Muley Abhijeet B, Chaudhari Sandeep A, Bankar Sandip B, Singhal Rekha S
Food Engineering and Technology Department, Institute of Chemical Technology, Matunga, Mumbai 400019, India.
Food Engineering and Technology Department, Institute of Chemical Technology, Matunga, Mumbai 400019, India; Department of Bioprocess and Biosystems, School of Chemical Engineering, Aalto University, Espoo, Helsinki, Finland.
Ultrason Sonochem. 2019 Jul;55:174-185. doi: 10.1016/j.ultsonch.2019.02.019. Epub 2019 Feb 18.
This paper reports on stabilization of serine cutinase activity by immobilizing it through cross linking with glutaraldehyde on magnetic nanoparticles (Fe-NPs) and intensification of catalytic activity by ultrasonic treatment. The optimum parameters were cross linking with 10.52 mM glutaraldehyde for 90 min using 1:2 (w/w) ratio of enzyme:Fe-NPs. The characterization of cutinase-Fe-NPs was done by different instrumental analysis. Ultrasonic power showed a beneficial effect on the activity of free and immobilized cutinase at 5.76 and 7.63 W, respectively, after 12 min. Immobilization and ultrasonic treatment led to increments in kinetic parameters (K and V) along with noticeable changes in the secondary structural fractions of cutinase. Cutinase-Fe-NPs showed augmented pH (4-8) and thermal stability (40-60 °C). Considerably higher thermal inactivation kinetic constants (k, t and D-value) and thermodynamic constants (E, ΔH°, ΔG° and ΔS°) highlighted superior thermostability of cutinase-Fe-NPs. Cutinase-Fe-NPs and ultrasound treated cutinase-Fe-NPs retained 61.88% and 38.76% activity during 21-day storage, and 82.82 and 80.69% activity after fifth reusability cycle, respectively.
本文报道了通过戊二醛交联将丝氨酸角质酶固定在磁性纳米颗粒(Fe-NPs)上实现其活性稳定化,以及通过超声处理增强其催化活性。最佳参数为使用酶与Fe-NPs的质量比为1:2(w/w),用10.52 mM戊二醛交联90分钟。通过不同的仪器分析对角质酶-Fe-NPs进行了表征。超声功率分别在12分钟后对游离和固定化角质酶的活性在5.76和7.63 W时显示出有益影响。固定化和超声处理导致角质酶的动力学参数(K和V)增加,同时其二级结构组分发生显著变化。角质酶-Fe-NPs显示出增强的pH稳定性(4-8)和热稳定性(40-60°C)。显著更高的热失活动力学常数(k、t和D值)和热力学常数(E、ΔH°、ΔG°和ΔS°)突出了角质酶-Fe-NPs卓越的热稳定性。角质酶-Fe-NPs和经超声处理的角质酶-Fe-NPs在21天储存期间分别保留了61.88%和38.76%的活性,在第五次重复使用循环后分别保留了82.82%和80.69%的活性。