longer than that of the native one, at a temperature range between 20 and 37 °C. The pretreated enzyme complex can have about 50 % of its original activity during 12 h of incubation at even 80 °C, while the native cellulase one totally lost it during 6 h incubation time. The activity of PE has not been significantly reduced even at extreme pH values, namely in the pH range of 1.5 to 12.

摘要

天然 Celluclast BG 纤维素酶复合酶由不同的酶组成,这些酶也可以降解天然纤维素等大的底物分子。为了提高其稳定性,这种酶复合物被一层非常薄的、几纳米厚的聚合物层所覆盖。已经证明,酶分子周围的聚合物层不会阻碍像结晶纤维素聚合物这样的大底物的消化。与天然酶相比,制备的酶纳米颗粒(PE)的稳定性显著提高,这一点通过测量总纤维素活性的结果得到了证明。预处理后的酶复合物在时间上的活性通常比天然酶复合物(未经预处理的酶)长几个数量级。它在 20 到 37°C 的温度范围内的活性保持时间至少比天然酶长 10 倍。预处理后的酶复合物在 80°C 的孵育 12 小时内,仍能保持约 50%的原始活性,而天然纤维素酶在孵育 6 小时内完全失去活性。即使在极端 pH 值下,即 pH 值在 1.5 到 12 的范围内,PE 的活性也没有明显降低。

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