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(磁性)交联酶聚集体的纤维素酶:一种稳定且高效的生物催化剂。

(Magnetic) Cross-Linked Enzyme Aggregates of Cellulase from : A Stable and Efficient Biocatalyst.

机构信息

Laboratory for Separation Processes and Product Design, Faculty of Chemistry and Chemical Engineering, University of Maribor, Smetanova Ulica 17, SI-2000 Maribor, Slovenia.

Laboratory for Applied Electromagnetics, Faculty of Electrical Engineering and Computer Science, Institute of Electrical Power Engineering, University of Maribor, Koroška Cesta 46, SI-2000 Maribor, Slovenia.

出版信息

Molecules. 2023 Jan 30;28(3):1305. doi: 10.3390/molecules28031305.

Abstract

Cross-linked enzyme aggregates (CLEAs) represent an effective tool for carrier-free immobilization of enzymes. The present study promotes a successful application of functionalized magnetic nanoparticles (MNPs) for stabilization of cellulase CLEAs. Catalytically active CLEAs and magnetic cross-linked enzyme aggregates (mCLEAs) of cellulase from were prepared using glutaraldehyde (GA) as a cross-linking agent and the catalytic activity and stability of the CLEAs/mCLEAs were investigated. The influence of precipitation agents, cross-linker concentration, concentration of enzyme, addition of bovine serum albumin (BSA), and addition of sodium cyanoborohydride (NaBHCN) on expressed activity and immobilization yield of CLEAs/mCLEAs was studied. Particularly, reducing the unsaturated Schiff's base to form irreversible linkages is important and improved the activity of CLEAs (86%) and mCLEAs (91%). For increased applicability of CLEAs/mCLEAs, we enhanced the activity and stability at mild biochemical process conditions. The reusability after 10 cycles of both CLEAs and mCLEAs was investigated, which retained 72% and 65% of the initial activity, respectively. The thermal stability of CLEAs and mCLEAs in comparison with the non-immobilized enzyme was obtained at 30 °C (145.65% and 188.7%, respectively) and 50 °C (185.1% and 141.4%, respectively). Kinetic parameters were determined for CLEAs and mCLEAs, and the constant was found at 0.055 ± 0.0102 mM and 0.037 ± 0.0012 mM, respectively. The maximum velocity rate () was calculated as 1.12 ± 0.0012 µmol/min for CLEA and 1.17 ± 0.0023 µmol/min for mCLEA. Structural characterization was studied using XRD, SEM, and FT-IR. Catalytical properties of immobilized enzyme were improved with the addition of reducent NaBHCN by enhancing the activity of CLEAs and with addition of functionalized aminosilane MNPs by enhancing the activity of mCLEAs.

摘要

交联酶聚集体 (CLEAs) 是一种用于固定化酶的有效工具,无需载体。本研究成功地应用功能化磁性纳米粒子 (MNPs) 来稳定纤维素酶 CLEAs。使用戊二醛 (GA) 作为交联剂,制备了[来源]来源的纤维素酶的催化活性 CLEAs 和磁性交联酶聚集体 (mCLEAs),并研究了 CLEAs/mCLEAs 的催化活性和稳定性。研究了沉淀剂、交联剂浓度、酶浓度、牛血清白蛋白 (BSA) 加入量和氰基硼氢化钠 (NaBHCN) 加入量对 CLEAs/mCLEAs 表达活性和固定化产率的影响。特别地,减少不饱和希夫碱以形成不可逆键对于提高 CLEAs(86%)和 mCLEAs(91%)的活性很重要。为了提高 CLEAs/mCLEAs 的适用性,我们在温和的生化处理条件下增强了其活性和稳定性。研究了 CLEAs 和 mCLEAs 在 10 次循环后的可重复使用性,其保留了初始活性的 72%和 65%。与非固定化酶相比,CLEAs 和 mCLEAs 的热稳定性在 30°C(分别为 145.65%和 188.7%)和 50°C(分别为 185.1%和 141.4%)下获得。测定了 CLEAs 和 mCLEAs 的动力学参数,发现[Cl-]常数分别为 0.055±0.0102mM 和 0.037±0.0012mM。最大速度速率()分别计算为 CLEA 的 1.12±0.0012µmol/min 和 mCLEA 的 1.17±0.0023µmol/min。使用 XRD、SEM 和 FT-IR 研究了结构特征。通过添加还原剂 NaBHCN 提高了 CLEAs 的活性,通过添加功能化氨基硅烷 MNPs 提高了 mCLEAs 的活性,从而改善了固定化酶的催化性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0995/9919482/3cbea6b33c76/molecules-28-01305-g001.jpg

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