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首页> 外文期刊>Process Biochemistry >Effect of immobilization rate and enzyme crowding on enzyme stability under different conditions. The case of lipase from Thermomyces lanuginosus immobilized on octyl agarose beads
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Effect of immobilization rate and enzyme crowding on enzyme stability under different conditions. The case of lipase from Thermomyces lanuginosus immobilized on octyl agarose beads

机译:不同条件下固定化率和酶拥挤对酶稳定性的影响。固定在辛基琼脂糖珠上的嗜热单胞菌脂肪酶的情况

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Lipase from Thermomyces lanuginosus (TLL) was immobilized on octyl agarose (OC). Three differentTLL-OC biocatalysts were prepared: one lowly loaded using a low enzyme concentration, one fully loaded using a low enzyme concentrations, and a final one using a large excess of enzyme at a higher concentration. The activities after immobilization increased (180%), although diffusion limitations reduced the hyper-activation of the fully loaded preparations (140%). The stabilities of both preparations using low enzyme concentrations were similar under all studied conditions discounting the diffusional limitations of the biocatalyst. However, the biocatalyst prepared using a large concentration of enzyme was less stable that the other preparations at pH 7.0, more stable at pH 5.0 and with a similar stability at pH 9.0. Adding 3 M NaCl, the stability of the fully loaded preparations significantly increased; while the lowly loaded preparation slightly improved enzyme stability. This produced that the biocatalyst prepared under using high enzyme concentration become significantly more stable than the other two TLL preparations. Glycerin increased immobilized TLL stability, in this case all OC-TLL preparations became with similar stabilities. Results show that the TLL concentration during immobilization may greatly affect TLL properties, perhaps due to altering enzyme packing. (C) 2017 Elsevier Ltd. All rights reserved.
机译:来自羊毛嗜热丝菌(TLL)的脂肪酶被固定在辛基琼脂糖(OC)上。制备了三种不同的TLL-OC生物催化剂:一种使用低酶浓度低负载,一种使用低酶浓度完全负载,最后一种使用高浓度大量过量的酶。固定后的活性增加(180%),尽管扩散限制降低了满载制剂的过度活化(140%)。在所有研究条件下,使用低酶浓度的两种制剂的稳定性均相似,从而消除了生物催化剂的扩散限制。然而,使用高浓度酶制备的生物催化剂在pH 7.0下比其他制剂不稳定,在pH 5.0下更稳定,在pH 9.0下具有相似的稳定性。加入3 M NaCl,满载制剂的稳定性显着提高;低负荷制剂略微提高了酶的稳定性。这产生了在使用高酶浓度下制备的生物催化剂变得比其他两种TLL制备物更加稳定。甘油增加了固定的TLL稳定性,在这种情况下,所有OC-TLL制剂都具有相似的稳定性。结果表明,固定化过程中TLL的浓度可能会极大地影响TLL的性质,这可能是由于酶包装的改变。 (C)2017 Elsevier Ltd.保留所有权利。

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