酶固定化促进不同底物蛋白改变菲辛的特异性

IF 3.4 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Enzyme and Microbial Technology Pub Date : 2024-09-21 DOI:10.1016/j.enzmictec.2024.110517
Alex D. Gonzalez-Vasquez , El Siar Hocine , Marcela Urzúa , Javier Rocha-Martin , Roberto Fernandez-Lafuente
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引用次数: 0

摘要

Ficin 提取物使用不同的支持物进行固定:乙醛基和天冬氨酸/1,6-己二胺(Asp/HA)琼脂糖珠。后者后来经过戊二醛修饰,实现了共价固定。利用 4 种不同的底物(酪蛋白、血红蛋白、牛血清白蛋白和苯甲酰精氨酸对硝基苯胺),在 pH 值为 7 和 5 的条件下比较了这 3 种生物催化剂的活性。利用乙醛基琼脂糖,研究了在两种 pH 值下酶支持反应时间对四种底物活性的影响。事实证明,反应时间会使酶变形,因为共价支持键-酶键的数量会增加。令人惊讶的是,在所有底物和条件下,酶与支持物反应时间的延长并不意味着酶活性的降低。使用 Asp/HA 支持物(HA 含量不同)时,不同底物对酶活性的影响差异要大得多。这些不同的影响在戊二醛处理后甚至会加剧。因此,生物催化剂固定化或化学修饰引起的构象变化完全改变了酶蛋白的特异性。这也可能对酶失活后产生一些影响。
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Changes in ficin specificity by different substrate proteins promoted by enzyme immobilization
Ficin extract has been immobilized using different supports: glyoxyl and Aspartic/1,6 hexamethylenediamine (Asp/HA) agarose beads. The latter was later submitted to glutaraldehyde modification to get covalent immobilization. The activities of these 3 kinds of biocatalysts were compared utilizing 4 different substrates, casein, hemoglobin and bovine serum albumin and benzoyl-arginine-p-nitroanilide at pH 7 and 5. Using glyoxyl-agarose, the effect of enzyme-support reaction time on the activity versus the four substrates at both pH values was studied. Reaction time has been shown to distort the enzyme due to an increase in the number of covalent support-enzyme bonds. Surprisingly, for all the substrates and conditions the prolongation of the enzyme-support reaction did not imply a decrease in enzyme activity. Using the Asp/HA supports (with different amount of HA) differences in the effect on enzyme activity versus the different substrates are much more significant, while with some substrates the immobilization produced a decrease in enzyme activity, with in other cases the activity increased. These different effects are even increased after glutaraldehyde treatment. That way, the conformational changes induced by the biocatalyst immobilization or the chemical modification fully altered the enzyme protein specificity. This may also have some implications when following enzyme inactivation.
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来源期刊
Enzyme and Microbial Technology
Enzyme and Microbial Technology 生物-生物工程与应用微生物
CiteScore
7.60
自引率
5.90%
发文量
142
审稿时长
38 days
期刊介绍: Enzyme and Microbial Technology is an international, peer-reviewed journal publishing original research and reviews, of biotechnological significance and novelty, on basic and applied aspects of the science and technology of processes involving the use of enzymes, micro-organisms, animal cells and plant cells. We especially encourage submissions on: Biocatalysis and the use of Directed Evolution in Synthetic Biology and Biotechnology Biotechnological Production of New Bioactive Molecules, Biomaterials, Biopharmaceuticals, and Biofuels New Imaging Techniques and Biosensors, especially as applicable to Healthcare and Systems Biology New Biotechnological Approaches in Genomics, Proteomics and Metabolomics Metabolic Engineering, Biomolecular Engineering and Nanobiotechnology Manuscripts which report isolation, purification, immobilization or utilization of organisms or enzymes which are already well-described in the literature are not suitable for publication in EMT, unless their primary purpose is to report significant new findings or approaches which are of broad biotechnological importance. Similarly, manuscripts which report optimization studies on well-established processes are inappropriate. EMT does not accept papers dealing with mathematical modeling unless they report significant, new experimental data.
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