Departamento de Biocatálisis, ICP-CSIC, Campus UAM-CSIC, 28049 Madrid, Spain.
Agri-Food Engineering Laboratory (GENIAAL), Institute of Food, Nutrition and Agri-Food Technologies (INATAA), University of Brothers Mentouri Constantine 1, Constantine 25017, Algeria.
Molecules. 2024 Aug 2;29(15):3674. doi: 10.3390/molecules29153674.
It has been reported that the modification of immobilized glyoxyl-ficin with aldehyde dextran can promote steric hindrances that greatly reduce the activity of the immobilized protease against hemoglobin, while the protease still maintained a reasonable level of activity against casein. In this paper, we studied if this effect may be different depending on the amount of ficin loaded on the support. For this purpose, both the moderately loaded and the overloaded glyoxyl-ficin biocatalysts were prepared and modified with aldehyde dextran. While the moderately loaded biocatalyst had a significantly reduced activity, mainly against hemoglobin, the activity of the overloaded biocatalyst was almost maintained. This suggests that aldehyde dextran was able to modify areas of the moderately loaded enzyme that were not available when the enzyme was overloaded. This modification promoted a significant increase in biocatalyst stability for both biocatalysts, but the stability was higher for the overloaded biocatalyst (perhaps due to a combination of inter- and intramolecular crosslinking).
据报道,通过醛基葡聚糖修饰固定化木瓜蛋白酶可以促进空间位阻,从而大大降低固定化蛋白酶对血红蛋白的活性,而蛋白酶对酪蛋白仍保持合理的活性水平。在本文中,我们研究了这种效应是否因固定在载体上的木瓜蛋白酶的量而异。为此,我们制备了中等负载和过负载的糖基化木瓜蛋白酶生物催化剂,并对其进行了醛基葡聚糖修饰。虽然中等负载的生物催化剂的活性显著降低,主要是针对血红蛋白,但过负载的生物催化剂的活性几乎保持不变。这表明醛基葡聚糖能够修饰过负载的酶中未被修饰的酶的区域。这种修饰促进了两种生物催化剂的稳定性显著提高,但过负载的生物催化剂的稳定性更高(可能是由于分子内和分子间交联的结合)。