The effect of chemical modification using citraconic anhydride on the stability of α-amylase from Aspergillus fumigatus

Author:

Yandri Yandri1,Astuti Lupia Widya1,Ropingi Hendri1,Suhartati Tati1,Irawan Bambang2,Hadi Sutopo1

Affiliation:

1. Department of Chemistry, Faculty of Mathematics and Natural Sciences , 175504 University of Lampung , Jl. Prof. Dr. Sumantri Brojonegoro No. 1 , Bandar Lampung , 35145 , Indonesia

2. Department of Biology, Faculty of Mathematics and Natural Sciences , 175504 University of Lampung , Jl. Prof. Dr. Sumantri Brojonegoro No. 1 , Bandar Lampung , 35145 , Indonesia

Abstract

Abstract The purpose of this research is to improve the stability of α-amylase from Aspergillus fumigatus by chemical modification with citraconic anhydride. The α-amylase was isolated using a centrifugation technique, followed by purification using precipitation and dialysis of ammonium sulfate salt. The experimental results demonstrate that the purity of purified α-amylase is 13.41 times higher than that of the crude extract. A significant increase in the optimum temperature was also achieved, in which the optimum temperature of 50 °C was found for native α-amylase, while for modified α-amylase, the optimum temperature of 60 °C was found. Similarly, an increase in half-life was also evident, which is 38.72 min found for the native enzyme to 256.67–330.00 min for modified α-amylase, depending on the volume of citraconic anhydride used. Modification also resulted in increased free energy values (ΔG i) from 104.348 for the native enzyme to 109.585–110.281 kJ mol−1 for modified α-amylase, indicating that modified α-amylase is stiffer than native α-amylase. The results obtained in this work demonstrate that citric anhydride is a very promising modifying agent to improve the stability and performance of α-amylase enzyme isolated from A. fumigatus. The findings of this study also offer an opportunity for the application of citric anhydride for other enzymes.

Funder

Direktorat Jenderal Pendidikan Tinggi

Publisher

Walter de Gruyter GmbH

Reference27 articles.

1. Grand View Research. Industrial Enzymes Market Size, Share & Trends Analysis Report by Product, by Source (Plants, Animals), by Application (Food & Beverages, Detergents, Animal Feed), by Region, and Segment Forecasts, 2023-2030. www.grandviewresearch.com. (2023). Accessed on January 2023.

2. U. Ejaz, M. Sohail, A. Ghanemi. Biomimetics 6, 44 (2021), https://doi.org/10.3390/biomimetics6030044.

3. B. E. Far, Y. Ahmadi, A. Y. Khosroshahi, A. Dilmaghani. Adv. Pharm. Bull. 10(30), 350 (2020).

4. G. M. Abou-Elela, N. A. El-Sersy, S. H. Wefky. J. Appl. Sci. Res. 5(3), 286 (2009).

5. V. Tarhriz, G. Nematzadeh, F. Mohammadzadeh, E. Rahimi, M. S. Hejazi. Adv. Environ. Biol. 5(10), 3173 (2011).

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